Showing posts with label skin. Show all posts
Showing posts with label skin. Show all posts

Thursday, April 6, 2023

The Panoptic Phenotype


Flexible strain sensor enabled by carbon nanofibers can 'read lips'
Nov 2022, phys.org

Flexible strain sensors unobtrusively monitor tiny vibrations of human skin -- "The lip-language recognition system can directly and quickly translate sentences for people with damaged vocal cords." 

Membrane made from stacking parallel and randomly aligned carbon nanofibers (CNF) that achieves both high sensitivity and wide strain detection range. (The random alignment is the key.)

via Tsinghua University Press: Peng Bi et al, Ultra-sensitive and wide applicable strain sensor enabled by carbon nanofibers with dual alignment for human machine interfaces, Nano Research (2022). DOI: 10.1007/s12274-022-5162-0

Image credit: AI Art - Neofuturistic Beavers in Mandelbub by Caravaggio 1 - 2022


Spray-on smart skin uses AI to rapidly understand hand tasks
Dec 2022, phys.org

Stretchable, electrically sensitive mesh network embedded in polyurethane sprayed onto the back of the hand, comprised of millions of nanowires of silver coated with gold that are in contact with each other to form dynamic electrical pathways. This mesh is electrically active, biocompatible, breathable, and stays on unless rubbed in soap and water. It conforms intimately to the wrinkles and folds of each human finger that wears it. Then a light-weight Bluetooth module can be simply attached to the mesh which can wirelessly transfer the signal changes.

As the fingers bend and twist, the nanowires in the mesh get squeezed together and stretched apart, changing the electrical conductivity of the mesh. These changes can be measured and analyzed to tell us precisely how a hand or a finger or a joint is moving," 

via Stanford University: Kyun Kyu Kim et al, A substrate-less nanomesh receptor with meta-learning for rapid hand task recognition, Nature Electronics (2022). DOI: 10.1038/s41928-022-00888-7


Study shows that bioprinted artificial skin can be used in cosmetics and drugs testing
Jan 2023, phys.org

"Skin-like" - Bioengineered artificial skin (for testing safety of drugs and cosmetics)

via University of São Paulo's School of Pharmaceutical Sciences (FCF-USP) in Brazil: Julia de Toledo Bagatin et al, Bioprinted and manual human epidermis production: A compared performance for skin irritation tests, Bioprinting (2022). DOI: 10.1016/j.bprint.2022.e00251


Multi-layered 'space skin' can help future satellites and spacecraft harvest energy
Jan 2023, phys.org

Multifunctional Nanobarrier Structure (MFNS) nanocoatings can reduce the operating temperatures of space-qualified structures from 120 degrees Celsius to 60 degrees Celsius.

"Our new nano barrier is able to not only provide radiation and thermal protection but also harvest energy for use at a later date."

via University of Surrey: Michal Delkowski et al, Multifunctional Nanostructures with Controllable Band Gap Giving Highly Stable Infrared Emissivity for Smart Thermal Management, ACS Nano (2023). DOI: 10.1021/acsnano.2c09737


Monday, March 13, 2023

Scientists Startled, Puzzled and Shocked Over New Discoveries



Astrophysicists make observations consistent with the predictions of an alternative theory of gravity
Oct 2022, phys.org

"Puzzling discovery"

New method developed for counting stars:
MOND - MOdified Newtonian Dynamics, also called
MoND - Modified Newtonian Dynamics, (see what they did there)

"According to Newton's laws of gravity, it's a matter of chance* in which of the tails a lost star ends up," explains Dr. Jan Pflamm-Altenburg of the Helmholtz Institute of Radiation and Nuclear Physics. "So both tails should contain about the same number of stars. However, in our work we were able to prove for the first time that this is not true: In the clusters we studied, the front tail always contains significantly more stars nearby to the cluster than the rear tail."
*I thought they said God doesn't roll dice?!

via University of Bonn: Pavel Kroupa et al, Asymmetrical tidal tails of open star clusters: stars crossing their cluster's práh challenge Newtonian gravitation, Monthly Notices of the Royal Astronomical Society (2022). doi.org/10.1093/mnras/stac2563



Unique features of octopus create 'an entirely new way of designing a nervous system'
Nov 2022, phys.org

Totally unexpected about the octopus nervous system: a structure by which the intramuscular nerve cords (INCs), which help the animal sense its arm movement, connect arms on the opposite sides of the animal. The startling discovery provides new insights into how invertebrate species have independently evolved complex nervous systems.

via University of Chicago Medical Center: Adam Kuuspalu et al, Multiple nerve cords connect the arms of octopuses, providing alternative paths for inter-arm signaling, Current Biology (2022). DOI: 10.1016/j.cub.2022.11.007


Researcher finds a sweet new way to print microchip patterns on curvy surfaces
Nov 2022, phys.org

It was only as a last resort that he had even tried burying microscopic magnetic dots in hardened chunks of sugar—hard candy, basically—and sending these sweet packages to colleagues in a biomedical lab. The sugar dissolves easily in water, freeing the magnetic dots for their studies without leaving any harmful plastics or chemicals behind.

By chance, Zabow had left one of these sugar pieces, embedded with arrays of micromagnetic dots, in a beaker, and it did what sugar does with time and heat—it melted, coating the bottom of the beaker in a gooey mess.

"No problem," he thought. He would just dissolve away the sugar, as normal. Except this time when he rinsed out the beaker, the microdots were gone. But they weren't really missing; instead of releasing into the water, they had been transferred onto the bottom of the glass where they were casting a rainbow reflection.

Could regular table sugar be used to bring the power of microchips to new and unconventional surfaces?

(Yes)

via National Institute of Standards and Technology: G. Zabow, Reflow transfer for conformal three-dimensional microprinting, Science (2022). DOI: 10.1126/science.add7023


New measurements of galaxy rotation lean toward modified gravity as an explanation for dark matter
Dec 2022, phys.org

Modified Newtonian dynamics (MoND) or modified gravity model: 

Rather than the force of attraction as a pure inverse square relation, gravity has a small remnant pull regardless of distance. This remnant is only about 10 trillionths of a G, but it's enough to explain galactic rotation curves.

So the author of this paper looked at high-resolution velocity curves of 152 galaxies as observed in the Spitzer Photometry and Accurate Rotation Curves (SPARC) database. He found a shift in agreement with AQUAL. The data seems to support modified gravity over standard dark matter cosmology.

via Sejong University Department of Physics and Astronomy, Korea: Kyu-Hyun Chae, Distinguishing Dark Matter, Modified Gravity, and Modified Inertia with the Inner and Outer Parts of Galactic Rotation Curves, arXiv (2022). DOI: 10.48550/arxiv.2207.11069


Post Script:
A subtitled world: Uncovering the secrets of tickertape synesthesia
Feb 2023, phys.org

Tickertape synesthesia - transcribing the speech of others into text, automatically and involuntarily, these sounds will appear as imaginary subtitles floating before your eyes

A previous study estimated that up to 1.4% of the population could experience involuntary subtitles when hearing a human voice, but this figure remains uncertain. It's challenging to detect TTS subjects, who are generally unaware that they are distinguishable from the average person.

"Several participants in the study were shocked to learn that not everyone has built-in subtitles,"

Even more surprising: some subjects report that when they watch a foreign movie, a second level of subtitles—a product of their synesthesia—appears above the subtitles embedded in the video. Others have subtitled dreams and nightmares, which provide their oneiric activity with a cinematic dimension. Finally, since one-third of the participants knew of other cases of TTS in their family, the emergence of this form of synesthesia might have a genetic basis.

AKA "Orthographic representations"

via Paris Brain Institute: abien Hauw et al, Subtitled speech: Phenomenology of tickertape synesthesia, Cortex (2022). DOI: 10.1016/j.cortex.2022.11.005

Friday, December 16, 2022

Wearing the Future


Encrypted, one-touch, human-machine interface technology unveils user physiology
Sep 2022, phys.org

"Cryptographic bio-human machine interface," or CB-HMI, uses thin hydrogel-coated chemical sensors to collect and detect particular circulating molecules on the skin through natural perspiration.

via UCLA and Stanford: Shuyu Lin et al, A touch-based multimodal and cryptographic bio-human–machine interface, Proceedings of the National Academy of Sciences (2022). DOI: 10.1073/pnas.2201937119



First electronic skin with a mesh structure for long-term attachment with no discomfort
Oct 2022, phys.org

World's first nanomesh-structured electronic skin device (organic field-effect transistor) that can measure and process bio-signals for a prolonged period.

via Daegu Gyeongbuk Institute of Science and Technology: Gihyeok Gwon et al, An All‐Nanofiber‐Based Substrate‐Less, Extremely Conformal, and Breathable Organic Field Effect Transistor for Biomedical Applications, Advanced Functional Materials (2022). DOI: 10.1002/adfm.202204645


Standalone sweat sensor provides immediate readout
Oct 2022, phys.org

Fully-integrated soft skin patch includes all the essential components that are required for wearable sensors: two integrated batteries, a microcontroller, sensors, the circuit, and a stretchable non-light-emitting display called electrochromic display.

via University of California San Diego: Lu Yin et al, A stretchable epidermal sweat sensing platform with an integrated printed battery and electrochromic display, Nature Electronics (2022). DOI: 10.1038/s41928-022-00843-6


A high-resolution, wearable electrotactile rendering device that virtualizes the sense of touch
Oct 2022, phys.org

Wearable tactile rendering system can mimic the sensation of touch with high spatial resolution and a rapid response rate.

High-frequency alternating stimulation strategy lowering the operating voltage under 30 V allows it to be non-invasive, but also they used a novel super-resolution strategy that can render tactile sensation at locations between physical electrodes, instead of only at the electrode locations.

via City University of Hong Kong and Tencent's Robotics X Laboratory: Weikang Lin et al, Super-resolution wearable electrotactile rendering system, Science Advances (2022). DOI: 10.1126/sciadv.abp8738

AI Art - Enveloper - 2022

Printable circuits that can work on fabric, plastic and even fruit
Oct 2022, phys.org

Method of creating liquid metal circuitry using a desktop laser printer that could place the electronics onto many types of surfaces.

via Department of Biomedical Engineering, Tianjin University, China: Rui Guo et al, Thermal Transfer-Enabled Rapid Printing of Liquid Metal Circuits on Multiple Substrates, ACS Applied Materials & Interfaces (2022). DOI: 10.1021/acsami.2c08743


Skin-like electronics could monitor your health continuously
Nov 2022, phys.org

Wearables became skin at some point.

via Argonne National Laboratory: Shilei Dai et al, Intrinsically stretchable neuromorphic devices for on-body processing of health data with artificial intelligence, Matter (2022). DOI: 10.1016/j.matt.2022.07.016


Researchers eye embroidery as low-cost solution for making wearable electronics
Nov 2022, phys.org

Embroidering power-generating yarns onto fabric has allowed researchers to embed a self-powered, numerical touch-pad and movement sensors into clothing. 

via North Carolina State University: Yu Chen et al, Flexible, durable, and washable triboelectric yarn and embroidery for self-powered sensing and human-machine interaction, Nano Energy (2022). DOI: 10.1016/j.nanoen.2022.107929


A self-powered ingestible sensor opens new avenues for gut research
Dec 2022, phys.org

Wearables vs ingestibles:

Battery-free, pill-shaped ingestible biosensing system designed to provide continuous monitoring in the intestinal environment.

via University of California San Diego: Ernesto De la Paz et al, A self-powered ingestible wireless biosensing system for real-time in situ monitoring of gastrointestinal tract metabolites, Nature Communications (2022). DOI: 10.1038/s41467-022-35074-y


Compliant and conductive carbon nanomaterial for on-skin electronics
Nov 2022, phys.org

Carbon nanomaterial called hydrogen-substituted graphdiyne (HsGDY) coupled with a single-crystal copper catalyst provides an inherent softness and flexibility that is ideal for on-skin applications.

via King Abdullah University of Science and Technology: Yichen Cai et al, Graphdiyne-Based Nanofilms for Compliant On-Skin Sensing, ACS Nano (2022). DOI: 10.1021/acsnano.2c06169

Tuesday, September 6, 2022

Imitation is the Sincerest Form of Flattery


Moth wing–inspired sound absorbing wallpaper in sight after breakthrough
Jun 2022, phys.org

Moth wing as a natural occurring acoustic absorbing metasurface.

via University of Bristol: Moth wings as sound absorber metasurface, Proceedings of the Royal Society A: Mathematical and Physical Sciences (2022). DOI: 10.1098/rspa.2022.0046


Dynamic building facades inspired by marine organisms could reduce heating, cooling and lighting costs
Jul 2022, phys.org

Optofluidic cells:
The prototype optofluidic cells consist of a layer of mineral oil approximately one millimeter thick, sandwiched between two transparent sheets of plastic. Through a tube connected to the center of the cell, the researchers can inject a small amount of water containing a pigment or dye that creates a bloom of color controlled via a digital pump that runs in both directions.

"I don't think it's stretching the analogy too much to see buildings as living organisms. They have a metabolism, in terms of inward and outward energy flow. And they must respond to changing environmental conditions to maintain a comfortable and well-functioning interior."

via University of Toronto: Raphael Kay et al, Decapod-inspired pigment modulation for active building facades, Nature Communications (2022). DOI: 10.1038/s41467-022-31527-6


Artificial cilia could someday power diagnostic devices
May 2022, phys.org

As a bonus, the team created a cilia device that is equipped with a complementary metal-oxide-semiconductor (CMOS) clock circuit—essentially an electronic "brain" that allows the cilia to operate without being tethered to a conventional computer system. That opens the door to developing a host of low-cost diagnostic tests that could be performed in the field.

via Cornell: Wei Wang et al, Cilia metasurfaces for electronically programmable microfluidic manipulation, Nature (2022). DOI: 10.1038/s41586-022-04645-w


Operating a 'smart home' by breath control
Jul 2022, phys.org

For users who can't speak or use their limbs to program a device, smart technology's benefits are nearly impossible to access. Cao and his collaborators used a technology known as triboelectric nanogenerators (TENGs), or triboelectrification, to make the "breathing-driven Human-Machine Interface (HMI) system".

via Case Western Reserve University: Yaokun Pang et al, Self‐Powered Multifunctional Human–Machine Interfaces for Respiratory Monitoring and Smart System Control, Advanced Materials Interfaces (2022). DOI: 10.1002/admi.202201202

Also: Dong Wook Kim et al, Material aspects of triboelectric energy generation and sensors, NPG Asia Materials (2020). DOI: 10.1038/s41427-019-0176-0


Skin So Soft


AKA Wearable Skin Asks What's My Retronym

New 'fabric' converts motion into electricity
Jun 2022, phys.org

In a proof-of-concept experiment reported in the scientific journal Advanced Materials in April, the NTU Singapore team showed that tapping on a 3cm by 4cm piece of the new fabric generated enough electrical energy to light up 100 LEDs (capable of 2.34 watts per square meter).

The electricity-generating fabric is an energy harvesting device that turns vibrations produced from the smallest body movements in everyday life into electricity either when pressed or squashed (piezoelectricity), or when in friction with other materials (triboelectric effect).

This stretchable electrode made by screenprinting an "ink" comprising silver and styrene-ethylene-butylene-styrene (SEBS) is then attached to a piece of nanofibre fabric made of poly(vinylidene fluoride)-co-hexafluoropropylene (PVDFHPF), and lead-free perovskites.

Very new meaning to Rainwater Harvesting:
The team recently developed a type of film that could potentially be mounted on roofs or walls to harness the energy produced from wind or raindrops falling onto the film.

via Nanyang Technological University: Feng Jiang et al, Stretchable, Breathable, and Stable Lead‐Free Perovskite/Polymer Nanofiber Composite for Hybrid Triboelectric and Piezoelectric Energy Harvesting, Advanced Materials (2022). DOI: 10.1002/adma.202200042

Image credit: interband collective excitations in twisted bilayer graphene, Matteo Ceccanti, 2021 [link


Artificial skin gives robots sense of touch and beyond
Jun 2022, phys.org

This new skin technology is part of a robotic platform that integrates the artificial skin with a robotic arm and sensors that attach to human skin. A machine-learning system that interfaces the two allows the human user to control the robot with their own movements while receiving feedback through their own skin.

Called the M-Bot:

Gelatinous hydrogel makes robot fingertips a lot more like our own, and are embedded with sensors to detect the world around it. These sensors are literally printed onto the skin in the same way that an inkjet printer applies text to a sheet of paper.

Some applications:

"Graphene impregnated with platinum detects the explosive TNT very quickly and selectively. For a virus, we are printing carbon nanotubes, which have very high surface area, and attaching antibodies for the virus to them. This is all mass producible and scalable."

via California Institute of Technology: You Yu et al, All-printed soft human-machine interface for robotic physicochemical sensing, Science Robotics (2022). DOI: 10.1126/scirobotics.abn0495


Artificial skin capable of feeling pain could lead to new generation of touch-sensitive robots
Jun 2022, phys.org

Artificial skin with a new type of processing system based on "synaptic transistors," which mimics the brain's neural pathways in order to learn to react to external stimuli.

Data from the electronic skin sensors is usually sent to a computer to be processed and interpreted, but that data is too big, introducing delays.

The Glasgow team uses the human peripheral nervous system as inspiration with artificial synapses on a circuit built into the skin that process stimuli at the point of contact, reducing it to only the vital information before it is sent to the brain. 

The team used the varying output of that voltage spike to teach the skin appropriate responses to simulated pain, which would trigger the robot hand to react. By setting a threshold of input voltage to cause a reaction, the team could make the robot hand recoil from a sharp jab in the center of its palm.

via University of Glasgow: Fengyuan Liu et al, Printed Synaptic Transistors based Electronic Skin for Robots to Feel and Learn, Science Robotics (2022). DOI: 10.1126/scirobotics.abl7286.

Intel's new Core i9-11980HK leads the 11th-gen laptop CPU lineup

Scientists develop novel pain-perception biomimetic skin enabled by strain-perception-strengthening effect
Jun 2022, phys.org

Proposed strain-perception-strengthening (SPS) enabled biomimetic soft skin, which realizes the dynamic transformation from tactile to pain perception.

Elastic and conductive film (ECF), composed of elastomeric thin-film and assembled graphene nanosheets with an interlocked structural interface.

Pufferfish-inspired.

via Chinese Academy of Sciences Ningbo Institute of Materials Technology and Engineering: Peng Xiao et al, Biomimetic Skins Enable Strain‐Perception‐Strengthening Soft Morphing, Advanced Functional Materials (2022). DOI: 10.1002/adfm.202201812


Researchers develop a wearable textile exomuscle
Jun 2022, phys.org

The Myoshirt: a soft, wearable exomuscle for the upper body

via ETH Zurich: Anna-Maria Georgarakis et al, A textile exomuscle that assists the shoulder during functional movements for everyday life, Nature Machine Intelligence (2022). DOI: 10.1038/s42256-022-00495-3


Rubbery camouflage skin exhibits smart and stretchy behaviors
Jun 2022, phys.org

Artificially intelligent bioelectronic skin devices that mimics both the elasticity and the neurologic functions of cephalopod skin, with potential applications for neurorobotics, skin prosthetics, artificial organs and more.  

"Although several artificial camouflage skin devices have been recently developed, they lack critical noncentralized neuromorphic processing and cognition capabilities, and materials with such capabilities lack robust mechanical properties," Yu said. "Our recently developed soft synaptic devices have achieved brain-inspired computing and artificial nervous systems that are sensitive to touch and light that retain these neuromorphic functions when biaxially stretched."  

The Future: Where every molecule computes, and every desire an algorithm (long live the mass transference device).

via Pennsylvania State University: Hyunseok Shim et al, Artificial neuromorphic cognitive skins based on distributed biaxially stretchable elastomeric synaptic transistors, Proceedings of the National Academy of Sciences (2022). DOI: 10.1073/pnas.2204852119


Personal health trackers may include smart face mask, other wearables
Jun 2022, phys.org

Metallic conductor called MoO2 for a bioelectronic facemask.

via University of Missouri: Zhilu Ye et al, A Breathable, Reusable, and Zero-Power Smart Face Mask for Wireless Cough and Mask-Wearing Monitoring, ACS Nano (2022). DOI: 10.1021/acsnano.1c11041

And: Ganggang Zhao et al, Laser-scribed conductive, photoactive transition metal oxide on soft elastomers for Janus on-skin electronics and soft actuators, Science Advances (2022). DOI: 10.1126/sciadv.abp9734


Future robots could 'see' using new type of electronic skin
Jul 2022, phys.org

The breakthrough development involves a newly-developed method of printing microscale semiconductors made from gallium arsenide onto a flexible plastic surface, and which could provide future robots with an electronic skin capable of "seeing" light beyond the range of human vision.

via University of Glasgow: Ayoub Zumeit et al, Printed GaAs Microstructures‐Based Flexible High‐Performance Broadband Photodetectors, Advanced Materials Technologies (2022). DOI: 10.1002/admt.202200772


Hearing better with skin than ears: Research team develops a sound-sensing skin-attachable acoustic sensor
Jul 2022, phys.org

"auditory electronic skin"

Microelectro-mechanical systems (MEMS)-based microphone structure using polymer materials, a quarter of a fingernail in size and thickness of a few hundred micrometers. The microphone can be attached to large surface areas of the body or even on the finger.

The research team plans to create auditory electronic skin by integrating it with skin-attachable pressure and temperature sensors, flexible displays, and others.

via Pohang University of Science & Technology: Siyoung Lee et al, A High‐Fidelity Skin‐Attachable Acoustic Sensor for Realizing Auditory Electronic Skin, Advanced Materials (2022). DOI: 10.1002/adma.202109545


Artificial skin sweats on command
Jul 2022, phys.org

Sweats on command.

via Eindhoven University of Technology: Yuanyuan Zhan et al, Light‐ and Field‐Controlled Diffusion, Ejection, Flow and Collection of Liquid at a Nanoporous Liquid Crystal Membrane, Angewandte Chemie International Edition (2022). DOI: 10.1002/anie.202207468


Stretchy computing device feels like skin—but analyzes health data with brain-mimicking artificial intelligence
Aug 2022, phys.org

Rather than work like a typical computer, the chip — called a neuromorphic computing chip — functions more like a human brain, able to both store and analyze data in an integrated way.

via University of Chicago Pritzker School of Molecular Engineering: Shilei Dai et al, Intrinsically stretchable neuromorphic devices for on-body processing of health data with artificial intelligence, Matter (2022). DOI: 10.1016/j.matt.2022.07.016


Researchers engineer biofilm capable of producing long-term, continuous electricity from your sweat
Aug 2022, phys.org

Biofilm that harvests the energy in evaporation and converts it to electricity.

That's because this biofilm—a thin sheet of bacterial cells about the thickness of a sheet of paper—is produced naturally by an engineered version of the bacteria Geobacter sulfurreducens. G. sulfurreducens is known to produce electricity and has been used previously in "microbial batteries" to power electrical devices. But such batteries require that G. sulfurreducens is properly cared for and fed a constant diet. By contrast, this new biofilm, which can supply as much, if not more, energy than a comparably sized battery, works, and works continuously, because it is dead. And because it's dead, it doesn't need to be fed.

It makes energy from the moisture on your skin. Since the surface of our skin is constantly moist with sweat, the biofilm can "plug-in" and convert the energy locked in evaporation into enough energy to power small devices.

via University of Massachusetts Amherst: Xiaomeng Liu et al, Microbial biofilms for electricity generation from water evaporation and power to wearables, Nature Communications (2022). DOI: 10.1038/s41467-022-32105-6


Wearable technology measures mental activity through the skin
Aug 2022, phys.org

Measures mental activity using electrodermal activity — an electrical phenomenon of the skin that is influenced by brain activity related to emotional status.

The overarching goal—a Multimodal Intelligent Noninvasive brain state Decoder for Wearable AdapTive Closed-loop arcHitectures, or MINDWATCH.

via NYU Tandon School of Engineering: Rafiul Amin et al, Physiological characterization of electrodermal activity enables scalable near real-time autonomic nervous system activation inference, PLOS Computational Biology (2022). DOI: 10.1371/journal.pcbi.1010275


Engineers fabricate a chip-free, wireless, electronic 'skin'
Aug 2022, phys.org

Conforms to the skin like electronic Scotch tape, using a film of piezoelectric gallium nitride paired with a conducting layer of gold.

The device was sensitive enough to vibrate in response to a person's heartbeat, as well as the salt in their sweat, and that the material's vibrations generated an electrical signal that could be read by a nearby receiver to wirelessly transmit sensing information, without the need for a chip or battery.

via MIT: Yeongin Kim et al, Chip-less wireless electronic skins by remote epitaxial freestanding compound semiconductors, Science (2022). DOI: 10.1126/science.abn7325.


A flexible device that harvests thermal energy to power wearable electronics
Aug 2022, phys.org

First-of-its kind flexible, wearable thermoelectric device that converts body heat to electricity

via University of Washington: Youngshang Han et al, Printing Liquid Metal Elastomer Composites for High‐Performance Stretchable Thermoelectric Generators, Advanced Energy Materials (2022). DOI: 10.1002/aenm.202201413


Self-charging, ultra-thin device that generates electricity from air moisture
Aug 2022, phys.org

Moisture-driven electricity generation (MEG) device containing two regions of different properties to perpetually maintain a difference in water content across the regions to generate electricity and allow for electrical output for hundreds of hours.

The device is a thin layer of commercially available fabric made of wood pulp and polyester and coated with carbon nanoparticles.

via National University of Singapore: Yaoxin Zhang et al, An Asymmetric Hygroscopic Structure for Moisture‐Driven Hygro‐Ionic Electricity Generation and Storage, Advanced Materials (2022). DOI: 10.1002/adma.202201228


A wearable textile-based pneumatic energy harvesting system for assistive robotics
Aug 2022, phys.org

Engineers have built a handy extra limb able to grasp objects and go, powered only by compressed air.

(Similar to, but not the same as, the "dead spider" robot approach)

via Rice University: Rachel A. Shveda et al, A wearable textile-based pneumatic energy harvesting system for assistive robotics, Science Advances (2022). DOI: 10.1126/sciadv.abo2418


Wednesday, August 31, 2022

Let's Accept It


Scientists craft living human skin for robots
Jun 2022, phys.org

Robotic finger skin-like texture with water-repellent and self-healing functions.

"The finger looks slightly 'sweaty' straight out of the culture medium,"

"Since the finger is driven by an electric motor, it is also interesting to hear the clicking sounds of the motor in harmony with a finger that looks just like a real one."

Interesting? Sounds like the deepest horrors of mankind to me. 

"With that method, you have to have the hands of a skilled artisan who can cut and tailor the skin sheets," says Takeuchi. "To efficiently cover surfaces with skin cells, we established a tissue molding method to directly mold skin tissue around the robot, which resulted in a seamless skin coverage on a robotic finger."

Skin Sheets.

When wounded, the crafted skin could even self-heal like humans' with the help of a collagen bandage, which gradually morphed into the skin and withstood repeated joint movements.

It heals itself. 

"I think living skin is the ultimate solution to give robots the look and touch of living creatures since it is exactly the same material that covers animal bodies," says Takeuchi.

And there you have it.


via University of Tokyo: Shoji Takeuchi, Living skin on a robot, Matter (2022). DOI: 10.1016/j.matt.2022.05.019

Image credit: Robotic finger covered with human living skin self heals, Shoji Takeuchi, University of Tokyo, 2022


Post Script - Fingers of Science:
I don't know where this came from, but I am compelled to archive pictures of scientists holding tiny things in between their fingers. Nothing says science like a tiny piece of magic held by disembodied, rubber-gloved fingers, shoved right in front of the camera. Behold the fruits of human exploration:

Photonic Processor - June Sang Lee University of Oxford - 2022

A transducer combining liquid crystal elastomers with a thermoelectrical device provides advantages like active cooling and regenerative energy harvesting for soft robotics. Credit: Soft Machines Lab, Carnegie Mellon University [link]

Wearable Thermoelectric Device - Han et al University of Washington Advanced Energy Materials - 2022

SbSI and SbSI-Sb2S3 Photovoltaic Devices - Ryosuke Nishikubo - 2022

hectoSTAR probe - Eunah Ko shows University of Michigan - 2022

Film coated in thermoelectric ink - KTH Royal Institute of Technology - 2022

Double whammy, in the wild.



Thursday, July 1, 2021

Climate Change Makes Robowrapper More Than Just Fashion

I don't know about you, but I'm ok wearing a spacesuit while still on Earth, as long as it has air conditioning. And persistent surveillance of my health data, of course. 

Not that I want to, but I'm ok with it. And I'm not talking Apollo marshmallow man spacesuit. This suit is actually integrated into your own skin. At some point, it will be hard to distinguish between our clothes and our skin. To "wear" something will have a different meaning, and you won't be able to function without a nano-networked-supercomputer covering your entire body (never mind not being able to live without an air-conditioned bodysuit simply because it's too hot). 

Emerging wearable technology uses tiny fibers that can track your blood pressure, heart rate, and more
Dec 2020, phys.org
"It could be a handkerchief which you put on your wrist and it starts giving data."

via American Institute of Physics: "Micro/nano fiber-based non-invasive devices for health monitoring diagnosis and rehabilitation," Applied Physics Reviews, aip.scitation.org/doi/10.1063/5.0010766
Researchers create powerful unipolar carbon nanotube muscles
Jan 2021, phys.org

"Electrochemically driven carbon nanotube (CNT) muscles" sound like a morph suit that's also an exoskeleton.

via University of Texas at Dallas: "Unipolar stroke, electroosmotic pump carbon nanotube yarn muscles" Science (2021). https://science.sciencemag.org/content/371/6528/494

Wearable plasmonic-metasurface sensor for universal molecular fingerprint detection on biointerfaces
Feb 2021, phys.org
The system contained a flexible sweat extraction process to noninvasively extract and fingerprint analytes inside the body based on their unique Raman scattering spectra. 
Light-emitting tattoo engineered for the first time
Feb 2021, phys.org
The technology, which uses organic light-emitting diodes (OLEDs), is applied in the same way as water transfer tattoos. That is, the OLEDs are fabricated on to temporary tattoo paper and transferred to a new surface by being pressed on to it and dabbed with water. ... could be combined with other tattoo electronics to, for instance emit light when an athlete is dehydrated, or when we need to get out of the sun to avoid sunburn. OLEDs could be tattooed on packaging or fruit to signal when a product has passed its expiry date or will soon become inedible, or used for fashion in the form of glowing tattoos.

via University College London: Jonathan Barsotti et al. Ultrathin, Ultra‐Conformable, and Free‐Standing Tattooable Organic Light‐Emitting Diodes, Advanced Electronic Materials (2021). DOI: 10.1002/aelm.202001145
'Smart clothes' that can measure your movements
Mar 2021, phys.org

via MIT: Yiyue Luo et al. Learning human–environment interactions using conformal tactile textiles, Nature Electronics (2021). DOI: 10.1038/s41928-021-00558-0

Post Script:
Researchers find space station's surface microbial profile resembles skin of its crew members
May 2020, phys.org

We will be the spaceship. It will become our bodies, rather, our bodies will become a ship.

via Lawrence Livermore National Laboratory: Aram Avila-Herrera et al. Crewmember microbiome may influence microbial composition of ISS habitable surfaces, PLOS ONE (2020). DOI: 10.1371/journal.pone.0231838

Fungal ghosts protect skin, fabric from toxins, radiation
Mar 2021, phys.org

There's a fungus that naturally makes melanin, which is protective against ultraviolet radiation, and so they grow the melanin, then etch away the fungus, leaving only the melanin cell. The leftovers are called fungal ghosts, and can become a kind of artificial skin. And also for, you know, "potential for applications in long distance space flight."

via Northwestern University: "Allomelanin: A Biopolymer of Intrinsic Microporosity." Journal of the American Chemical Society.