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Current Supercapacitors News and Events

Current Supercapacitors News and Events, Supercapacitors News Articles.
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Graphene turns 15 on track to deliver on its promises
In a special Nature Nanotechnology issue celebrating 15 years since the Nobel Prize-winning 'ground-breaking experiments on graphene,' the Graphene Flagship analyses the current graphene landscape and market forecast for graphene over the following decade. (2019-10-04)
Laser printing tech produces waterproof e-textiles in minutes
In just three minutes, the laser printing approach can produce a 10x10 cm smart textile patch that's waterproof, stretchable and easily integrated with solar or other sources of power. (2019-08-27)
Dangerous wild grass will be used in batteries
Hogweed, which has grown over vast territories of Russia, can be useful as a material for batteries. (2019-08-26)
Supercapacitors turbocharged by laxatives
An international team of scientists, including a professor of chemistry from the University of Bristol, has worked out a way to improve energy storage devices called supercapacitors, by designing a new class of detergents chemically related to laxatives. (2019-08-12)
Single-electrode material streamlines functions into a tiny chip
Ruthenium oxide is used to integrate energy-storing microsupercapacitors and thin-film electronics at the transistor level. (2019-07-28)
Branching out: Making graphene from gum trees
Researchers have developed a cost-effective and eco-friendly way of producing graphene using one of Australia's most abundant resources, eucalyptus trees. (2019-06-23)
Modelling reveals new insight into the electrical conductivity of ionic liquids
New research shows the key role of thermal fluctuations in sustaining the 'relay race' of charges needed to maintain electrical current in room temperature ionic liquids. (2019-06-07)
Scientists found a way to increase the capacity of energy sources for portable electronics
Scientists from Skoltech, Moscow State University (MSU) and Moscow Institute of Physics and Technology (MIPT) have proposed a new approach to replacing carbon atoms with nitrogen atoms in the supercapacitor's crystal lattice and developed a novel capacity enhancement method based on carbon lattice modification with the aid of plasma. (2019-05-28)
Self-powered wearable tech
For emerging wearable tech to advance, it needs improved power sources. (2019-05-02)
Stretchable interlaced-nanowire film for ultraviolet photodetectors with high response speed
Recently, one research group from the Institute of Semiconductors, Chinese Academy of Sciences, presented an interesting SnO2-CdS NW interlaced structure to fabricate stretchable UV photodetectors with high response speed in Science China Materials. (2019-04-28)
New fiber-shaped supercapacitor for wearable electronics
A novel family of amphiphilic core-sheath structured CNT composited fiber, i.e., CNT-gold@hydrophilic CNT-polyaniline (CNT-Au@OCNT-PANI) with excellent electrochemical properties for wearable electronics was explored by Huisheng Peng et al. in Science China Materials. (2019-04-18)
Need more energy storage? Just hit 'print'
Drexel University researchers have developed a conductive ink made from a special type of material they discovered, called MXene, that was used by the Trinity College researchers to print components for electronic devices. (2019-04-17)
New 'blue-green' solution for recycling world's batteries
Rice University materials scientists demonstrate an environmentally friendly solution to remove valuable cobalt and lithium metals from spent lithium-ion batteries. (2019-04-01)
Right electrolyte doubles novel two-dimensional material's ability to store energy
Scientists at the Department of Energy's Oak Ridge National Laboratory, Drexel University and their partners have discovered a way to improve the energy density of promising energy-storage materials, conductive two-dimensional ceramics called MXenes. (2019-03-04)
New materials for high-voltage supercapacitors
A research team led by Tohoku University in Japan has developed new materials for supercapacitors with higher voltage and better stability than other materials. (2019-02-07)
Insight into the catalytic activity of MXenes for hydrogen evolution reaction
MXenes have exhibited great potential as cost-effective electrocatalysts for hydrogen evolution reaction (HER). (2018-11-29)
The shape of things to come: Flexible, foldable supercapacitors for energy storage
A team of researchers from the Plasma Physics Research Centre, Science and Research Branch of Islamic Azad University in Tehran, Iran, have discovered a way of making paper supercapacitors for electricity storage. (2018-11-20)
Materials scientist creates fabric alternative to batteries for wearable devices
A major factor holding back development of wearable biosensors for health monitoring is the lack of a lightweight, long-lasting power supply. (2018-11-08)
3D-printed supercapacitor electrode breaks records in lab tests
Scientists at UC Santa Cruz and Lawrence Livermore National Laboratory (LLNL) have reported unprecedented performance results for a supercapacitor electrode. (2018-10-18)
Greater than the sum of its parts
Argonne scientists and their collaborators have developed a new model that merges basic electrochemical theory with theories used in different contexts, such as the study of photoelectrochemistry and semiconductor physics, to describe phenomena that occur in any electrode. (2018-09-18)
FeCo-selenide -- Next-generation material in energy storage devices?
In a paper in the forthcoming issue of NANO, a team of researchers have fabricated an asymmetric supercapacitor (ASC) based on FeCo-selenide nanosheet arrays as positive electrode and Fe2O3 nanorod arrays as negative electrode. (2018-08-28)
Genetically engineered virus spins gold into beads
Engineers at the University of California, Riverside, have altered a virus to arrange gold atoms into spheroids measuring a few nanometers in diameter. (2018-08-23)
A computational method for designing a new type of 2D carbons
Scientists from EPFL and Berkeley have developed a computational method for designing a new type of two-dimensional carbon materials called Schwarzites. (2018-08-13)
Hybrid nanomaterials bristle with potential
Triple-layered nanoarray electrode promises to boost battery performance and enhance other electrochemical processes. (2018-08-12)
A breakthrough of monitoring energy storage at work using optical fibers
An optic fiber sensing system developed by researchers in China and Canada can peer inside supercapacitors and batteries to observe their state of charge. (2018-07-29)
Wood to supercapacitors
Carbon aerogels are ultralight, conductive materials, which are extensively investigated for applications in supercapacitor electrodes in electrical cars and cell phones. (2018-05-24)
A new way to atomically thin materials
Metallic conductivity and hydrophilicity of MXenes have established them as electrodes in rechargeable batteries and supercapacitors, as well as other applications, including photothermal cancer therapy, electromagnetic shielding, water purification and gas sensing. (2018-04-04)
'Candy cane' polymer weave could power future functional fabrics and devices
If scientists are going to deliver on the promise of implantable artificial organs or clothing that dries itself, they'll first need to solve the problem of inflexible batteries that run out of juice too quickly. (2018-03-20)
Durable wood 'sponges' act as green sensors of mechanical strain
Striking just the right balance between softness and sturdiness, balsa wood is a choice material for crafting anything from model airplanes to full-size wind turbine blades. (2018-03-01)
Durable wood carbon sponge could be the future of wearable sensors, pollutant treatment
Engineers have for the first time demonstrated that wood can be directly converted into a carbon sponge capable of enduring repeated compression and other extreme mechanical conditions. (2018-03-01)
New graphene laser technique opens door for edible electronics
Electronics, the lifeblood of the modern world, could soon be part of our daily diet. (2018-02-28)
Inspired by nature: Design for new electrode could boost supercapacitors' performance
Mechanical engineers from the UCLA Henry Samueli School of Engineering and Applied Science and four other institutions have designed a super-efficient and long-lasting electrode for supercapacitors. (2018-02-23)
NTU scientists create customizable, fabric-like power source for wearable electronics
Scientists at Nanyang Technological University, Singapore (NTU Singapore) have created a customizable, fabric-like power source that can be cut, folded or stretched without losing its function. (2018-01-30)
TU Wien develops new semiconductor processing technology
Extremely fine porous structures with tiny holes -- resembling a kind of sponge at nano level -- can be generated in semiconductors. (2018-01-22)
Working in the cold
When it is cold in winter, cars tend to have starting problems. (2017-12-05)
Hybrid electrolyte enhances supercapacitance in vertical graphene nanosheets
Supercapacitors can store more energy than and are preferable to batteries because they are able to charge faster, mainly due to the vertical graphene nanosheets that are larger and positioned closer together. (2017-12-05)
Hydrogen cars for the masses one step closer to reality, thanks to UCLA invention
UCLA researchers have designed a new device that can inexpensively and efficiently create and store energy and create hydrogen fuel, and that needs only sunlight to operate. (2017-11-20)
Synthetic material acts like an insect cloaking device
Synthetic microspheres with nanoscale holes can absorb light from all directions across a wide range of frequencies, making them a candidate for antireflective coatings, according to a team of Penn State engineers. (2017-11-03)
Rapid cellphone charging getting closer to reality
The ability to charge cellphones in seconds is one step closer after researchers at the University of Waterloo used nanotechnology to significantly improve energy-storage devices known as supercapacitors. (2017-10-25)
Taming 'wild' electrons in graphene
Graphene -- a one-atom-thick layer of the stuff in pencils -- is a better conductor than copper and is very promising for electronic devices, but with one catch: Electrons that move through it can't be stopped. (2017-10-23)
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