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The breakthrough of study to create the world's first truly successful electronic fabric, used materials, graphene is amazing.
Contains a professor from the university of Exeter in England Monica Craciun, international team of scientists, successfully created a new technology, will be transparent, flexible graphene electrodes embedded fabric usually used for textile industry.
This finding can be a revolutionary change wearable electronic equipment production, such as computers, mobile phones and MP3 players clothes, the clothes the weight is light, strong and durable, and easy to transport.
The international cooperation study, including those from the graphene center at the university of Exeter, Lisbon, system engineering and computer and micro system and the institute of nanotechnology (INESC - MN), and the university of Lisbon in Portugal and avi, and Belgium textile research center (CenTexBel) experts, the articles published in leading Scientific Reports, published in the journal science.
, the job Craciun, said: "this is the key point of the future wearable electronic equipment. Its potential has existed for many years, transparent and flexible electrode has been widely used in plastic and glass. For example, but this is the textile electrode is actually embedded in the first example of yarn. The possibility of its use is infinite, including GPS system in textile industry, biomedical monitoring, safety, or for those who are feeling even damaged tools of communication. The only limitation is our imagination."
Graphene is capable of conducting the thin material, there is only one atom thick. It is very flexible, and is one of the strongest materials known. Scientists and engineers have been in the competition and competition, in order to adapt the wearable electronic devices in recent years the demand for the use of graphene.
"This new study has surface monolayer graphene" very interesting, can be a transparent electrode, wearable electronic equipment because it has excellent electrical, mechanical and optical properties. Is the study of graphene by chemical vapor deposition (CVD) method, which grow on the copper foil, using the Moorfield, recently developed a kind of the most advanced nanoCVD system.
The team established a technical cooperation, can shift the graphene from copper foil onto polypropylene fiber, which is a kind of commonly used materials in the textile industry.
From INESC - who led the research team at the university of MN and avi's Helena Dr David goncalves said: "the concept of wearable technology is forming, but so far, fully transparent and flexible embedded textile technology does not exist. Therefore, the development of graphene textiles and integration process, its commercialization application into the new era."
From engineering INESC Exeter university scientific research team, a former postdoctoral researcher professor Craciun, and associate professor Dr Ana Neves added: "our life is surrounded by fabric, our home or the office carpet, our car seat, and the obvious all of our clothes. Electronic devices to join the fabric will be a change in the rules of the game of modern technology."
"All electronic devices need wiring, as a result, this method first needs to solve the problem is that the development of surface different conductive textile fiber, light and comfortable. We have developed, the method of preparation of transparent conductive textile fiber by coating them with graphene, will open a new integration of electronic equipment on the textile fiber."
Experts from the intelligent textiles CenTexBel Isabel De Schrijver, said: "the success of wearable electronic products, created a disruptive technology, has great potential in the field of wide application. We are very excited about the potential this breakthrough, and look forward to it can be used in the electronics industry in the future."
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This study from the university of Exeter is one of the partners, Saverio Russo, professor added: "this breakthrough will also foster new change and cross research direction, will benefit from health care to the defense of a wide range."
In 2012, from the university of Exeter graphene science center Craciun professor and professor Russo, discovered the GraphExeter, an iron trichloride sandwich sample molecular layer, between the graphene layers, received a new system, can become the most famous conductive transparent material. Or the same team, recently found that GraphExeter also than many transparent conductor is commonly used in display industry more stable.