The IT community predicts that 2018 will be the "big limit" for the development of information-based technology based on silicon-based materials. By then, the famous "Moore's Law" will be ineffective. So is there a new type of information storage material that replaces silicon-based materials? Chen Hao, a professor at East China University of Science and Technology, gave an answer. Recently, his paper was published in the international authoritative academic journal "Review of the Royal Society of Chemistry", pointing out the application prospects of graphene and its derivatives in the world's thinnest and hardest nanomaterials in high-performance information storage.    With the explosive growth of information, people are constantly demanding greater data storage density and faster access to information. "Moore's Law" proposed by Gordon Moore, one of Intel's founders, points out that when the price is constant, the number of transistors that can be accommodated on an integrated circuit doubles approximately every 18 months, and performance is doubled. . Since 2000, the size of the memory elements that make up the chip has been reduced from 130 nanometers to the current 45 nanometers. Unfortunately, in 2018, Moore's Law will be subject to the "big limit" - silicon-based semiconductors will reach the physical limit of 16 nanometers, no longer small.    In order to break through the limitations of Moore's Law, Professor Chen Wei found that organic polymer materials are expected to be made into electrical storage devices, replacing silicon-based materials. In order to make the role of organic polymer materials "competent", in the past three years, Chen Yu has made graphene and its derivatives as the main target, and has achieved some key and fundamental problems in organic polymer storage materials. Major breakthroughs, published 16 papers in internationally renowned and SCI journals such as Advanced Materials and American Chemical Society. According to reports, graphene is a material composed of carbon atoms. It is the thinnest but hardest nanomaterial in the world. It transmits electrons at room temperature faster than other conductors. At present, the new storage materials developed by Chen Hao led the team to break through a number of key indicators such as starting voltage, transition speed, switching ratio, and storage density. Some indicators are close to or meet the needs of practical application technology.    “Compared with silicon-based materials, polymer information storage materials have obvious advantages. It is easy to process, low in cost, low in power consumption, light in weight, small in size, high in storage density, and can be stacked in three dimensions, even in large areas. Painted on glass, plastics and integrated circuits. Chen Hao is very optimistic about the application of new materials. Outdoor LED Flood Light Bulb
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