The 2011 World Carbon Science Conference was grandly opened on July 25th at East China University of Science and Technology. The theme of the conference was “Quality Carbon Materials to Make Life Betterâ€. During the five-day conference, the Carbon Society Presidents and experts will conduct comprehensive exchanges on research hotspots and development trends of graphene, nano-carbon materials, composite materials, low-carbon environmental protection, food safety and new energy raw materials. On the opening day of the conference, Professor Klaus Mullen, the father of nanographene synthesis and a German scientist, gave a special report on “Polymerization of Carbon Materials and Graphene†and won applause. It is understood that the conference will arrange a special report by a specially invited scholar every day, and there will be 12 sub-sites for sub-topic reports. The guests who made special reports from July 26th to 29th were Prof. Nakata, Professor of Japan, Professor Radović of the United States, Professor Fan Shoushan of China, and Professor Hubert Hunt of Germany.
It is understood that this year's World Carbon Science Conference is the most widely attended, the most attended, and the most influential. The scale of its history is closely related to the rapid development of global carbon science. Carbon-based carbon series new materials can be widely used in aerospace, defense military, nuclear industry, new energy, environmental restoration, construction industry and health care. In the late 1980s, scientists discovered fullerene C60, followed by carbon nanotubes and graphene. In just 20 years, zero-dimensional fullerenes and one-dimensional carbon nanotubes, as well as the separation, identification and classification of two-dimensional graphene, the researchers of these three carbon materials won the 1996 Nobel Prize in Chemistry, Kavli Nano in 2008 The Science Award and the 2010 Nobel Prize in Physics have caused a wave of research and development of carbon materials worldwide. Humans are making extensive use of the specific energy of carbon to expand the prospect of unlimited.
The conference was co-sponsored by East China University of Science and Technology, Shanghai Polytechnic University and Shanxi Coal Chemical Institute of Chinese Academy of Sciences. The meeting was held in China and will play a positive role in promoting the development of China's carbon materials industry and on the entry of China's younger generation of scientific researchers into the international frontier and solving major national needs.
It is understood that this year's World Carbon Science Conference is the most widely attended, the most attended, and the most influential. The scale of its history is closely related to the rapid development of global carbon science. Carbon-based carbon series new materials can be widely used in aerospace, defense military, nuclear industry, new energy, environmental restoration, construction industry and health care. In the late 1980s, scientists discovered fullerene C60, followed by carbon nanotubes and graphene. In just 20 years, zero-dimensional fullerenes and one-dimensional carbon nanotubes, as well as the separation, identification and classification of two-dimensional graphene, the researchers of these three carbon materials won the 1996 Nobel Prize in Chemistry, Kavli Nano in 2008 The Science Award and the 2010 Nobel Prize in Physics have caused a wave of research and development of carbon materials worldwide. Humans are making extensive use of the specific energy of carbon to expand the prospect of unlimited.
The conference was co-sponsored by East China University of Science and Technology, Shanghai Polytechnic University and Shanxi Coal Chemical Institute of Chinese Academy of Sciences. The meeting was held in China and will play a positive role in promoting the development of China's carbon materials industry and on the entry of China's younger generation of scientific researchers into the international frontier and solving major national needs.
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