酶催化

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19世纪,科学家更多地从原子层次上认识和研究化学。20世纪科学家则更多地从分子层次上认识和研究化学。进入21世纪,化学会在哪些方面取得重大突破?会遇到哪些挑战和难题?什么是未来化学的新生长点?化学在整个科学体系中占有什么地位?这些都是对化学有全局性、战略性指导意义的问题。中国科学院院士徐光宪先生曾说过这样一段耐人寻味的话,“我的专业是化学,我从学化学、教化学、到研究化学已有几十年了,可是现在我却有点搞不清楚化学的定义了。我深深感到科学的发展太快了,需要对本门科学重新认识、重新定位,这是我进入21世纪首先要关注的问题”。在新的世纪如何定位和审视化学,《世界科学前沿发展态势分析》课题组对此进行了探讨。课题组首先选定了化学领域具有代表性的20种期刊,对这些期刊1999—2003年出现的关键词进行了统计分析,确定出了化学领域这几年的热点词,并通过与有关专家进行研讨,进一步整合出了下面13个重要研究方向催化不对称合成、单分子、多孔材料、分子器件、光子晶体、化学动力学、活性自由基聚合、密度泛函理论、酶催化、烯烃复分解反应、组合化学、超分子化学分子自组装、燃料电池。课题组针对这些研究方向,邀请国内专家学者就这些研究方向的发展趋势进行了分析,同时佐以文献计量学分析。通过定性与定量分析,课题组注意到,中国科学家对于化学领域的重要研究方向已经具备一定的鉴赏能力,但是在科学问题的选择上还普遍缺乏具有挑战性的切入点。在目前已经具有论文数量基础的一些重要研究方向上,中国科学家需要更密切关注国际同行的研究进展,高度重视科学问题的选择,同时也需要注意在第一时间发表原创性科研成果的问题。本刊上期已对催化不对称合成、单分子、多孔材料、分子器件、光子晶体、化学动力学、活性自由基聚合和密度泛函理论8个方向进行了介绍,本期将对酶催化、烯烃复分解反应、组合化学、超分子化学分子自组装、燃料电池等后5个方向进行介绍。 In the 19th century, scientists were more aware of and studied chemistry at the atomic level. Twentieth Century scientists are more understanding and research at the molecular level of chemistry. In the 21st century, what are the major breakthroughs Chemical Society will encounter? What challenges and challenges will be encountered? What is the future of new chemical growth point? What is the role of chemistry in the entire scientific system? These are chemistry-based, strategic Sexual guidance significance of the problem. Xu Guangxian, an academician of the Chinese Academy of Sciences, once said such an intriguing remark: “My specialty is chemistry. I have been teaching chemistry, teaching chemistry, and studying chemistry for decades. But now I’m a bit confused about the definition of chemistry I deeply feel that the development of science is too fast and needs to re-understand and relocate this science, which is the first question that I should pay attention to in the 21st century. ” In the new century, how to position and examine chemistry, the “frontier of the world’s scientific analysis of the development trend” task group discussed this. The research team first selected 20 representative journals of chemistry and conducted statistical analysis on the keywords that appeared in these journals from 1999 to 2003 to identify the hot words in the past few years in the field of chemistry. The research further integrated the following 13 important research fields: catalytic asymmetric synthesis, monomolecular, porous materials, molecular devices, photonic crystals, chemical kinetics, living radical polymerization, density functional theory, enzyme catalysis, olefin metathesis reactions, Combinatorial chemistry, supramolecular chemical self-assembly, fuel cell For these research directions, the research group invited domestic experts and scholars to analyze the development trend of these research directions, accompanied by bibliometric analysis. Through qualitative and quantitative analysis, the research group noticed that Chinese scientists already have some appreciation skills for the important research fields in the field of chemistry, but generally lack of challenging entry points in the selection of scientific issues. At present, some important research directions that already have the foundation of the number of papers, Chinese scientists need to pay more attention to the research progress of international counterparts, attach great importance to the choice of scientific problems, and also need to pay attention to the issue of publishing original scientific research as soon as possible. This issue of the catalytic asymmetric synthesis of single molecules, porous materials, molecular devices, photonic crystals, chemical kinetics, living radical polymerization and density functional theory of the eight directions were introduced this issue will be enzyme-catalyzed, olefins Metathesis reaction, combinatorial chemistry, supramolecular chemical molecule self-assembly, fuel cell and so on.
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