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Biorelevant Metals in Sustainable Metal CatalysisA Survey

机译:可持续金属催化调查中的Biorelevant金属

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A growing world population and increasing energy demands are without a doubt the most important challenges for mankind within this century. Catalysis is a key technology in various fields of chemistry and offers the potential to increase the material output of chemical synthesis without an unreasonable increase in the energy necessary for the production of new materials. Hence, the various disciplines of catalysis are sustainable by definition. However, for a wide range of catalytic transformations to take the necessary next step from academic research to industrial application, the catalytic processes do not only have to be sustainable with regard to the substrate-to-product conversions, but they also have to be sustainable with regard to parameters such as solvent, energy source, and the nature of the catalyst. Currently, the vast majority of transition-metal-catalyzed homogenous reactions are based upon late and expensive transition-metal complexes. In the present review we summarize the current state of the art in sustainable metal catalysis, that is, catalysis based upon inexpensive biorelevant metals such as Ca, Mg, V, Mo, Mn, Fe, Co, Ni, Cu, Zn, B, Si, and Se. These metals are part of nature's catalytic toolbox and have experienced a tremendous comeback in metal catalysis within the past 10 years.
机译:世界上不断增长的世界人口和增加的能源需求毫无疑问,本世纪内部人类最重要的挑战。催化是各种化学领域的关键技术,提供了增加化学合成材料输出的潜力,而不会产生新材料所需的能量的不合理增加。因此,催化的各个学科通过定义可持续。然而,对于广泛的催化转化来从学术研究中取得必要的下一步,从工业应用中,催化过程不仅必须在基础上的转变方面必须是可持续的,但它们也必须是可持续的关于诸如溶剂,能源和催化剂的性质的参数。目前,绝大多数过渡金属催化的均匀反应基于晚期和昂贵的过渡金属配合物。在本综述中,我们总结了可持续金属催化中最新的现有状态,即基于廉价的Biorelevant金属如Ca,Mg,V,Mo,Mn,Fe,Co,Ni,Cu,Zn,B, si和se。这些金属是自然催化工具箱的一部分,并且在过去10年内在金属催化中经历了巨大的回归。

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