Efficient, selective and sustainable catalysis of carbon dioxide

Efficient, selective and sustainable catalysis of carbon dioxide
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高效、选择性和可持续的二氧化碳催化

DOI:
10.1039/c7gc00199a
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发表时间:
2017-08
期刊:
影响因子:
9.8
通讯作者:
He Liang-Nian
He Liang-Nian
中科院分区:
化学1区
文献类型:
--
作者:
Song Qing-Wen;Zhou Zhi-Hua;He Liang-Nian

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以具有成本效益和环境友好的方式进行CO2转化将是有希望的,并且由于其热力学稳定性和动力学惰性而仍然具有挑战性。在此,我们想总结一下主要在过去五年(2012-2016年)中使用CO2进行有机合成的重大进展,这些合成具有高催化效率和对目标产物的优异选择性。实现高效和选择性的CO2转化取决于金属催化剂的发展(特别是功能性金属络合物催化),包括主族金属、典型的过渡金属和镧系金属以及有机催化剂,例如N-杂环卡宾、N-杂环烯烃、任务特异性离子液体,超碱和受抑刘易斯对,其能够基于在分子水平上的机理理解有效地活化CO2和/或底物。本文介绍了CO2的典型催化转化反应,如羧化反应、酰胺化反应、氢化反应,以及典型的绿色工艺,如无溶剂、无卤素等,通过绿色催化,以CO2为理想的碳中性源,制备具有原子经济性和可持续性的有价值化合物。特别是,原位催化CO2转化,即碳捕获和后续转化的组合,在CO2化学领域的最新突破,也进行了讨论。
Performing CO2 conversion in a cost-effective and environmentally benign manner would be promising and remains challenging due to its thermodynamic stability and kinetic inertness. Herein, we would like to summarise significant advances in organic synthesis using CO2 with high catalytic efficiency and excellent selectivity towards the target product mainly during the last five years (2012–2016). Achieving an efficient and selective CO2 conversion depends on the development of metal catalysts (especially functional metal complex catalysis) including main-group metal, typical transition metal and lanthanide series metal as well as organocatalysts e.g. N-heterocyclic carbenes, N-heterocyclic olefins, task-specific ionic liquids, superbases and frustrated Lewis pairs that are able to effectively activate CO2 and/or the substrate on the basis of the mechanistic understanding at the molecular level. This review just covers typical catalytic transformation of CO2, for instance, carboxylation, amidation, hydrogenation, and representative green processes like solvent-less, halogen-free that use CO2 as an ideal carbon-neutral source to prepare valuable compounds with improved atom economy and enhanced sustainability of chemical processes through green catalysis. In particular, in situ catalytic CO2 conversion, i.e. the combination of carbon capture and subsequent conversion, a recent breakthrough in the CO2 chemistry field, is also discussed.
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发表时间: 2008-01-01
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