太阳能光催化“C1化学”转化
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摘要
高效清洁地太阳能光催化"C1化学"转化,有望直接实现太阳能到高附加值化学能的转化存储和碳循环。我们课题组通过调控水滑石纳米片的缺陷位和构筑异质结构,分别显著提高了光催化还原CO_2的效率和高选择性光催化费托合成生成高附加值化学品。~[1]
Highly efficient C1 chemistry conversion driven by photocatalysis is expected to directly implement the transformation of the solar energy to the high value-added chemical energy storage and carbon cycle. Our group has significantly improved the efficiency of photocatalytic reduction of CO_2 and the selectivity of photocatalytic Fischer-Tropsch synthesis reaction into high value-added chemicals by adjusting the defects in LDH nanosheets and building heterostructures.
引文
[1]Zhao,L.F.;Chen,G.B.;T.R.Zhang Adv.Mater.2015,27:7824.

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