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Visible Light‐Driven Water Oxidation on an In Situ N2‐Intercalated WO3 Nanorod Photoanode Synthesized by a Dual‐Functional Structure‐Directing Agent
ChemSusChem ( IF 7.5 ) Pub Date : 2018-03-06 , DOI: 10.1002/cssc.201702439
Dong Li 1 , Ryouchi Takeuchi 1 , Debraj Chandra 1 , Kenji Saito 1 , Tatsuto Yui 1 , Masayuki Yagi 1
Affiliation  

With a view to developing a photoanode for visible light‐driven water oxidation in solar water splitting cells, pure‐monoclinic WO3 nanorod crystals with N2 intercalated into the lattice were synthesized by using hydrazine with a dual functional role—as an N atom source for the in situ N2 intercalation and as a structure‐directing agent for the nanorod architecture—to gain higher incident photon‐to‐current conversion efficiency at 420 nm than with most previously reported WO3 electrodes.

中文翻译:

双功能结构导向剂合成的原位N2嵌入WO3纳米棒光阳极上的可见光驱动水氧化。

为了开发用于可见光驱动水在太阳能水分解池中氧化的光阳极,使用具有双重功能的肼作为N原子源,合成了N 2插入晶格中的纯单斜晶WO 3纳米棒晶体。用于原位N 2嵌入并作为纳米棒结构的结构导向剂-与以前报道的大多数WO 3电极相比,在420 nm处获得更高的入射光子-电流转换效率。
更新日期:2018-03-06
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