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氟掺杂赤铁矿上的共形耦合钴铝层状双氢氧化物:用于增强光电化学水氧化的表面和体相共改性

Conformally Coupling CoAl-Layered Double Hydroxides on Fluorine-Doped Hematite: Surface and Bulk Co-Modification for Enhanced Photoelectrochemical Water Oxidation.

作者信息

Wang Chenglong, Long Xuefeng, Wei Shenqi, Wang Tong, Li Feng, Gao Lili, Hu Yiping, Li Shuwen, Jin Jun

出版信息

ACS Appl Mater Interfaces. 2019 Aug 21;11(33):29799-29806. doi: 10.1021/acsami.9b07417. Epub 2019 Aug 12.

Abstract

Earth-abundant hematite is an attractive photoanode for photoelectrochemical water splitting, whereas the intrinsic properties of inferior charge transfer and slow water oxidation kinetics still hinder its application. In response, an integrated photoanode has been constructed with hematite nanorod arrays modified by fluorine anion doping and further decorated with amorphous CoAl-layered double hydroxides (CoAl-LDH). This novel CoAl-LDH/F-FeO photoanode exhibited an excellent photocurrent density of 2.46 mA cm at 1.23 V versus reversible hydrogen electrode (), five times enhanced than that of pristine α-FeO. Systematic investigations reveal that fluorine anion serving as a donor dopant dramatically enhances the density of charge carrier and reduces the resistance of hematite for rapid charge transfer. Furthermore, the cocatalyst of CoAl-LDH could effectively passivate the surface defects of F-FeO and facilitate the water oxidation kinetics through an alternative pathway of holes trapped by Co species. As a consequence, the charge separation efficiencies of the bulk and surface were improved to 32.6 and 81.8%, respectively, compared with those of α-FeO (9.7 and 31.7%). Our results demonstrate that the dual modification of the bulk and surface is an attractive maneuver to ameliorate the water oxidation activity of hematite.

摘要

地球上储量丰富的赤铁矿是一种用于光电化学水分解的有吸引力的光阳极,然而其电荷转移性能较差和水氧化动力学缓慢的固有特性仍然阻碍了它的应用。作为回应,一种集成光阳极已被构建,它由氟阴离子掺杂改性的赤铁矿纳米棒阵列组成,并进一步用非晶态钴铝层状双氢氧化物(CoAl-LDH)进行修饰。这种新型的CoAl-LDH/F-Fe₂O₃光阳极在相对于可逆氢电极(RHE)为1.23 V时表现出2.46 mA cm⁻²的优异光电流密度,比原始α-Fe₂O₃提高了五倍。系统研究表明,作为施主掺杂剂的氟阴离子显著提高了电荷载流子密度,并降低了赤铁矿的电阻以实现快速电荷转移。此外,CoAl-LDH助催化剂可以有效钝化F-Fe₂O₃的表面缺陷,并通过钴物种捕获空穴的替代途径促进水氧化动力学。结果,与α-Fe₂O₃(9.7%和31.7%)相比,体相和表面的电荷分离效率分别提高到32.6%和81.8%。我们的结果表明,体相和表面的双重改性是改善赤铁矿水氧化活性的一种有吸引力的策略。

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