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通过一种bola型表面活性剂辅助合成法制备具有立方体形貌和钝边的高性能自然阳光驱动的Ag/AgCl光催化剂。

High-performance natural-sunlight-driven Ag/AgCl photocatalysts with a cube-like morphology and blunt edges via a bola-type surfactant-assisted synthesis.

作者信息

Wang Nannan, Cheng Ke, Xu Zhong-Fei, Li Peng, Geng Guangwei, Chen Chuncheng, Wang Dongjun, Chen Penglei, Liu Minghua

机构信息

Beijing National Laboratory for Molecular Science, CAS Key Lab of Colloid, Interface and Chemical Thermodynamics, CAS Research/Education Center for Excellence in Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Phys Chem Chem Phys. 2020 Feb 21;22(7):3940-3952. doi: 10.1039/c9cp05273a. Epub 2020 Feb 4.

Abstract

Ag/AgCl-based structures have recently been receiving considerable attention as visible-light-driven plasmonic photocatalysts, wherein the fabrication of Ag/AgCl species shaped with an anisotropic morphology is considered to be an efficient way to enhance their performances. While the past decade has witnessed great progress in this direction, it is still strongly desired to initiate a green and low-cost protocol for the synthesis of Ag/AgCl based structures with high catalytic activity. Using a surfactant-assisted synthesis protocol, wherein a cationic bola-type surfactant of chloride counteranions serves both as a reactant (namely, source of chlorine) for the generation of AgCl structures and as a directing template to assist the formation of anisotropic structures, we herein report that cube-like Ag/AgCl with blunt edges could be fabricated simply by dropping an aqueous solution of silver nitrate into an ethanol solution of the hexane-1,6-bis(trimethylammonium chloride) surfactant. Importantly, compared to the sphere-like counterparts manufactured using a conventional tadpole surfactant, the as-fabricated cube-like structures exhibit substantially improved catalytic performances under visible-light or natural-sunlight irradiation. It has been revealed that photogenerated holes might serve as the main active species during the catalytic process. Meanwhile, our results have disclosed that in contrast to the sphere-like Ag/AgCl structures, the as-constructed cube-like structures are relatively enriched with high-index AgCl facets of smaller hole effective mass, which promote a faster carrier transfer, facilitate the migration of the photogenerated holes to the surface to be involved in photocatalytic reactions, and suppress carrier recombination, leading to their enhanced photocatalytic performances. Considering the tremendous diversity of surfactants (bola-, gemini-, polymeric surfactants etc.) with various halide counteranions and their sophisticated template effects, our new strategy might open up new opportunities for silver/silver halide (Ag/AgX, X = Cl, Br, and I)-based plasmonic structures with various morphologies and with superior light-to-chemical energy conversion capability.

摘要

基于Ag/AgCl的结构作为可见光驱动的等离子体光催化剂最近受到了相当大的关注,其中制备具有各向异性形态的Ag/AgCl物种被认为是提高其性能的有效方法。尽管在过去十年中在这个方向上取得了很大进展,但仍然强烈希望启动一种绿色且低成本的方案来合成具有高催化活性的基于Ag/AgCl的结构。使用一种表面活性剂辅助合成方案,其中具有氯化物抗衡阴离子的阳离子bola型表面活性剂既作为生成AgCl结构的反应物(即氯源)又作为指导模板来辅助各向异性结构的形成,我们在此报告,通过将硝酸银水溶液滴加到己烷-1,6-双(三甲基氯化铵)表面活性剂的乙醇溶液中,可以简单地制备出具有钝边的立方体形Ag/AgCl。重要的是,与使用传统蝌蚪状表面活性剂制造的球形对应物相比,所制备的立方体形结构在可见光或自然阳光照射下表现出显著提高的催化性能。已经揭示出光生空穴可能在催化过程中作为主要活性物种。同时,我们的结果表明,与球形Ag/AgCl结构相比,所构建的立方体形结构相对富含具有较小空穴有效质量的高指数AgCl晶面,这促进了更快的载流子转移,促进光生空穴迁移到表面参与光催化反应,并抑制载流子复合,从而导致其增强的光催化性能。考虑到具有各种卤化物抗衡阴离子的表面活性剂(bola型、双子型、聚合物表面活性剂等)的巨大多样性及其复杂的模板效应,我们的新策略可能为具有各种形态和卓越光化学能转换能力的基于银/卤化银(Ag/AgX,X = Cl、Br和I)的等离子体结构开辟新的机会。

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