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利用伏特/厘米的弱电场强度增强气相TiO光催化作用。

Boosting Gas-Phase TiO Photocatalysis with Weak Electric Field Strengths of Volt/Centimeter.

作者信息

Tran My Nghe, Moreau Myriam, Addad Ahmed, Teurtrie Adrien, Roland Thomas, de Waele Vincent, Dewitte Marc, Thomas Louis, Levêque Gaëtan, Dong Chunyang, Simon Pardis, Ben Tayeb Karima, Mele David, Ordomsky Vitaly, Grandidier Bruno

机构信息

Univ. Lille, CNRS, Centrale Lille, ENSCL, Univ. Artois, UMR 8181-UCCS─Unité de Catalyse et Chimie du Solide, F-59000 Lille, France.

Univ. Lille, CNRS, Centrale Lille, Univ. Polytechnique Hauts-de-France, Junia-ISEN, UMR 8520-IEMN, F-59000 Lille, France.

出版信息

ACS Appl Mater Interfaces. 2024 Mar 27;16(12):14852-14863. doi: 10.1021/acsami.3c19031. Epub 2024 Mar 19.

DOI:10.1021/acsami.3c19031
PMID:38501567
Abstract

Among semiconductor nanomaterials, titanium dioxide is at the forefront of heterogeneous photocatalysis, but its catalytic activity greatly suffers from the loss of photoexcited charge carriers through deleterious recombination processes. Here, we investigate the impact of an external electric field (EEF) applied to conventional P25 TiO nanopowder with or without Au nanoparticles (NPs) to circumvent this issue. The study of two redox reactions in the gas phase, water splitting and toluene degradation, reveals an enhancement of the photocatalytic activity with rather modest electric fields of a few volt/centimeters only. Such an improvement arises from the electric-field-induced quenching of the green emission in anatase, allowing the photoexcited charge carriers to be transferred to the adsorbed reactants instead of pointless radiative recombinations. Applying an EEF across a trap-rich metal oxide material, such as TiO, which, when impregnated with Au NPs, leads, respectively, to 12- and 6-fold enhancements in the production of hydrogen and the oxidation of toluene for an electric field of 8 V/cm, without any electrolysis, is a simple and elegant strategy to meet higher photocatalytic efficiencies.

摘要

在半导体纳米材料中,二氧化钛处于多相光催化的前沿,但由于光激发电荷载流子通过有害的复合过程而损失,其催化活性受到很大影响。在此,我们研究了外加电场(EEF)对添加或不添加金纳米颗粒(NPs)的传统P25 TiO纳米粉末的影响,以解决这一问题。对气相中的两个氧化还原反应——水分解和甲苯降解的研究表明,仅在几伏/厘米的适度电场下,光催化活性就有所增强。这种改善源于电场诱导锐钛矿中绿色发射的猝灭,使光激发电荷载流子能够转移到吸附的反应物上,而不是无意义的辐射复合。在富含陷阱的金属氧化物材料(如TiO)上施加EEF,当TiO浸渍有Au NPs时,在8 V/cm的电场下,分别使氢气产生量和甲苯氧化量提高12倍和6倍,且无需任何电解,这是一种简单而巧妙的策略,可实现更高的光催化效率。

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