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钯:铟掺杂二氧化钛作为对乙酰氨基酚光电化学氧化及同步绿色制氢的双功能催化剂。

Pd:In-Doped TiO as a Bifunctional Catalyst for the Photoelectrochemical Oxidation of Paracetamol and Simultaneous Green Hydrogen Production.

作者信息

Sacco Nicolás, Iguini Alexander, Gamba Ilaria, Marchesini Fernanda Albana, García Gonzalo

机构信息

Instituto de Investigaciones en Catálisis y Petroquímica, INCAPE (UNL-CONICET), Facultad de Ingeniería Química, Santiago del Estero 2829, Santa Fe 3000, Argentina.

Departamento de Química, Instituto Universitario de Materiales y Nanotecnología, Universidad de La Laguna (ULL), P.O. Box 456, 38200 La Laguna, Spain.

出版信息

Molecules. 2024 Feb 29;29(5):1073. doi: 10.3390/molecules29051073.

Abstract

The integration of clean energy generation with wastewater treatment holds promise for addressing both environmental and energy concerns. Focusing on photocatalytic hydrogen production and wastewater treatment, this study introduces PdIn/TiO catalysts for the simultaneous removal of the pharmaceutical contaminant paracetamol (PTM) and hydrogen production. Physicochemical characterization showed a high distribution of Pd and In on the support as well as a high interaction with it. The Pd and In deposition enhance the light absorption capability and significantly improve the hydrogen evolution reaction (HER) in the absence and presence of paracetamol compared to TiO. On the other hand, the photoelectroxidation of PTM at TiO and PdIn/TiO follows the full mineralization path and, accordingly, is limited by the adsorption of intermediate species on the electrode surface. Thus, PdIn-doped TiO stands out as a promising photoelectrocatalyst, showcasing enhanced physicochemical properties and superior photoelectrocatalytic performance. This underscores its potential for both environmental remediation and sustainable hydrogen production.

摘要

将清洁能源生产与废水处理相结合有望解决环境和能源问题。本研究聚焦于光催化产氢和废水处理,引入了PdIn/TiO催化剂用于同时去除药物污染物对乙酰氨基酚(PTM)和产氢。物理化学表征表明,Pd和In在载体上分布高度均匀,且与载体具有高度相互作用。与TiO相比,Pd和In的沉积增强了光吸收能力,并在有无对乙酰氨基酚的情况下显著改善了析氢反应(HER)。另一方面,TiO和PdIn/TiO上PTM的光电氧化遵循完全矿化路径,因此受到电极表面中间物种吸附的限制。因此,PdIn掺杂的TiO作为一种有前景的光电催化剂脱颖而出,展现出增强的物理化学性质和卓越的光电催化性能。这凸显了其在环境修复和可持续制氢方面的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79ed/10934893/524c55c9f238/molecules-29-01073-g001.jpg

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