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BiTaOCl 实现真实污染物进料的通用压敏光催化废水处理:高效率和可调协同作用的起源。

Universal Piezo-Photocatalytic Wastewater Treatment on Realistic Pollutant Feedstocks by BiTaOCl: Origin of High Efficiency and Adjustable Synergy.

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research (IISER)-Mohali, Sector 81, Mohali, SAS Nagar 140306, Punjab, India.

Department of Physical Sciences, Indian Institute of Science Education and Research (IISER)-Mohali, Sector 81, Mohali, SAS Nagar 140306, Punjab, India.

出版信息

ACS Appl Mater Interfaces. 2023 Jul 12;15(27):32425-32435. doi: 10.1021/acsami.3c04959. Epub 2023 Jun 28.

Abstract

Clean water is a fundamental human right but millions struggle for it daily. Herein, we demonstrate a new piezo-photocatalyst with immense structural diversity for universal wastewater decontamination. Single-crystalline BiTaOCl nanoplates with exposed piezoelectric facets exhibit visible-light response, piezoelectric behavior with coercive voltages of ±5 V yielding 0.35% crystal deformation, and pressure-induced band-bending of >2.5 eV. Using five common contaminants of textile and pharmaceutical industries, we show that the nanoplates can mineralize them in all piezocatalytic, photocatalytic, and piezo-photocatalytic approaches with efficiencies higher than most catalysts developed for just one contaminant. Their efficiencies for feedstocks differing over 2 orders of magnitude in concentrations, the highest to date, are also demonstrated to simulate real-life situations. These extensive studies established that combining piezocatalytic and photocatalytic approaches can lead to a tremendous synergy exceeding >45%. The origin of synergy has been illustrated for the first time using band-bending models and improved charge transfer from valence and conduction band electronic surfaces. We further quantified synergy across reactants, concentrations, and ultrasonic frequency and power to demonstrate their versatility and unpredictability. Finally, seven parameters that contribute to synergy but create unpredictability have been identified for the rational design of piezo-photocatalysts for wastewater treatment.

摘要

清洁水是一项基本人权,但仍有数百万人每天都在为此而奋斗。在此,我们展示了一种新的压电光催化剂,其具有巨大的结构多样性,可用于通用废水净化。具有暴露的压电面的单晶 BiTaOCl 纳米片具有可见光响应、外加电压为 ±5 V 时的压电行为,产生 0.35%的晶体变形,以及>2.5 eV 的压致能带弯曲。使用纺织和制药行业的五种常见污染物,我们表明纳米片可以在所有压电催化、光催化和压电光催化方法中将它们矿化,效率高于为仅一种污染物开发的大多数催化剂。还展示了它们对浓度相差 2 个数量级的进料的效率,这是迄今为止最高的效率,以模拟实际情况。这些广泛的研究表明,结合压电催化和光催化方法可以产生超过 45%的巨大协同效应。首次使用能带弯曲模型和改进的价带和导带电子表面的电荷转移来阐明协同作用的起源。我们进一步量化了协同作用在反应物、浓度和超声波频率和功率方面的表现,以展示其多功能性和不可预测性。最后,确定了七个有助于协同作用但又造成不可预测性的参数,以用于合理设计用于废水处理的压电光催化剂。

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