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纳米材料氧化锌的合成及其光催化应用:综述

Nanomaterial ZnO Synthesis and Its Photocatalytic Applications: A Review.

作者信息

Zhu Chunxiang, Wang Xihui

机构信息

Institute of Materials Science and Engineering, University of Connecticut, Storrs, CT 06268, USA.

Department of Communication, University of Connecticut, Storrs, CT 06268, USA.

出版信息

Nanomaterials (Basel). 2025 Apr 30;15(9):682. doi: 10.3390/nano15090682.

Abstract

Zinc oxide (ZnO), a cheap, abundant, biocompatible, and wide band gap semiconductor material with easy tunable morphologies and properties, makes it one of the mostly studied metal oxides in the area of materials science, physics, chemistry, biochemistry, and solid-state electronics. Its versatility, easy bandgap engineering with transitional and rare earth metals, as well as the diverse nanomorphology empower ZnO as a promising photocatalyst. The use of ZnO as a functional material is attracting increased attention both for academia and industry, especially under the current energy paradigm shift toward clean and renewable sources. Extensive work has been performed in recent years using ZnO as an active component for different photocatalytic applications. Therefore, a thorough and timely review of the process is necessary. The aim of this review is to provide a general summary of the current state of ZnO nanostructures, synthesis strategies, and modification approaches, with the main application focus on varied photocatalysis applications, serving as an introduction, a reference, and an inspiration for future research.

摘要

氧化锌(ZnO)是一种廉价、储量丰富、具有生物相容性且带隙较宽的半导体材料,其形貌和性质易于调控,这使得它成为材料科学、物理学、化学、生物化学及固态电子学领域中研究最多的金属氧化物之一。它的多功能性、通过过渡金属和稀土金属实现的易于调控的带隙工程以及多样的纳米形貌,使氧化锌成为一种很有前景的光催化剂。作为一种功能材料,氧化锌在学术界和工业界都受到越来越多的关注,尤其是在当前能源范式向清洁和可再生能源转变的背景下。近年来,人们进行了大量工作,将氧化锌用作不同光催化应用的活性成分。因此,有必要对这一过程进行全面且及时的综述。本综述的目的是对氧化锌纳米结构、合成策略及改性方法的当前状态进行总体概述,主要应用集中在各种光催化应用上,为未来的研究提供介绍、参考和启发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6188/12073315/1c26768d5896/nanomaterials-15-00682-g006.jpg

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