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用于光催化和电化学性能的生物启发式石墨烯基金属氧化物纳米复合材料:最新综述

Bioinspired graphene-based metal oxide nanocomposites for photocatalytic and electrochemical performances: an updated review.

作者信息

Potbhare Ajay K, Aziz S K Tarik, Ayyub Mohd Monis, Kahate Aniket, Madankar Rohit, Wankar Sneha, Dutta Arnab, Abdala Ahmed, Mohmood Sami H, Adhikari Rameshwar, Chaudhary Ratiram G

机构信息

Post Graduate Department of Chemistry, Seth Kesarimal Porwal College of Arts and Science and Commerce Kamptee-441001 India

Chemistry Department, Indian Institute of Technology, Bombay Powai 400076 India.

出版信息

Nanoscale Adv. 2024 Apr 5;6(10):2539-2568. doi: 10.1039/d3na01071f. eCollection 2024 May 14.

Abstract

Considering the rapidly increasing population, the development of new resources, skills, and devices that can provide safe potable water and clean energy remains one of the vital research topics for the scientific community. Owing to this, scientific community discovered such material for tackle this issue of environment benign, the new materials with graphene functionalized derivatives show significant advantages for application in multifunctional catalysis and energy storage systems. Herein, we highlight the recent methods reported for the preparation of graphene-based materials by focusing on the following aspects: (i) transformation of graphite/graphite oxide into graphene/graphene oxide exfoliation and reduction; (ii) bioinspired fabrication or modification of graphene with various metal oxides and its applications in photocatalysis and storage systems. The kinetics of photocatalysis and the effects of different parameters (such as photocatalyst dose and charge-carrier scavengers) for the optimization of the degradation efficiency of organic dyes, phenol compounds, antibiotics, and pharmaceutical drugs are discussed. Further, we present a brief introduction on different graphene-based metal oxides and a systematic survey of the recently published research literature on electrode materials for lithium-ion batteries (LIBs), supercapacitors, and fuel cells. Subsequently, the power density, stability, pseudocapacitance charge/discharge process, capacity and electrochemical reaction mechanisms of intercalation, and conversion- and alloying-type anode materials are summarized in detail. Furthermore, we thoroughly distinguish the intrinsic differences among underpotential deposition, intercalation, and conventional pseudocapacitance of electrode materials. This review offers a meaningful reference for the construction and fabrication of graphene-based metal oxides as effective photocatalysts for photodegradation study and high-performance optimization of anode materials for LIBs, supercapacitors, and fuel cells.

摘要

考虑到人口的迅速增长,开发能够提供安全饮用水和清洁能源的新资源、技术和设备仍然是科学界至关重要的研究课题之一。因此,科学界发现了用于解决这一环境友好问题的材料,具有石墨烯功能化衍生物的新材料在多功能催化和储能系统中的应用显示出显著优势。在此,我们通过关注以下几个方面来突出近期报道的制备石墨烯基材料的方法:(i) 将石墨/氧化石墨转化为石墨烯/氧化石墨烯的剥离和还原;(ii) 受生物启发用各种金属氧化物制备或修饰石墨烯及其在光催化和储能系统中的应用。讨论了光催化动力学以及不同参数(如光催化剂剂量和电荷载流子清除剂)对优化有机染料、酚类化合物、抗生素和药物降解效率的影响。此外,我们简要介绍了不同的基于石墨烯的金属氧化物,并对最近发表的关于锂离子电池 (LIB)、超级电容器和燃料电池电极材料的研究文献进行了系统综述。随后,详细总结了嵌入型、转化型和合金型负极材料的功率密度、稳定性、赝电容充放电过程、容量和电化学反应机理。此外,我们还深入区分了电极材料的欠电位沉积、嵌入和传统赝电容之间的本质差异。这篇综述为构建和制备基于石墨烯的金属氧化物作为光降解研究的有效光催化剂以及用于锂离子电池、超级电容器和燃料电池的负极材料的高性能优化提供了有意义的参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2efd/11093270/8a719e25651d/d3na01071f-f1.jpg

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