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作 者:Muhammad Abdul Qadeer Iqra Fareed Asif Hussain Muhammad Asim Farid Sadia Nazir Faheem K.Butt Ji-Jun Zou Muhammad Tahir Shang-Feng Du Muhammad Abdul Qadeer;Iqra Fareed;Asif Hussain;Muhammad Asim Farid;Sadia Nazir;Faheem K.Butt;Ji-Jun Zou;Muhammad Tahir;杜尚丰(天津大学化工学院,天津300072;西安交通大学化学工程与技术学院,西安710049;奇纳布大学物理科学系,旁遮普邦,巴基斯坦古吉拉特邦50700;生态材料和可持续技术实验室(LEMST),自然科学和人文系,新校区,巴基斯坦UET拉合尔,54890;拉合尔大学物理系,巴基斯坦拉合尔54000;教育大学科学技术部化学系,巴基斯坦拉合尔54770;教育大学科学技术部物理系,巴基斯坦拉合尔54770;伯明翰大学化学工程学院,英国伯明翰B152TT)
机构地区:[1]School of Chemical Engineering and Technology,Tianjin University,Tianjin 300072,China [2]School of Chemical Engineering and Technology,Xi’an Jiaotong University,Xi’an 710049,China [3]Department of Physical Sciences,The University of Chenab Adjacent Chenab Bridge,Gujrat 50700,Punjab,Pakistan [4]Laboratory of Eco-Materials and Sustainable Technology(LEMST),Natural Sciences and Humanities Department,New Campus,UET Lahore 54890,Pakistan [5]Department of Physics,The University of Lahore,Lahore,Pakistan [6]Department of Chemistry,Division of Science&Technology,University of Education,54770 Lahore,Pakistan [7]Department of Physics,Division of Science&Technology,University of Education,54770 Lahore,Pakistan [8]School of Chemical Engineering,University of Birmingham,Birmingham B152TT,UK
出 处:《电化学(中英文)》2025年第1期1-30,共30页Journal of Electrochemistry
基 金:M Tahir is funded by EU H2020 Marie Skłodows-ka-Curie Fellowship(1439425).
摘 要:Graphitic carbon nitride(g-C3N4)exhibits great mechanical as well as thermal characteristics,making it a valuable ma-terial for use in photoelectric conversion devices,an accelerator for synthesis of organic compounds,an electrolyte for fuel cell applications or power sources,and a hydrogen storage substance and a fluorescence detector.It is fabricated using dif-ferent methods,and there is a variety of morphologies and nanostructures such as zero to three dimensions that have been designed for different purposes.Ther e are many reports about g-C3N4 in recent years,but a comprehensive review which covers nanostructure dimensions and their properties are missing.This review paper aims to give basic and comprehensive understanding of the photocatalytic and electrocatalytic usages of g-C3N4.It highlights the recent progress of g-C3N4 nano-structure designing by covering synthesis methods,dimensions,morphologies,applications and properties.Along with the summary,we will also discuss the challenges and prospects.Scientists,investigators,and engineers looking at g-C3N4 nanostructures for a variety of applications might find our review paper to be a useful resource.石墨氮化碳(g-C3N4)因其出色的机械和热学特性而成为一种有价值的材料,可应用于光电转换器件、有机化合物合成的加速器、燃料电池应用或电源的电解质,以及储氢物质和荧光检测器等领域。g-C3N4可以采用不同的方法制备,且可得到多种形态和纳米结构,如为不同用途而设计的零到三维材料。近年来关于g-C3N4的报道很多,但缺乏涵盖纳米结构尺寸及其性质的全面综述。本文旨在对g-C 3N4的光催化和电催化用途提供基本和全面的了解。通过涵盖合成方法、尺寸、形貌、应用和性能,重点介绍了g-C3N4纳米结构设计的最新进展。除了总结之外,我们还将讨论挑战和前景。从事g-C3N4纳米结构相关研究及各种应用的科学家、研究人员和工程师可能会发现我们的综述论文是有用的资源。
关 键 词:Graphitic carbon nitride HER OER Fuel cell Sustainable energy ELECTROCATALYST
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