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3D Hierarchical Carbon-Rich Micro-/Nanomaterials for Energy Storage and Catalysis

机译:三维分层富含碳的微/纳米材料能源存储和催化作用

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摘要

Increasing concerns over climate change and energy shortage have driven the development of clean energy devices such as batteries, supercapacitors, fuel cells and solar water splitting in the past decades. And among potential device materials, 3D hierarchical carbon-rich micro-/nanomaterials (3D HCMNs) have come under intense scrutiny because they can prevent the stacking and bundling of low-dimensional building blocks to not only shorten diffusion distances for matter and charge to achieve high-energy-high-power storage but also greatly expose active sites to achieve highly active, durable and efficient catalysis. Based on this, this review will summarize the synthetic strategies and formation mechanisms of 3D HCMNs, including 3D nanocarbons, polymers, COFs/MOFs, templated carbons and derived carbon-based hybrids with a focus on 3D superstructures such as urchins, flowers, hierarchical tubular structures as well as nanoarrays including nanotube, nanofiber and nanosheet arrays. This review will also discuss the application of 3D HCMNs in energy storage and catalysis systems, including batteries, supercapacitors, electrocatalysis and photo(electro)catalysis. Overall, this review will provide a comprehensive overview of the recent progress of 3D HCMNs in terms of preparation strategies, formation mechanisms, structural diversities and electrochemical applications to provide a guideline for the rational design and structure-function exploration of 3D hierarchical nanomaterials from different sources beyond carbon-based species. Graphic
机译:增加对气候变化和能源干净的短缺推动了发展能源设备,如电池,超级电容器、燃料电池和太阳能水分裂在过去几十年。潜在的设备材料,3 d等级富含碳的微/纳米材料(3 d HCMNs)受到严格审查,因为他们可以防止的叠加和捆绑不仅低维构建块缩短为物质和电荷扩散距离但实现high-energy-high-power存储也大大公开活跃的站点来实现高度活跃的、持久的和高效的催化作用。在此基础上,本文将总结的合成策略和机制的形成3 d HCMNs,包括3 d nanocarbons,聚合物,咖啡/财政部,模板化碳和派生碳基混合动力车关注3 d上层建筑如海胆,鲜花,分层以及管状结构纳米阵列包括纳米管、纳米纤维nanosheet数组。应用3 d HCMNs在能源储存和催化系统,包括电池,超级电容器,电催化作用,照片(电)催化。将提供一个全面的概述3 d HCMNs的最近进展准备策略,形成机制,结构多样性和电化学应用程序提供的指导方针合理的设计和结构探索三维分层纳米材料不同来源的超越碳基物种。图形

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