College of Chemistry, Guangdong University of Petrochemical Technology, Maoming, 525000, China.
Guangxi Key Laboratory of Low Carbon Energy Materials, Guangxi Normal University, Guilin, 541004, China.
Adv Sci (Weinh). 2023 Mar;10(7):e2206605. doi: 10.1002/advs.202206605. Epub 2023 Jan 1.
Hollow carbon nanocages (HCNCs) consisting of sp carbon shells featured by a hollow interior cavity with defective microchannels (or customized mesopores) across the carbon shells, high specific surface area, and tunable electronic structure, are quilt different from the other nanocarbons such as carbon nanotubes and graphene. These structural and morphological characteristics make HCNCs a new platform for advanced electrochemical energy storage and conversion. This review focuses on the controllable preparation, structural regulation, and modification of HCNCs, as well as their electrochemical functions and applications as energy storage materials and electrocatalytic conversion materials. The metal single atoms-functionalized structures and electrochemical properties of HCNCs are summarized systematically and deeply. The research challenges and trends are also envisaged for deepening and extending the study and application of this hollow carbon material. The development of multifunctional carbon-based composite nanocages provides a new idea and method for improving the energy density, power density, and volume performance of electrochemical energy storage and conversion devices.
中空碳纳米笼(HCNC)由 sp 杂化碳壳组成,具有空心内部腔室和穿过碳壳的缺陷微通道(或定制的介孔),具有高比表面积和可调谐的电子结构,与其他纳米碳如碳纳米管和石墨烯不同。这些结构和形态特征使 HCNC 成为先进电化学储能和转换的新平台。本综述重点介绍了 HCNC 的可控制备、结构调节和修饰,以及它们作为储能材料和电催化转化材料的电化学功能和应用。系统而深入地总结了金属单原子功能化结构和电化学性质。还展望了研究挑战和趋势,以深化和扩展对这种空心碳材料的研究和应用。多功能碳基复合纳米笼的发展为提高电化学储能和转换器件的能量密度、功率密度和体积性能提供了新的思路和方法。