Wang Ming-Wei, Fan Wei, Li Xiaonan, Liu Yujian, Li Zuoyu, Jiang Wei, Wu Jishan, Wang Zhaohui
Key Laboratory of Organic Optoelectronics and Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing 100084, China.
Department of Chemistry, National University of Singapore, 3 Science Drive 3, 117543, Singapore.
ACS Nano. 2023 Nov 14;17(21):20734-20752. doi: 10.1021/acsnano.3c07970. Epub 2023 Oct 27.
The creation and development of carbon nanomaterials promoted material science significantly. Bottom-up synthesis has emerged as an efficient strategy to synthesize atomically precise carbon nanomaterials, namely, molecular carbons, with various sizes and topologies. Different from the properties of the feasibly obtained mixture of carbon nanomaterials, numerous properties of single-component molecular carbons have been discovered owing to their well-defined structures as well as potential applications in various fields. This Perspective introduces recent advances in molecular carbons derived from fullerene, graphene, carbon nanotube, carbyne, graphyne, and Schwarzite carbon acquired with different synthesis strategies. By selecting a variety of representative examples, we elaborate on the relationship between molecular carbons and carbon nanomaterials. We hope these multiple points of view presented may facilitate further advancement in this field.
碳纳米材料的创造和发展极大地推动了材料科学。自下而上合成法已成为一种高效策略,用于合成具有各种尺寸和拓扑结构的原子精确碳纳米材料,即分子碳。与可轻易获得的碳纳米材料混合物的性质不同,单一组分分子碳因其明确的结构以及在各个领域的潜在应用,已发现了众多性质。本综述介绍了通过不同合成策略获得的源自富勒烯、石墨烯、碳纳米管、卡宾、石墨炔和施瓦茨碳的分子碳的最新进展。通过选取各种有代表性的例子,我们阐述了分子碳与碳纳米材料之间的关系。我们希望所呈现的这些多种观点能够促进该领域的进一步发展。