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Helical Synthetic Nanographenes with Atomic Precision
Accounts of Chemical Research ( IF 16.4 ) Pub Date : 2023-01-26 , DOI: 10.1021/acs.accounts.2c00767
Yanpeng Zhu 1 , Jiaobing Wang 1
Affiliation  

Understanding and harnessing the properties of nanoscale molecular entities are considered as new frontiers in basic chemistry. In this regard, synthetic nanographene with atomic precision has attracted much attention recently. For instance, taking advantage of the marvelous bonding capability of carbon, flat, curved, ribbon-type, or cone-shaped nanographenes have been prepared in highly controllable and elegant manner, allowing one to explore fascinating molecular architectures with intriguing optical, electrochemical, and magnetic characteristics. This stands in stark contrast to other carbon-rich nanomaterials, such as graphite oxides or carbon quantum dots, which preclude thorough investigations because of complicate structural defects. Undoubtedly, synthetic nanographene contributes strongly to modern aromatic chemistry and represents a vibrant field that may deliver transforming functional materials crucial for optoelectronics, nanotechnologies, and biomedicine.

中文翻译:

具有原子精度的螺旋合成纳米石墨烯

理解和利用纳米级分子实体的特性被认为是基础化学的新前沿。在这方面,具有原子精度的合成纳米石墨烯最近备受关注。例如,利用碳的奇妙键合能力,以高度可控和优雅的方式制备了扁平、弯曲、带状或锥形纳米石墨烯,使人们能够通过有趣的光学、电化学和磁特性。这与其他富含碳的纳米材料(例如氧化石墨或碳量子点)形成鲜明对比,后者由于复杂的结构缺陷而无法进行彻底的研究。无疑,
更新日期:2023-01-26
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