Wu Mingguang, Liao Jiaqin, Yu Lingxiao, Lv Ruitao, Li Peng, Sun Wenping, Tan Rou, Duan Xiaochuan, Zhang Lei, Li Fang, Kim Jiyoung, Shin Kang Ho, Seok Park Ho, Zhang Wenchao, Guo Zaiping, Wang Haitao, Tang Yongbing, Gorgolis George, Galiotis Costas, Ma Jianmin
School of Physics and Electronics, Hunan University, Changsha, China.
State Key Laboratory of New Ceramics and Fine Processing, School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, China.
Chem Asian J. 2020 Apr 1;15(7):995-1013. doi: 10.1002/asia.201901802. Epub 2020 Mar 4.
Carbon is a simple, stable and popular element with many allotropes. The carbon family members include carbon dots, carbon nanotubes, carbon fibers, graphene, graphite, graphdiyne and hard carbon, etc. They can be divided into different dimensions, and their structures can be open and porous. Moreover, it is very interesting to dope them with other elements (metal or non-metal) or hybridize them with other materials to form composites. The elemental and structural characteristics offer us to explore their applications in energy, environment, bioscience, medicine, electronics and others. Among them, energy storage and conversion are extremely attractive, as advances in this area may improve our life quality and environment. Some energy devices will be included herein, such as lithium-ion batteries, lithium sulfur batteries, sodium-ion batteries, potassium-ion batteries, dual ion batteries, electrochemical capacitors, and others. Additionally, carbon-based electrocatalysts are also studied in hydrogen evolution reaction and carbon dioxide reduction reaction. However, there are still many challenges in the design and preparation of electrode and electrocatalytic materials. The research related to carbon materials for energy storage and conversion is extremely active, and this has motivated us to contribute with a roadmap on 'Carbon Materials in Energy Storage and Conversion'.
碳是一种简单、稳定且常见的元素,具有多种同素异形体。碳家族成员包括碳点、碳纳米管、碳纤维、石墨烯、石墨、石墨炔和硬碳等。它们可分为不同维度,其结构可以是开放的和多孔的。此外,用其他元素(金属或非金属)对它们进行掺杂,或者将它们与其他材料杂化以形成复合材料,都是非常有趣的。这些元素和结构特征使我们能够探索它们在能源、环境、生物科学、医学、电子等领域的应用。其中,能量存储和转换极具吸引力,因为该领域的进展可能会改善我们 的生活质量和环境。本文将介绍一些能量装置,如锂离子电池、锂硫电池、钠离子电池、钾离子电池、双离子电池、电化学电容器等。此外,还研究了碳基电催化剂在析氢反应和二氧化碳还原反应中的应用。然而,电极和电催化材料的设计与制备仍面临许多挑战。与用于能量存储和转换的碳材料相关的研究非常活跃,这促使我们撰写了一份关于“能量存储和转换中的碳材料”的路线图。