He Qun, Sheng Beibei, Zhu Kefu, Zhou Yuzhu, Qiao Sicong, Wang Zhouxin, Song Li
National Synchrotron Radiation Laboratory, CAS Center for Excellence in Nanoscience, University of Science and Technology of China, Hefei, Anhui 230029, China.
Zhejiang Institute of Photonelectronics, Jinhua, Zhejiang 321004, China.
Chem Rev. 2023 Sep 13;123(17):10750-10807. doi: 10.1021/acs.chemrev.3c00389. Epub 2023 Aug 15.
In recent years, there has been significant interest in the development of two-dimensional (2D) nanomaterials with unique physicochemical properties for various energy applications. These properties are often derived from the phase structures established through a range of physical and chemical design strategies. A concrete analysis of the phase structures and real reaction mechanisms of 2D energy nanomaterials requires advanced characterization methods that offer valuable information as much as possible. Here, we present a comprehensive review on the phase engineering of typical 2D nanomaterials with the focus of synchrotron radiation characterizations. In particular, the intrinsic defects, atomic doping, intercalation, and heterogeneous interfaces on 2D nanomaterials are introduced, together with their applications in energy-related fields. Among them, synchrotron-based multiple spectroscopic techniques are emphasized to reveal their intrinsic phases and structures. More importantly, various in situ methods are employed to provide deep insights into their structural evolutions under working conditions or reaction processes of 2D energy nanomaterials. Finally, conclusions and research perspectives on the future outlook for the further development of 2D energy nanomaterials and synchrotron radiation light sources and integrated techniques are discussed.
近年来,人们对开发具有独特物理化学性质的二维(2D)纳米材料用于各种能源应用产生了浓厚兴趣。这些性质通常源自通过一系列物理和化学设计策略建立的相结构。对二维能源纳米材料的相结构和实际反应机制进行具体分析需要先进的表征方法,这些方法能尽可能多地提供有价值的信息。在此,我们对典型二维纳米材料的相工程进行全面综述,重点是同步辐射表征。特别介绍了二维纳米材料上的固有缺陷、原子掺杂、插层和异质界面,以及它们在能源相关领域的应用。其中,强调基于同步辐射的多种光谱技术以揭示其固有相和结构。更重要的是,采用各种原位方法深入了解二维能源纳米材料在工作条件或反应过程下的结构演变。最后,讨论了二维能源纳米材料以及同步辐射光源和集成技术未来进一步发展的结论和研究展望。