(1)学术论文 ●Kai Cai‡, Weiyun Zhang‡, Mohamed F. Foda, Xuyu Li, Jin Zhang, Yeteng Zhong, Huageng Liang*, Huiqiao Li, Heyou Han*, and Tianyou Zhai*; Miniature hollow gold nanorods with enhanced effect for in vivo photoacoustic imaging in the NIR-II window; Small, 2020, 2002748. ●Kai Cai, Weiyun Zhang, Jin Zhang,Huiqiao Li, Heyou Han*, and Tianyou Zhai*; Design of gold hollow nanorods with controllable aspect ratio for multimodal imaging and combined chemo-photothermal therapy in the second near-infrared window; ACS Appl. Mater. Interfaces, 2018, 10 (43), 36703-36710. ●Kai Cai‡, Yuxiang Liao‡, Huan Zhang, Jiawei Liu, Zhicheng Lu, Zhao Huang, Shengli Chen*, and Heyou Han*; Controlled synthesis of Au-island-covered Pd nanotubes with abundant heterojunction interfaces for enhanced electrooxidation of alcohol; ACS Appl. Mater. Interfaces, 2016, 8 (20), 12792-12797. ●Kai Cai, Zhicheng Lv, Kun Chen, Liang Huang, Jing Wang, Feng Shao, Yanjun Wang and Heyou Han*; Aqueous synthesis of porous platinum nanotubes at room temperature and their intrinsic peroxidase-like activity; Chem. Commun., 2013, 49, 6024-4026. ●Kai Cai‡, Xiaoyan Xiao‡, Huan Zhang, Zhicheng Lu, Jiawei Liu, Qin Li, Chen Liu, Mohamed F. Foda and Heyou Han*; Universal chitosan-assisted synthesis of Ag-including heterostructured nanocrystals for label-free in situ SERS monitoring; Nanoscale, 2015, 7, 18878-18882. ●Kai Cai‡, Jiawei Liu‡, Huan Zhang, Zhao Huang, Zhicheng Lu, Mohamed F. Foda, Tingting Li, and Heyou Han*; Facile synthesis of quasi-one-dimensional Au/PtAu heterojunction nanotubes and their application as catalysts in an oxygen-reduction reaction; Chem. Eur. J., 2015, 21, 7556-7561. ●Huan Zhang‡, Kai Cai‡, Pan Wang, Zhao Huang, Jiawei Liu, Long Wu, Mohamed F. Foda, and Heyou Han*; Graphene oxide as a stabilizer for “clean” synthesis of high-performance Pd-based nanotubes electrocatalysts; ACS Sustainable Chem. Eng., 2017, 5, 5191-5199. ●Zhao Huang‡, Kai Cai‡, Huan Zhang, Zilan Hong, Zhaodong Yuan and Heyou Han*; Pd–Au heterostructured nanonecklaces with adjustable interval and size as a superior catalyst for degradation of 4-nitrophenol; CrystEngComm, 2017, 19, 5686-5691. (2)专利及软件著作权 ●发明专利:一种空心金纳米材料的制备方法(201810193114.0),2019.05 |