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ACS Nano|November 5, 2019
Biodegradable π-Conjugated Oligomer Nanoparticles with High Photothermal Conversion Efficiency for Cancer TheranosticsXiaozhen Li, Lu Liu, Shengliang Li, et al.Advanced Materials (Deerfield Beach, Fla.)|March 3, 2023
Anti-Quenching NIR-II J-Aggregates of Benzo[c]thiophene Fluorophore for Highly Efficient Bioimaging and PhototheranosticsKa-Wai Lee, Yijian Gao, Wei-Chih Wei, et al.Journal of the American Chemical Society|November 16, 2020
Regulating Surface Termination for Efficient Inverted Perovskite Solar Cells with Greater Than 23% EfficiencyFengzhu Li, Xiang Deng, Feng Qi, et al.ACS Nano|April 13, 2011
Tunable p-type conductivity and transport properties of AlN nanowires via Mg dopingYong-Bing Tang, Xiang-Hui Bo, Jun Xu, et al.ACS Nano|January 11, 2023
Filling the Gap between Heteroatom Doping and Edge Enrichment of 2D Electrocatalysts for Enhanced Hydrogen EvolutionWenbin Wang, Yun Song, Chengxuan Ke, et al.Biomaterials|August 22, 2022
Self-carried nanodrug (SCND-SIS3): A targeted therapy for lung cancer with superior biocompatibility and immune boosting effectsGuang-Yu Lian, Yingpeng Wan, Thomas Shiu-Kwong Mak, et al.Advanced Materials (Deerfield Beach, Fla.)|June 4, 2025
De Novo Design of Efficient NIR-II-Activated Heavy-Atom-Free Type-I Photosensitizer for Anti-Tumor PhotoimmunotherapyHuan Chen, Yu Wang, Zhangxin He, et al.ACS Nano|May 12, 2010
Incorporation of graphenes in nanostructured TiO(2) films via molecular grafting for dye-sensitized solar cell applicationYong-Bing Tang, Chun-Sing Lee, Jun Xu, et al.ACS Nano|September 22, 2015
Self-Monitoring and Self-Delivery of Photosensitizer-Doped Nanoparticles for Highly Effective Combination Cancer Therapy in Vitro and in VivoJinfeng Zhang, Yu-Chuan Liang, Xudong Lin, et al.ACS Nano|July 25, 2020
Stable Organic Photosensitizer Nanoparticles with Absorption Peak beyond 800 Nanometers and High Reactive Oxygen Species Yield for Multimodality PhototheranosticsYingpeng Wan, Guihong Lu, Wei-Chih Wei, et al.Pageof 34