论文著作:
[1] Rotor proliferation promotes high-brightness AIE of iridium emitter accomplishing high-contrast luminous imaging of latent fingerprints to level 3 details, Spectrochimica Acta Part A:, (IF: 4.3), 2025, 125145.
[2] Photostable and high-brightness aggregation-induced emission of iridium luminogen achieving reliable and sensitive continuous luminescent quantification of molecular oxygen, Talanta, (IF: 6.556), 2024, 266125059.
[3] High-definition and robust visualization of latent fingerprints utilizing ultrabright aggregation-induced emission of iridium developer, Talanta, (IF: 6.556), 2023, 264124775.
[4] Photostable aggregation-induced emission of iridium(III) complex realizing robust and high-resolution imaging of latent fingerprints, Sensors and Actuators: B. Chemical (IF: 9.221), 2023, 375, 132898.
[5] Ultrabright AIE of Ir(III) complexes achieving expeditious monitoring of oxygen and high-definition development of latent fingerprints, Sensors and Actuators: B. Chemical (IF: 9.221), 2022, 350, 130894.
[6] A Stable Zn-MOF for Photocatalytic Csp3−H Oxidation: Vinyl Double Bonds Boosting Electron Transfer and Enhanced Oxygen Activation, ACS Catalysis (IF:13.700). 2022, 12, 10668-10679.
[7] Switchable and adjustable AIE activity of Pt(II) complexes achieving swift-responding and highly sensitive oxygen sensing, Sensors and Actuators: B. Chemical (IF: 9.221), 2021, 326, 128987.
[8] Synergistic Size Effect of MOF Cavity/Encapsulated Luminescent Modules Significantly Boosts Nitro-Aromatic Vapors Distinction via a Three-Dimensional Ratiometric Sensing , Sensors and Actuators: B. Chemical (IF: 9.221), 2021, 328, 129025.
[9] Single bond activated AIE of platinum(II) complex achieving expeditious
oxygen monitoring and high-efficiency felodipine identification, Dyes and Pigments (IF:5.122). 2022, 205, 110582.
[10] Selective sensing and visualization of pesticides by ABW-type metal–organic framework based luminescent sensors, RSC Advances (IF:4.036), 2019, 9, 38469-38476.
[11] The dependence of oxygen sensitivity on the molecular structures of Ir(III) complexes and their application for photostable and reversible luminescent oxygen sensing, RSC Advances (IF:4.036), 2019, 9, 15370-15380.
[12] The influence of molecular structure on collision radius for optical sensing of molecular oxygen based on cyclometalated Ir(III) complexes, RSC Advances (IF:4.036), 2018, 8, 41040-41047.