Wei Ren
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Basic information
Name (English):Wei Ren
Department:化学化工学院
Education Level:博士研究生
Business Address:致知楼1520
Gender:Male
Contact Information:Wei.Ren@snnu.edu.cn
Degree:博士
Status:在职
Alma Mater:悉尼科技大学
Discipline:Analytical chemistry
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Paper Publications
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母双,任伟,Laser-Induced Thermophoretic SERS Enhancement on Paper for Facile Pesticide and Nanoplastic Sensing:Analytical Chemistry,2024.11.20,96:10.1021/acs.analchem.4c05728
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祁艳,刘成辉,Mix-and-Read Digital MicroRNA Analysis Based on Flow Cytometric Counting of Target-Clicked Nanobead Dimer.:Analytical Chemistry,2024.8.8,96:13734-13741
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董园园,Wei Ren,孙圆圆,Duan Xinrui,liuchenghui,Aggregation-Augmented Magnetism of Lanthanide-Doped Nanoparticles and Enabling Magnetic Levitation-Based Exosome Sensing:Advanced Materials,2024.7.2,36:2407013
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贾黛璐,任伟,Augmented Fluorescence Signaling on a Single BaTiO3 Microbead Optical Booster toward High-Sensitive Biosensing.:Analytical Chemistry,2024.5.8,96:8560−8565
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李玲,tangyanli,郭雪原,贾文华,张晨,Wei Ren,liuchenghui,Composite Nanomaterials of Conjugated Polymers and Upconversion Nanoparticles for NIR-Triggered Photodynamic/Photothermal Synergistic Cancer Therapy:ACS Applied Materials & Interfaces,2024.2.16,16:199262-19936
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费心蕊,liuchenghui,雷超,Wei Ren,liuxiaoling,Regulating the trans-cleavage activity of CRISPR/Cas12a by using an elongation-caged single-strand DNA activator and the biosensing applications.:Analytical Chemistry,2023.8.2,95:12169-12176
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母双,Wei Ren,徐锰,hepan,贾戴璐,liuchenghui,An ethanol-induced on-paper perovskite nanocrystal crystallization mechanism for expiratory alcohol screening and information encryption:Sensors and Actuators B: Chemical,2023.3.11,384:133649
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贾黛璐,Wei Ren,徐猛,母双,liuchenghui,Recent Progress of Perovskite Nanocrystals in Chem/Bio Sensing:Biosensors,2022.9.14,12(9):754
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冯秦雅,Wei Ren,范文娇,liuchenghui,Recent advances in exosome analysis assisted by functional nucleic acid-based signal amplification technologies:Trends in Analytical Chemistry,2022.1.31,149:116549
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Wei Ren,刘成辉,张莉君,范文娇,贾黛璐,冯秦雅,Microchamber-Free Digital Flow Cytometric Analysis of T4 Polynucleotide Kinase Phosphatase Based on Single-Enzyme-to-Single-Bead Space-Confined Reaction:Analytical Chemistry,2021.10.29,93(44):14828–14836
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