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Colloids and Surfaces. B, Biointerfaces|November 5, 2024
Nickel-doped cuprous oxide nanocauliflowers with specific peroxidase-like activity for sensitive detection of hydrogen peroxide and uric acidRou Cheng, Zhengyue Xiao, Xiaomin Tang, et al.Journal of Agricultural and Food Chemistry|July 13, 2026
Pt@Fe-MIL-88 Enabled Natural-Enzyme-Free Dual-Mode Assay for Highly Selective Detection of GlyphosateHuajie Peng, Di Gao, Zhengyue Xiao, et al.Talanta|February 9, 2025
FeCuS multilayer nanoflowers loaded with N-CDs dual-mode method for the detection of uric acid and gout risk prediction with the aid of chemometricsRou Cheng, Chunyan Yan, Zhengyue Xiao, et al.Talanta|September 28, 2025
Iron single-atom nanozyme with dual enzyme-like activities for detection of environmental pollutants and colorimetric sensing array to identification of phenolic speciesHuajie Peng, Ziwen Liao, Zhixiang Yue, et al.Analytical and Bioanalytical Chemistry|March 19, 2026
Dual-signal and dual-function probe Ni-MOF@Fe-CDs for sensitive and visual detection of uric acidChunyan Yan, Bowen Yu, Zhengyue Xiao, et al.Analytica Chimica Acta|March 9, 2026
Activity-tunable bimetallic iron-cobalt nanoflowers integrated with smartphones for rapid detection of human uric acidRou Cheng, Ziyi Guo, Zhengyue Xiao, et al.Analytica Chimica Acta|July 16, 2025
MOF-on-MOF nanomaterial (Fe-MOF@UiO-66)-based ratiometric fluorescence/colorimetric dual-mode sensor for ultrasensitive detection of uric acidTao Lian, Rui Peng, Zhengyue Xiao, et al.Colloids and Surfaces. B, Biointerfaces|March 8, 2026
Rational design of hollow Prussian blue analogues with enhanced catalytic activity via Kirkendall Effect for colorimetric sensing of uric acidZhengyue Xiao, Zhixiang Yue, Di Gao, et al.Colloids and Surfaces. B, Biointerfaces|March 17, 2025
Dual-mode sensors based on double enzyme-mimicking MnCu nanoflowers as fluorescence probe for the detection of organophosphorus pesticides and 2,4-dichlorophenolZiyu Yan, Ziwen Liao, Zhengyue Xiao, et al.Pageof 1