Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
Precision Design of Single-Atom Catalysts for High-Performance Biosensors. / Wang, Xianhong; Ye, Xinlu ; Li, Zhenhui ; Anastassova, Neda ; Yang, Haiyue ; Zhang, Dang ; Коржиков-Влах, Виктор Александрович; Zhong, Zhengxiang ; Nie, Guangming; Zhang, Ke ; Shin, Kwangsoo ; Zhang, Xingwen ; Yang, Min ; Guo, Wei ; Wanf, Lei.
в: Chemical Record, 20.04.2026.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - Precision Design of Single-Atom Catalysts for High-Performance Biosensors
AU - Wang, Xianhong
AU - Ye, Xinlu
AU - Li, Zhenhui
AU - Anastassova, Neda
AU - Yang, Haiyue
AU - Zhang, Dang
AU - Коржиков-Влах, Виктор Александрович
AU - Zhong, Zhengxiang
AU - Nie, Guangming
AU - Zhang, Ke
AU - Shin, Kwangsoo
AU - Zhang, Xingwen
AU - Yang, Min
AU - Guo, Wei
AU - Wanf, Lei
PY - 2026/4/20
Y1 - 2026/4/20
N2 - Biosensors are crucial in fields like diagnostics but face challenges in sensitivity, selectivity, and stability. Single-atom catalysts (SACs), with atomically dispersed metalsites and precise active centers, provide high catalytic activity that can address these issues. However, their poor biocompatibility hinders integration. Through tailored design, SACs can achieve both high catalysis and biocompatibility. A systematic review connecting their atomic structure to biosensing performance is still needed. This review fills that gap by analyzing recent SAC-based biosensors. It explains how SAC structure governs sensing in electrochemical, colorimetric, electrochemiluminescence, and photoelectrochemical platforms, highlighting improved real-sample performance. Challenges in synthesis and application are discussed, along with future directions for advancing biosensing via single-atom catalysis.
AB - Biosensors are crucial in fields like diagnostics but face challenges in sensitivity, selectivity, and stability. Single-atom catalysts (SACs), with atomically dispersed metalsites and precise active centers, provide high catalytic activity that can address these issues. However, their poor biocompatibility hinders integration. Through tailored design, SACs can achieve both high catalysis and biocompatibility. A systematic review connecting their atomic structure to biosensing performance is still needed. This review fills that gap by analyzing recent SAC-based biosensors. It explains how SAC structure governs sensing in electrochemical, colorimetric, electrochemiluminescence, and photoelectrochemical platforms, highlighting improved real-sample performance. Challenges in synthesis and application are discussed, along with future directions for advancing biosensing via single-atom catalysis.
KW - биосенсоры
KW - механизмы детектирования
KW - электрохемолюминесценция
KW - одноатомный катализ
KW - biosensors
KW - detection mechanisms
KW - electrochemiluminescence
KW - single-atom catalysts
UR - https://www.mendeley.com/catalogue/03e4535f-fcfa-3f74-8e7b-1c64787739a5/
U2 - 10.1002/tcr.70153
DO - 10.1002/tcr.70153
M3 - Article
JO - Chemical Record
JF - Chemical Record
SN - 1527-8999
M1 - e70153
ER -
ID: 153557202