Standard

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 изданияхстатьяРецензирование

Harvard

Wang, X, Ye, X, Li, Z, Anastassova, N, Yang, H, Zhang, D, Коржиков-Влах, ВА, Zhong, Z, Nie, G, Zhang, K, Shin, K, Zhang, X, Yang, M, Guo, W & Wanf, L 2026, 'Precision Design of Single-Atom Catalysts for High-Performance Biosensors', Chemical Record. https://doi.org/10.1002/tcr.70153

APA

Wang, X., Ye, X., Li, Z., Anastassova, N., Yang, H., Zhang, D., Коржиков-Влах, В. А., Zhong, Z., Nie, G., Zhang, K., Shin, K., Zhang, X., Yang, M., Guo, W., & Wanf, L. (2026). Precision Design of Single-Atom Catalysts for High-Performance Biosensors. Chemical Record, [e70153]. https://doi.org/10.1002/tcr.70153

Vancouver

Wang X, Ye X, Li Z, Anastassova N, Yang H, Zhang D и пр. Precision Design of Single-Atom Catalysts for High-Performance Biosensors. Chemical Record. 2026 Апр. 20. e70153. https://doi.org/10.1002/tcr.70153

Author

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. / Precision Design of Single-Atom Catalysts for High-Performance Biosensors. в: Chemical Record. 2026.

BibTeX

@article{10e7eb700cc14790b202b26a3c7c278e,
title = "Precision Design of Single-Atom Catalysts for High-Performance Biosensors",
abstract = "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.",
keywords = "биосенсоры, механизмы детектирования, электрохемолюминесценция, одноатомный катализ, biosensors, detection mechanisms, electrochemiluminescence, single-atom catalysts",
author = "Xianhong Wang and Xinlu Ye and Zhenhui Li and Neda Anastassova and Haiyue Yang and Dang Zhang and Коржиков-Влах, {Виктор Александрович} and Zhengxiang Zhong and Guangming Nie and Ke Zhang and Kwangsoo Shin and Xingwen Zhang and Min Yang and Wei Guo and Lei Wanf",
year = "2026",
month = apr,
day = "20",
doi = "10.1002/tcr.70153",
language = "English",
journal = "Chemical Record",
issn = "1527-8999",
publisher = "Wiley-Blackwell",

}

RIS

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