数字农科院2.0

Exploring Single-Atom Nanozymes Toward Environmental Pollutants: Monitoring and Control

文献类型: 外文期刊

作者: Wu, Guojian;Li, Si;Luo, Linpin;Li, Yuechun;Zhang, Wentao;Wang, Heng;Liu, Sha;Du, Chenxing;Wang, Jianlong;Cheng, Jie;Wu, Yongning;Shen, Yizhong

作者机构:

关键词: Single-atom nanozyme;Environmental health;Environmental pollutant;Monitoring;Control

期刊名称: NANO-MICRO LETTERS

ISSN: 2311-6706

年卷期: 2025 年 17 卷 1 期

页码:

收录情况: SCIE(2025版) ; ; EI(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版)

摘要: As environmental pollutants pose a serious threat to socioeconomic and environmental health, the development of simple, efficient, accurate and cost-effective methods for pollution monitoring and control remains a major challenge, but it is an unavoidable issue. In the past decade, the artificial nanozymes have been widely used for environmental pollutant monitoring and control, because of their low cost, high stability, easy mass production, etc. However, the conventional nanozyme technology faces significant challenges in terms of difficulty in regulating the exposed crystal surface, complex composition, low catalytic activity, etc. In contrast, the emerging single-atom nanozymes (SANs) have attracted much attention in the field of environmental monitoring and control, due to their multiple advantages of atomically dispersed active sites, high atom utilization efficiency, tunable coordination environment, etc. To date, the insufficient efforts have been made to comprehensively characterize the applications of SANs in the monitoring and control of environmental pollutants. Building on the recent advances in the field, this review systematically summarizes the main synthesis methods of SANs and highlights their advances in the monitoring and control of environmental pollutants. Finally, we critically evaluate the limitations and challenges of SANs, and provide the insights into their future prospects for the monitoring and control of environmental pollutants.

分类号:

  • 相关文献

[1]4-tert-butylphenol triggers common carp hepatocytes ferroptosis via oxidative stress, iron overload, SLC7A11/GSH/GPX4 axis, and ATF4/HSPA5/GPX4 axis. Jiawen Cui,Qin Zhou,Meijin Yu,Yuhao Liu,Xiaohua Teng,Xianhong Gu. 2022

[2]Machine learning in the identification, prediction and exploration of environmental toxicology: Challenges and perspectives. Xiaotong Wu,Qixing Zhou,Li Mu,Xiangang Hu. 2022

[3]Optimizing single-atom cerium nanozyme activity to function in a sequential catalytic system for colorimetric biosensing. Qingchao Chang,Jiabin Wu,Ruiting Zhang,Shanshan Wang,Xianyu Zhu,Huandong Xiang,Yilong Wan,Zan Cheng,Maojun Jin,Xiaoke Li,Peng Xu,Fen Jin,Jing Wang. 2024

[4]Characterization of fowl adenoviruses isolated between 2007 and 2014 in China. Li Changjing,Li Haiying,Wang Dongdong,Wang Jianlin,Xu Shouzhen,Yin Yanbo,Wang Jingjing,Wang Youming,Liu Ping,Zhang Yi,Wang Shouchun,Li Jida,Cui Shangjin.

[5]Major parasitic diseases of poverty in mainland China: perspectives for better control. Wang, Jin-Lei,Li, Ting-Ting,Huang, Si-Yang,Cong, Wei,Zhu, Xing-Quan. 2016

[6]Tall grasses have an advantage over the invasive vine Mikania micrantha: Potential control agents. Zhou, Sheng,Li, Mingguang,Gao, Lei,Chen, Ping,Wu, Zhi,Xian, Wensheng,Fu, Weidong.

[7]H5N1 avian influenza in China. Chen HuaLan,Chen HuaLan. 2009

[8]The in vitro efficacy of deltamethrin and alpha-cypermethrin against "engorged female Haemaphysalis qinghaiensis ticks (Acari: Ixodidae). Ma, Miling,Guan, Guiquan,Liu, Qing,Dang, Zhisheng,Liu, Aihong,Ren, Qiaoyun,Liu, Zhijie,Li, Youquan,Chen, Ze,Liu, Junlong,Yang, Jifei,Yin, Hong,Luo, Jianxun. 2013

[9]Classical swine fever in China: A minireview. Luo, Yuzi,Li, Su,Sun, Yuan,Qiu, Hua-Ji.

[10]Control of swine pseudorabies in China: Opportunities and limitations. Sun, Yuan,Luo, Yuzi,Wang, Chun-Hua,Yuan, Jin,Li, Na,Song, Kun,Qiu, Hua-Ji.

[11]A review of the mealybug Oracella acuta: Invasion and management in China and potential incursions into other countries. Ke, Fushi,Vasseur, Liette,Gurr, Geoff M.,Wu, Kongming,You, Minsheng,You, Shijun,Liu, Jianfeng,Huang, Dechao,Vasseur, Liette,Gurr, Geoff M.,Clarke, Stephen R.,Sun, Jianghua,Wu, Kongming.

[12]Molecular cloning and virus-induced gene silencing of MiASB in the southern root-knot nematode, Meloidogyne incognita. Huang, Yonghong,Huang, Yonghong,Mei, Mei,Mao, Zhenchuan,Xie, Bingyan,Mei, Mei,Lv, Shun,Zhou, Jiankun,Chen, Shi. 2014

[13]Efficacy of different dosages of ivermectin injectable against the Hypoderma spp. in yaks. Ma, ML,Guan, GQ,Lu, BY,Liu, AH,Liu, ZJ,Chang, ZR,Li, FX,Chang, F,Luo, JX,Lu, WS,Zhang, QC,Yuan, GL,Yin, H,Boulard, C. 2003

[14]EFFECT OF SOLARIZATION TO KILL BRADYSIA CELLARUM ON CHINESE CHIVE GROWTH AND SOIL MICROBIAL DIVERSITY. Shi, Caihua,Shi, Linlin,Wu, Qingjun,Wang, Shaoli,Xu, Baoyun,Zhang, Youjun. 2022

[15]Recent Advances in Porcine Reproductive and Respiratory Syndrome Virus NADC30-Like Research in China: Molecular Characterization, Pathogenicity, and Control. Ying Yu,Qiaoya Zhang,Zhi Cao,Yan Dong Tang,Dasong Xia,Gang Wang,Hu Shan. 2022

[16]REGIONAL EPIDEMIOLOGY AND ASSOCIATED RISK FATORS OF PESTE DES PETITS RUMINANTS IN ASIA – A REVIEW [REGIONALNA EPIDEMIOLOGIJA IN Z NJO POVEZANI DEJAVNIKI TVEGANJA ZA KUGO DROBNICE V AZIJI – PREGLED]. Munibullah Munibullah,Yanmin Li,Kainat Munib,Zhidong Zhang. 2022

[17]Helminthosporium gramineum Rabenh f.sp echinochloae Secondary Metabolites for Biological Control of Barnyardgrass. Ruimei Geng *, Chenggang Luo , Liuqing Yu. 2012

[18]Comparison of Mating Behavior of Four Species of Oxyinae (Acrididae: Orthoptera). Sultana Riffat,Soomro Nuzhat,Kumar Santosh,Samajo Ahmed Ali. 2021

[19]REGIONAL EPIDEMIOLOGY AND ASSOCIATED RISK FATORS OF PESTE DES PETITS RUMINANTS IN ASIA - A REVIEW. Munibullah, Munibullah,Li, Yanmin,Munib, Kainat,Zhang, Zhidong. 2022

[20]Control of highly pathogenic avian influenza through vaccination. Xianying Zeng,Jianzhong Shi,Hualan Chen. 2024

作者其他论文 更多>>