Graphene-based Biosensors for Biomolecules Detection

文献类型: 外文期刊

第一作者: Zheng, Qing

作者: Zheng, Qing;Wu, Hao;Wang, Nan;Ding, Kejian;Ma, Yuehui;Guang, Weijun;Yan, Rui;Wang, Junzhong

作者机构:

关键词: Biosensor;Graphene;Graphene oxide;Nucleic acid;Protein

期刊名称:CURRENT NANOSCIENCE ( 影响因子:1.824; 五年影响因子:1.659 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Recent years have witnessed various breakthroughs in the research of graphene-related materials since the emergence of a few promising techniques for large-scale production of mono- or multi-layer graphene films. With the help of various surface modification methods, the physicochemical properties of graphene are greatly improved and graphene shows superior sensitivity and selectivity for biological molecular analysis. This paper selectively reviews the application of graphene-based biosensors, especially for detecting nucleic acid, protein and biological small molecules. In addition, future perspectives of graphene-based biosensors are also prospected.

分类号: TB383

  • 相关文献

[1]Non-polymerase-cycling-assembly-based chemical gene synthesis: Strategies, methods, and progress. Xiong, Ai-Sheng,Peng, Ri-He,Zhuang, Jing,Liu, Jin-Ge,Gao, Feng,Yao, Quan-Hong,Cheng, Zong-Ming,Chen, Jian-Min. 2008

[2]Synthesis of a MnO2 Nanosheet/Graphene Flake Composite and Its Application as a Supercapacitor having High Rate Capability. Chu, Qingxin,Lu, Wenbo,Chang, Guohui,Xing, Zhicai,Li, Haiyan,Ge, Chenjiao,Wang, Lei,Luo, Yonglan,Sun, Xuping,Du, Juan,Asiri, Abdullah M.,Al-Youbi, Abdulrahman O.,Sun, Xuping,Asiri, Abdullah M.,Al-Youbi, Abdulrahman O.,Sun, Xuping. 2012

[3]Study on the Attractive Electroanalytical Performance of Carbon-Ionic Liquid Paste Electrode. Zhang, Xuzhi,Zhao, Jun,Chen, Bijuan,Qu, Keming,Li, Meng. 2013

[4]Fabrication of conductive elastic nanocomposites via framing intact interconnected graphene networks. Luo, Yongyue,Zhao, Pengfei,He, Dongning,Peng, Zheng,Yang, Qi,Kong, Lingxue,Peng, Zheng. 2014

[5]A Novel Immunosensor Based on Chitosan-Prussian Blue-Graphene Nanocomposite and Au Nanoparticle for Rapid Detection of Melamine. Dong, Yanjie,Zhao, Shancang,Li, Zengmei,Yue, Hui,Deng, Ligang,Zhang, Shuqiu,Wang, Yan. 2016

[6]Investigation on High Performance of Graphite-Ionic Liquid Paste Electrode: Characterization and New Hypothesis. Zhang, Xuzhi,Cui, Yi,Zhu, Jianxin,Zhao, Jun,Chen, Bijuan,Qu, Keming,Li, Meng. 2013

[7]A simple and sensitive electrochemical sensor for new neonicotinoid insecticide Paichongding in grain samples based on beta-cyclodextrin-graphene modified glassy carbon electrode. Zhang, M.,Zhao, H. T.,Yang, X.,Dong, A. J.,Zhang, H.,Wang, J.,Liu, G. Y.,Zhai, X. C.,Zhang, M.,Wang, J..

[8]Electrochemical Determination of Caffeine in Tea Using a Polydopamine-Gold Nanocomposite. Zou, Dongsheng,Fu, Haiping,Zhang, Guolin,Xiao, Runlin,Liu, Jun,Li, Shaojing. 2017

[9]Graphene oxide-enabled tandem signal amplification for sensitive SPRi immunoassay in serum. Hu, Weihua,He, Guangli,Guo, Chun Xian,Lu, Zhisong,Li, Chang Ming,Hu, Weihua,He, Guangli,Guo, Chun Xian,Lu, Zhisong,Li, Chang Ming,Hu, Weihua,He, Guangli,Guo, Chun Xian,Lu, Zhisong,Li, Chang Ming,Chen, Tao,Selvaraj, Jonathan Nimal,Liu, Yang.

[10]Label free electrochemical aptasensor for ultrasensitive detection of ractopamine. Wang, Peilong,Wang, Ruiguo,Su, Xiaoou,Yang, Fei,Shi, Lei,Zhou, Ying,He, Yujian,Yao, Dongsheng.

[11]In situ formation of graphene layers on graphite surfaces for efficient anodes of microbial fuel cells. Tang, Jiahuan,Chen, Shanshan,Yuan, Yong,Cai, Xixi,Zhou, Shungui.

[12]Determination of five sulfonylurea herbicides in environmental waters and soil by ultra high performance liquid chromatography with tandem mass spectrometry after extraction using graphene. Li, Cheng,Lu, Anxiang,Wang, Jihua,Ping, Hua,Luan, Yunxia,Chen, Jiayi,Lu, Anxiang,Li, Jie,Ha, Xuejiao.

[13]Recent Progress on Graphene-based Electrochemical Biosensors. Zhang, Yu,Shen, Jingjing,Li, Huihua,Wang, Linlin,Cao, Dashun,Feng, Xiaomiao,Ma, Yanwen,Wang, Lianhui,Zhang, Yu,Shen, Jingjing,Li, Huihua,Wang, Linlin,Cao, Dashun,Feng, Xiaomiao,Ma, Yanwen,Wang, Lianhui,Liu, Yuge.

[14]A Label-Free Aptamer-Based Fluorescent Assay for Cadmium Detection. Luan, Yunxia,Lu, Anxiang,Chen, Jiayi,Fu, Hailong,Xu, Li,Luan, Yunxia,Lu, Anxiang,Chen, Jiayi,Fu, Hailong,Xu, Li. 2016

[15]Construction and application of a built-in dual luciferase reporter for microRNA functional analysis. Bi, Yanzhen,Zheng, Xinmin,Shao, Changwei,Jiang, Li,Ouyang, Huiwu,Pan, Wen. 2011

[16]Split aptamers and their applications in sandwich aptasensors. Chen, Ailiang,Yan, Mengmeng,Yang, Shuming,Chen, Ailiang,Yan, Mengmeng,Yang, Shuming.

[17]An ultrasensitive amperometric immunosensor for zearalenones based on oriented antibody immobilization on a glassy carbon electrode modified with MWCNTs and AuPt nanoparticles. Liu, Na,Tan, Yanglan,Wang, Hui,Wu, Aibo,Nie, Dongxia,Zhao, Zhiyong,Liao, Yucai,Sun, Changpo.

[18]Aptamer based photometric assay for the antibiotic sulfadimethoxine based on the inhibition and reactivation of the peroxidase-like activity of gold nanoparticles. Yan, Jiao,Huang, Yafei,Zhang, Chenghui,Fang, Zongzhuang,Yan, Jiao,Huang, Yafei,Bai, Wenhui,Yan, Mengmeng,Zhu, Chao,Chen, Ailiang,Yan, Jiao,Huang, Yafei,Bai, Wenhui,Yan, Mengmeng,Zhu, Chao,Chen, Ailiang.

[19]Green Photocatalytic Synthesis of Au Nanoparticles/Multi-walled Carbon Nanotubes Nanocomposites and their Application for Glucose Sensing. Li, Qingzhen,Qin, Xiaoyun,Luo, Yonglan,Lu, Wenbo,Chang, Guohui,Sun, Xuping,Du, Juan,Ge, Chenjiao,Sun, Xuping,Asiri, Abdullah M.,Al-Youbi, Abdulrahman O.,Sun, Xuping,Asiri, Abdullah M.,Al-Youbi, Abdulrahman O..

[20]High sensitive rapid visual detection of sulfadimethoxine by label-free aptasensor. Chen, Ailiang,Jiang, Xiaoling,Zhang, Weiwei,Chen, Gang,Zhao, Yan,Tunio, Tarique Muhammad,Liu, Jinchuan,Lv, Zhenzhen,Yang, Shuming,Chen, Ailiang,Jiang, Xiaoling,Zhang, Weiwei,Chen, Gang,Zhao, Yan,Tunio, Tarique Muhammad,Liu, Jinchuan,Yang, Shuming,Lv, Zhenzhen,Li, Cheng.

作者其他论文 更多>>