Citation: OUYANG Rui-Zhuo. Biosensors Based on Functional Nanomaterials: Publications in Chinese Journals in 2011[J]. Chinese Journal of Analytical Chemistry, ;2012, 40(12): 1938-1944. doi: 10.3724/SP.J.1096.2012.20999
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Nanomaterials have been increasingly used recently as the leading recognition elements in the biosensing area. The unique properties of functional nanomaterials have enhanced the detection behaviors of biosenors to a rather high level. This comment focuses on all papers published in all Chinese Journals in 2011 on the fabrication of various biosensors based on the functional nanomaterials. Materials with different structures used to construct the biosensors are classified and reviewed in details, followed by a discussion of their applications in life sciences. The prospect of the biosensors in China is also discussed briefly and compared with the research trend in the word.
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Keywords:
- Functional nanomaterials,
- Biosensors,
- Review
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[1]
1 Thevenot D R, Toth K, Durst R A, Wilson G S. Pure Appl. Chem., 1999, 71 (12): 2333-2348
-
[2]
2 Zhang X Q, Guo Q, Cui D X. Sensors, 2009, 9: 1033-1053
-
[3]
3 Khalid M A S, Salman A A, Khan M N, Ansari A A. Sensors, 2010, 10 (1): 963-993
-
[4]
4 Vikesland P J, Wigginton K R. Environ. Sci. Technol., 2010, 44: 3656-3669
-
[5]
5 Ju H X. Sci. China Chem., 2011, 54(8): 1202-1217
-
[6]
6 CHEN Gui-Fang, LIANG Zhi-Qiang, LI Gen-Xi. Chin. J. Biophy., 2010, 26(8): 711-725
-
[7]
陈桂芳, 梁志强, 李根喜. 生物物理学报, 2010, 26(8): 711-725
-
[8]
7 Zhang B T, Du X, Jia S P, He J H, Guo L H. Sci. China Chem., 2011, 54(8): 1260-1265
-
[9]
8 LEI Bo, QU Bing-Jun, YANG Hua, ZHANG Xiang-Ying, LIU Fang. Chinese J. Biotech., 2011, 27(10): 2527-2535
-
[10]
雷 博, 曲炳郡, 杨 华, 张向颖, 刘 芳. 生物工程学报, 2011, 27(10): 2527-2535
-
[11]
9 LIU Yan, NIU Wei-Fen, XU Lan. Chinese J. Anal. Chem., 2011, 39(11): 1676-1681
-
[12]
刘 艳, 牛卫芬, 徐 岚. 分析化学, 2011, 39(11): 1676-1681
-
[13]
10 ZHANG Zhi-Jun, LI Xi, XIAO Liang-Hong, ZOU Chuang-Liang, ZHANG Chao-Can. Sci. Sin. Chim., 2011, 41(6): 1001-1009
-
[14]
张志军, 李 曦, 肖亮泓, 邹传亮, 张超灿. 中国科学: 化学 2011, 41(6): 1001-1009
-
[15]
11 ZHANG Yu-Xue, MOU Jing-Nan, LIU Li-Yan, WANG Mao-Qing, DU Xiao-Yan. Chin. J. Dis. Control. Prv., 2011, 15(9): 745-748
-
[16]
张玉雪, 牟靖男, 刘丽燕, 王茂清, 杜晓燕. 中国疾病控制杂志, 2011, 15(9): 745-748
-
[17]
12 Zhang Y Y, Xiang Y, Cai Y Q, Yuan R, Qian X Q, Zhang H X, Chen Y, Su J, Xu J. Sci. China Chem., 2011, 54 (11): 1770-1776
-
[18]
13 ZHAO Chang-Zhi, YU Jia, ZHAO Gai-Shuang, JIAO Kui. Chinese J. Anal. Chem., 2011, 39(6): 886-889
-
[19]
赵常志, 俞 佳, 赵改爽, 焦 奎. 分析化学, 2011, 39(6): 886-889
-
[20]
14 WU Ai-Hong, SUN Jian-Jun, WU Shao-Hua. Chinese J. Anal. Chem., 2011, 39(12): 1898-1902
-
[21]
吴爱红, 孙建军, 吴韶华. 分析化学, 2011, 39(12): 1898-1902
-
[22]
15 WANG Hong-Mei, LIN Li-Qing, WENG Shao-Huang, WANG Li-Man, LIU Yin-Huan, LIN Xin-Hua. Electrochmistry, 2011, 17(2): 180-185
-
[23]
汪红梅, 林丽清, 翁少煌, 王丽满, 刘银环, 林新华. 电化学, 2011, 17(2): 180-185
-
[24]
16 KANG Xiao-Bin, PANG Guang-Chang, LIANG Xin-Yi. Food Sci., 2011, 32(16): 379-383
-
[25]
康晓斌, 庞广昌, 梁新义. 食品科学, 2011, 32(16): 379-383
-
[26]
17 CHEN Xiang-Qiang, HE Miao, SHI Han-Chang, CAI Qiang. Chinese J. Anal. Chem., 2011, 39(4): 443-448
-
[27]
陈向强, 何 苗, 施汉昌, 蔡 强. 分析化学, 2011, 39(4): 443-448
-
[28]
18 JIA Wen-Juan, CUI Miao, ZHANG Yan, SHUANG Shao-Min. Chinese J. Anal. Chem., 2011, 39(9): 1423-1426
-
[29]
贾文娟, 崔 淼, 张 彦, 双少敏. 分析化学, 2011, 39(9): 1423-1426
-
[30]
19 LUO Qi-Mei, WANG Hui-Xian, XU Xin-Yu, LI Yan-Tao, HUANG Jun, LIU Deng-You. Journal of Instrumental Analysis, 2011, 30(7): 780-783
-
[31]
罗启枚, 王辉宪, 徐新宇, 李彦涛, 黄 俊, 刘登友. 分析测试学报, 2011, 30(7): 780-783
-
[32]
20 WANG Yan, ZHEN Sheng-Hang, ZHU Yang, XIE Guo-Ming. Journal of Instrumental Analysis, 2011, 30(4): 349-355
-
[33]
王 艳, 甄生航, 朱 洋, 谢国明. 分析测试学报, 2011, 30(4): 349-355
-
[34]
21 Tu X M, Luo S L, Luo X B, Zhao Y J, Feng L, Li J H. Sci. China Chem., 2011, 54(8): 1319-1326
-
[35]
22 JIANG Wei, HUANG Lei, ZHANG Yu-Zhong. Chinese J. Anal. Chem., 2011, 39(7): 1038-1042
-
[36]
姜 炜, 黄 蕾, 张玉忠. 分析化学, 2011, 39(7): 1038-1042
-
[37]
23 FANG Yu-Xin, SHANG Hong-Cai, QIN Xia, FAN Guan-Wei, ZHANG Di, ZHAO Wei, LI Zheng-Chun, ZHANG Bo-Li, CHEN Qiang. Chinese J. Anal. Chem., 2011, 39(9): 1302-1306
-
[38]
房钰鑫, 商洪才, 秦 霞, 樊官伟, 张 迪, 赵 薇, 李争春, 张伯礼, 陈 强. 分析化学, 2011, 39(9): 1302-1306
-
[39]
24 LIU Hai-Ping, WANG Zhen-Hui, ZHAO Xiao-Ling. Chinese J. Anal. Chem., 2011, 39(4): 471-475
-
[40]
柳海萍, 汪振辉, 赵小玲. 分析化学, 2011, 39(4): 471-475
-
[41]
25 YANG Xiu-Yun, XU Chun-Ying, YUAN Bai-Qing, YOU Tian-Yan. Chinese J. Anal. Chem., 2011, 39(8): 1233-1237
-
[42]
杨秀云, 徐春荧, 袁柏清, 由天艳. 分析化学, 2011, 39(8): 1233-1237
-
[43]
26 CHEN Qing-Tao, CHEN Feng-Hua, LIU Gui-Xia, DONG Xiang-Ting, WANG Jin-Xian. Sci. Sin. Chim., 2011, 41(5): 798-805
-
[44]
陈庆涛, 陈凤华, 刘桂霞, 董相廷, 王进贤. 中国科学: 化学, 2011, 41(5): 798-805
-
[45]
27 ZHAO Jin-Jin, WU Mei-Sheng, TU Yi-Feng. Chinese J. Anal. Chem., 2011, 39(7): 985-989
-
[46]
赵金金, 吴梅笙, 屠一锋. 分析化学, 2011, 39(7): 985-989
-
[47]
28 Wang M D, Han Y T, Liu X X, Nie Z, Deng C Y, Guo M L, Yao S Z. Sci. China Chem., 2011, 54(8): 1273-1276
-
[48]
29 ZENG Yun-Long, LI Xia-Fei, HUANG Hao-Wen, TANG Chun-Ran, ZHAO Huan, HU Ya-Mei, LI Jin. Chinese J. Anal. Chem., 2011, 39(8): 1171-1175
-
[49]
曾云龙, 李霞飞, 黄昊文. 唐春然, 赵 环. 胡娅梅. 李 进. 分析化学, 2011, 39(8): 1171-1175
-
[50]
30 Ge Z L, Pei H, Wang L H, Song S P, Fan C H. Sci. China Chem., 2011, 54(8): 1273-1276
-
[51]
31 WU Yuan-Zhao, GAN Ning, HU Fu-Tao, LI Tian-Hua, CAO Yu-Ting, ZHENG Lei. Chinese J. Anal. Chem., 2011, 39(11): 1634-1640
-
[52]
巫远招, 干 宁, 胡富陶, 李天华, 曹玉廷, 郑 磊. 分析化学, 2011, 39(11): 1634-1640
-
[53]
32 Wang X Z, Zhang L L, Miao L X, Kan M X, Kong L L, Zhang H M. Sci. China Chem., 2011, 54(3): 521-525
-
[54]
33 XIANG Qian, XIANG Chao-Fang. Chem. Sensor, 2011, 31(1): 60-63
-
[55]
向 乾, 向朝芳. 化学传感器, 2011, 31(1): 60-63
-
[56]
34 ZHOU Yu, YIN Fan, SUN Lei, ZHOU Li-Juan. Journal of Instrumental Analysis, 2011, 30(7): 727-733
-
[57]
周 宇, 尹 凡, 孙 磊, 周丽娟. 分析测试学报, 2011, 30(7): 727-733
-
[58]
35 Wang T, Zhu Y, Li G, Zhang S Y, Song J M, Mao C J, Wu J Y, Jin B K, Tian Y P. Sci. China Chem., 2011, 54(10): 1645-1650
-
[59]
36 ZHU Xu, LI Chun-Lan, LIU Qin, ZHU Xiao-Hua, ZHANG Yin-Tang, XU Mao-Tian. Chinese J. Anal. Chem., 2011, 39(12): 1846-11851
-
[60]
朱 旭, 李春兰, 刘 琴, 朱效华, 张银堂, 徐茂田. 分析化学, 2011, 39(12): 1846-11851
-
[61]
37 XUE Qian-Nan, BIAN Chao, TONG Jian-Hua, SUN Ji-Zhou, ZHANG Hong, XIA Shan-Hong. Chinese J. Anal. Chem., 2011, 39(6): 804-808
-
[62]
薛茜男, 边 超, 佟建华, 孙楫舟, 张虹, 夏善红. 分析化学, 2011, 39(6): 804-808
-
[63]
38 Jin J Y, Ouyang X Y, Li J S, Jiang J H, Wang H, Wang Y X, Yang R H. Sci. China Chem., 2011, 54(8): 1266-1272
-
[64]
39 ZHANG Ying-Wei, LI Hai-Long, SUN Xu-Ping. Chinese J. Anal. Chem., 2011, 39(7): 998-1002
-
[65]
张瑛洧, 李海龙, 孙旭平. 分析化学, 2011, 39(7): 998-1002
-
[66]
40 He Y, Yan X P. Sci. China Chem., 2011, 54(8): 1254-1259
-
[67]
41 ZHAO Qian, WANG Guo-Tao, JIA Li-Ping, TAO Xu-Quan, WANG Huai-Sheng. Journal of Instrumental Analysis, 2011, 30(7): 713-719
-
[68]
赵 倩, 王国涛, 贾丽萍, 陶绪泉, 王怀生. 分析测试学报, 2011, 30(7): 713-719
-
[69]
42 Guo G M, Chen Q G, Chen X. Sci. China Chem., 2011, 54(11): 1777-1781
-
[70]
43 Ma F, Jia L J, Zhang Y, Sun B, Qi H L, Gao Q, Zhang C X. Sci. China Chem., 2011, 54(8): 1357-1364
-
[71]
44 Liu C H, Wang Z, Wang X K, Li Z P. Sci. China Chem., 2011, 54(8): 1292-1297
-
[72]
45 Chen X, Wang S, Lin J J, Liu A L, Huang S M. Sci. China Chem., 2011, 54(3): 483-489
-
[73]
46 CHEN Zhi-Qiang, LI Jian-Ping, LI Yu-Ping. Chinese J. Anal. Chem., 2011, 39(7): 1009-1014
-
[74]
陈志强, 李建平, 李玉平. 分析化学, 2011, 39(7): 1009-1014
-
[75]
47 Jose M P, Paloma Y S, Araceli G C. Electrochim. Acta, 2008, 53(19): 5848-5866
-
[76]
48 LIU Jian-Yun, HUANG Qian-Ming, WANG Xian-Xiang, LI Zhen, CHEN Hua-Ping. Prog. Chem., 2010, 22(11): 2179-2190
-
[77]
刘建云, 黄乾明, 王显祥, 李 珍, 陈华萍. 化学进展, 2010, 22(11): 2179-2190
-
[78]
49 Yang L Q, Ren X L, Tang F Q, Zhang L. Biosens. Bioelectron., 2009, 25: 889-895
-
[79]
50 Wang W, Zhu J J. Sci. China Chem., 2011, 54(8): 1177-1184
-
[80]
51 Yun Y H, Eteshola E, Amit B, Dong Z Y, Shim J S, Conforti L, Kim D, Schulz M J, Ahn C H, Watts N. Sensors, 2009, 9: 9275-9299
-
[81]
52 Pandey P, Datta M, Malhotra B D. Anal. Lett., 2008, 41: 159-209
-
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