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CuNPs/PAA/GR纳米新材料修饰玻碳电极检测猪肉中的莱克多巴胺 被引量:4

Determination of Ractopamine in Pork Using Cu NPs/PAA/GR Nanocomposites Modified Glassy Carbon Electrode
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摘要 采用一种温和且简单的原位生长法将铜纳米粒子和石墨烯非共价键合,形成一种对莱克多巴胺催化活性高的复合纳米新材料Cu NPs/PAA/GR。该材料用扫描电镜表征形貌,用阻抗表征修饰电极。不同扫速和p H值条件下,以其修饰玻碳电极构建的电化学体系受吸附控制,莱克多巴胺在该电极表面的反应机理属两电子转移过程。体系中电化学参数为:电子转移数(n)=1.7,修饰电极的有效面积为3.57 cm2,为裸电极的12.6倍,电极吸附量(Гs)为1.98×10-12mol/cm2。采用微分脉冲伏安法进行检测,莱克多巴胺的浓度在1~30μmol/L范围内呈良好线性关系(r2=0.990 2),检出限(S/N=3)为18.3 nmol/L。该传感器经济易制备、灵敏性高、稳定性与重现性好。将该传感器用于猪肉中莱克多巴胺的检测,其回收率为97.0%~102.5%,相对标准偏差为2.8%~3.2%。 A moderate and simple in-situ growth approach was adpoted to bond coppernanoparticles noncovalently to graphene for preparation of Cu NPs/PAA/GR nanocomposites which were used for electrocatalysis of ractopamine(RAC). The morphology of the material was observed by scanning electron microscopy(SEM),and the state of the modified glassy carbon electrode was investigated by electrochemical impedance(EIS). Tests at various scan rates and p H conditions indicated that the modified electrode has an adsorption-controlled electrochemical system. The mechanism for the electrode reaction for ractopamine involves a two-electron transter process accompanied by a deprotonation step. Electrochemical parameters were calculated as follows: the electron transfer number(n) was1. 7,the effective area for the Cu NPs/PAA/GR/GCE electrode was 3. 57 cm^2,12. 6 times as large as bare electrode,and the adsorption capacity(Гs) value was 1. 98 × 10^-12 mol/cm^2. Under the optimal conditions by differential pulse voltammetric measurement,the calibration curve of RAC was linear in the range of 1-30 μmol/L(r^2= 0. 990 2) with a detection limit(S/N = 3) of 18. 3 nmol/L.With advantages of facile fabrication,high sensitivity,good stability and high reproducibility,the sensor was applied in the detection of ractopamine in pork samples with recoveries of 97. 0%-102. 5% and relative standard deviations(RSD) of 2. 8%-3. 2%.
出处 《分析测试学报》 CAS CSCD 北大核心 2017年第2期247-251,共5页 Journal of Instrumental Analysis
基金 国家自然科学基金资助项目(21465004) 2017年广西中青年能力提升项目 校级资助一般项目(2016YB033)
关键词 还原石墨烯 莱克多巴胺 纳米铜 计时库仑 微分脉冲伏安法 graphene(GR) ractopamine(RAC) copper nanoparticles(Cu NPs) chronocoulometry differential pulse voltammetry(DPV)
作者简介 通讯作者:彭金云,博士,教授,研究方向:电化学,Tel:0771—7870708,E—mail:pengjinyun@yeah.net
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  • 1闫永臣,王宗花,毛蕾蕾,罗国安.L-酪氨酸功能化多壁碳纳米管的制备及表征[J].分析试验室,2006,25(8):17-20. 被引量:9
  • 2许银玉,吴朝阳,陈利国,吴争鸣,沈国励,俞汝勤.基于铂纳米颗粒修饰碳纳米管Nafion膜电极的葡萄糖传感器[J].化学传感器,2006,26(2):48-53. 被引量:5
  • 3GoodingJJ, Praig V G, Halle A H. Anal. Chem., 1998, 70(11): 2396-2402.
  • 4Wilson R, Tumer A P F. Biosens. Bioelectro. , 1992, 7(3): 165-185.
  • 5ParkS, Boo H, ChungTD. Anal. Chim. Acta, 2006, 556(1): 46-57.
  • 6Kurniawan F, Tsakova V, Mirsky V M. Electroanalysis, 2006, 18(19-20): 1937-1942.
  • 7Rong L Q, Yang C, Qian Q Y, Xia X H. Talanta, 2007, 72(2): 819-824.
  • 8Kang X H, Mai Z B, Zou X Y, Cai P X, Mo J Y. Anal. Biochem. , 2007, 363(1): 143-150.
  • 9Wu H X, CaoWM, LiY, Liu G, Wen Y, Yang H F, YangSP. Electrochim. Acta, 2010, 55(11): 3734-3740.
  • 10Zhu H, Lu X Q, Li M X, Shao Y H, Zhu Z W. Talanta, 2009, 79(5) .. 1446-1453.

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