4.7 Article

Sensitivity and selectivity sensing cadmium(II) using amination functionalized porous SnO2 nanowire bundles-room temperature ionic liquid nanocomposite: Combined efficient cation capture with control experimental conditions

Journal

SENSORS AND ACTUATORS B-CHEMICAL
Volume 240, Issue -, Pages 887-894

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2016.09.060

Keywords

NH2/SnO2-RTIL; Electroanalysis; Sensitivity and selectivity; Cadmium(II)

Funding

  1. National Natural Science Foundation of China [U1532123, 21277146, 61573334, 21377131, 21475133, 61474122]

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Electrochemical analytical challenge for cadmium(II) [Cd(II)] determination is to seek an efficient platform to realize the sensitive and selective detection. Herein, a sensing interface for the detection of Cd(II) was designed and constructed by the amination treated porous SnO2 nanowire bundles-room temperature ionic liquid nanocomposite (NH2/SnO2-RTIL). Through the delicate control of experimental conditions (deposition potential and electrolyte pH), the excellent sensitive and selective electroanalysis of ultra-trace Cd(II) was achieved using square wave anodic stripping voltammetry (SWASV). The NH2/SnO2-RTIL uses its efficient capture during the Cd(II) deposition step to enhance the sensitivity of the stripping response. Under the optimal experimental conditions, the NH2/SnO2-RTIL nanocomposite offered direct detection of Cd(II) within the desirable range (0.0267 mu M) in drinking water as specified by the World Health Organization (WHO), a limit of detection (3 sigma method) of 0.0054 mu M with a sensitivity of 124.03 +/- 3.75 mu A mu M-1 was obtained in the presence of common heavy metal ions. Finally, the analytical application of the proposed method toward the detection of Cd(1I) in a real water sample collected from Wangxiaoying sewage treatment plant, Hefei City, China, has been successfully verified. (C) 2016 Elsevier B.V. All rights reserved.

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