| Literature DB >> 34763323 |
Yunxia Yang1, Qian Liu1, Yisong Zhao1, Jianmin Chen1, Bing Chen1, Yanling Yan1, Faming Gao1.
Abstract
The electrode material is vital for the performance of the electrochemical biosensor. Lately, many nanomaterials have been developed to improve the sensitivity and detection efficiency of the biosensors. In this work, a kind of one-dimensional nanomaterials, the CuPt alloy nanotubes with an open end (CuPt alloy NTs-AOE), was explored. The nanotubes with an open end can provide a larger electrochemical active surface area and more active sites for the immobilization of enzyme. The CuPt alloy displays excellent conductivity and catalytic activity. In addition, the Cu shows the great affinity to thio-compounds, which can greatly enhance the detection efficiency and sensitivity. As a result, the prepared biosensor demonstrates the wider linear range of 9.98 × 10-10-9.98 × 10-5g l-1for fenitrothion and 9.94 × 10-11-9.94 × 10-4g l-1for dichlorvos (as model OPs ) and with the lower detection limit of 1.84 × 10-10g l-1and 6.31 × 10-12g l-1(S/N = 3), respectively. Besides, the biosensor has been used to detect the real samples and obtains satisfactory recoveries (95.58%-100.56%).Entities:
Keywords: biosensor; nanotubes; organophosphate pesticides
Year: 2021 PMID: 34763323 DOI: 10.1088/1361-6528/ac38e5
Source DB: PubMed Journal: Nanotechnology ISSN: 0957-4484 Impact factor: 3.874