2023
DOI: 10.1007/s00604-023-05751-w
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Dual-monomer molecularly imprinted electrochemical sensor based on amino-functionalized MOFs and graphene for trace determination of taurine

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Cited by 4 publications
(2 citation statements)
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“…Most of the reported techniques offer several advantages, including low sensitivity, complex mobile phases, and time-consuming extraction procedures with limited applicability. A summary of the results obtained in this study compared with previously reported works is presented in Table 1, [39][40][41][42][43][44][45] showing that the developed method has certain advantages over previous approaches in terms of stability, suitable surface area, and feasible biological activity. Notably, our study's strengths include the utilization of a calorimetric chemosensing procedure to detect taurine in urine and blood samples for the rst time.…”
Section: Real Sample Analysismentioning
confidence: 59%
“…Most of the reported techniques offer several advantages, including low sensitivity, complex mobile phases, and time-consuming extraction procedures with limited applicability. A summary of the results obtained in this study compared with previously reported works is presented in Table 1, [39][40][41][42][43][44][45] showing that the developed method has certain advantages over previous approaches in terms of stability, suitable surface area, and feasible biological activity. Notably, our study's strengths include the utilization of a calorimetric chemosensing procedure to detect taurine in urine and blood samples for the rst time.…”
Section: Real Sample Analysismentioning
confidence: 59%
“…20 Nahid Rezvani Jalal et al 21 constructed a highly sensitive electrochemical sensor for the detection of the z E-mail: shayu@xauat.edu.cn; mjp@xauat.edu.cn cancer drug imatinib (IMA) by in situ growing the HKUST-1 material on conductive graphene oxide nanoribbons. In addition, Duan et al 22 developed a molecularly imprinted electrochemical sensor for sensitive detection of trace taurine by using MOFs and graphene as carriers and modifying the electrode surface with dopamine and o-phenylenediamine as dimers. In recent years, MXene has emerged as a highly sought-after two-dimensional (2D) layered nanomaterial composed of transition metal carbides and/or nitrides, possessing unique structural, mechanical, electronic, optical and thermal properties, has been warmly sought after by researchers in various countries.…”
mentioning
confidence: 99%