Aupt Deposition Controlled By Lattice Induced Orientation of the Ni Substrate Was Applied to Construct Electrochemical Immunosensor for Pct Detection

16 Pages Posted: 22 Mar 2024

See all articles by Xiaohong Xia

Xiaohong Xia

Xinjiang University - School of Chemical Engineering and Technology

Bawurejiang Duolihong

Xinjiang University

Xiangdong Ma

Xinjiang University

Rui Liu

Xinjiang University

Shan Yue

Xinjiang University

Abstract

For the electrodeposition, the conductivity and lattice structure of substrate is important to the morphology and lattice of the deposited material. In this study, gold-platinum (AuPt) nanopartical was deposited on nickel foam (NF) based on the lattice induced orientation of the Ni substrate, and the obtained AuPt/NF was applied to construct electrochemical impedimetric immunosensor for procalcitonin (PCT) detection. As a new immunosensor matrix, NF with higher electrical conductance, flexibility and specific surface area, which can improve the plasticity, sensitivity and universality of the immunoelectrode. Due to the lattice matching between Au and Ni, ultrathin AuPt nanolayer with good biocompatibility and large surface area can be modified on the NF surface, which can bind more biomolecules and amplifies the change of impedance signal. Based on the synergistic effect between AuPt and NF, PCT detection based on this electrochemical impedimetric immunosensor with a wide linear range (0.002 ng mL-1 to 20 ng mL-1) and low detection limit (0.0013 ng mL-1). In addition, this impedimetric immunosensor exhibits high recovery in the PCT detection of serum samples. This work provides a new thought and method for the construction of electrochemical immunosensor.

Keywords: Lattice induced orientation, AuPt/NF, electrochemical immunosensor, Procalcitonin

Suggested Citation

Xia, Xiaohong and Duolihong, Bawurejiang and Ma, Xiangdong and Liu, Rui and Yue, Shan, Aupt Deposition Controlled By Lattice Induced Orientation of the Ni Substrate Was Applied to Construct Electrochemical Immunosensor for Pct Detection. Available at SSRN: https://ssrn.com/abstract=4769412 or http://dx.doi.org/10.2139/ssrn.4769412

Xiaohong Xia (Contact Author)

Xinjiang University - School of Chemical Engineering and Technology ( email )

China

Bawurejiang Duolihong

Xinjiang University ( email )

Xinjiang
China

Xiangdong Ma

Xinjiang University ( email )

Xinjiang
China

Rui Liu

Xinjiang University ( email )

Xinjiang
China

Shan Yue

Xinjiang University ( email )

Xinjiang
China

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