Ni-P nanosheets derived from a metal–organic framework containing triptycene ligand: A high-performance electrochemical sensor for glucose determination
Author:
Funder
Ilam University
Publisher
Elsevier BV
Subject
Spectroscopy,Analytical Chemistry
Reference49 articles.
1. In situ fabrication of Ni (OH) 2 flakes on Ni foam through electrochemical corrosion as high sensitive and stable binder-free electrode for glucose sensing;Xia;Sens. Actuators b: Chem.,2017
2. Flower-like core-shell nanostructures based on natural asphalt coated with Ni-LDH nanosheets as an electrochemical platform for prostate cancer biomarker sensing;Farokhi;Microchim. Acta,2023
3. Advanced core-shell nanostructures based on porous NiCo-P nanodiscs shelled with NiCo-LDH nanosheets as a high-performance electrochemical sensing platform;Farokhi;Electrochim. Acta,2020
4. Ultrasensitive electrochemical biosensor for microRNA-377 detection based on MXene-Au nanocomposite and G-quadruplex nano-amplification strategy;Wu;Electrochim. Acta,2022
5. Constructing an Ultra-Rapid Nanoconfinement-Enhanced Fluorescence Clinical Detection Platform by Using Machine Learning and Tunable DNA Xerogel “Probe”;Yu;Anal. Chem.,2023
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