Gautam Das, Thao Quynh Ngan Tran, Hyon Hee Yoon Department of Chemical and Biological Engineering, Gachon University, Seongnam, Republic of South Korea Abstract: In this work, three different spherulitic nanostructures Cu–CuOA, Cu–CuOB, and Cu–CuOC were synthesized in water-in-oil microemulsions by varying the surfactant concentration (30 mM, 40 mM, and 50 mM, respectively). The structural and morphological characteristics of the Cu–CuO nanostructures were investigated by ultraviolet–visible (UV–vis) spectroscopy, X-ray diffraction, scanning electron microscopy, and high-resolution transmission electron microscopy techniques. The synthesized nanostructures were deposited on multiwalled ca...
Precisely detecting the concentration of glucose in the human body is an attractive way to prevent o...
The development of material-based glucose sensor SiO2-CuO using Screen Printed Carbon Electrode (SPC...
A non-enzymatic glucose sensor based on a pencil graphite electrode (PGE), a modifier suspension inc...
Identifying a non-enzymatic sensor electrocatalyst for the accurate determination of biomolecules is...
The glucose sensitivity achieved with copper(II) oxide particles with three different morphologies (...
Hybrids of carbon nanotubes (CNTs) and cupric oxide (CuO) nanoparticles were synthesized through a s...
The measurement of blood glucose levels is essential for diagnosing and managing diabetes. Enzymatic...
Cu nanostructures with different shapes were synthesized via a simple reduction approach from CuO na...
The glucose concentration in human blood can have a worrisome impact on human health, so the distrib...
A facile strategy is developed for the in situ synthesis of low-cost, freestanding, binder-free CuO ...
The aim of this study was to prepare three types of multiwall carbon nanotubes (CNT)-based composite...
Low-cost enzyme-free glucose sensors with partial flexibility adaptable for wearable Internet of Thi...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...
Copper oxide (CuO) films directly grown on Ti substrate have been successfully prepared via a hydrot...
An enzymeless biosensor based on Cu(x)O/Cu electrode was investigated in this study. The XRD analysi...
Precisely detecting the concentration of glucose in the human body is an attractive way to prevent o...
The development of material-based glucose sensor SiO2-CuO using Screen Printed Carbon Electrode (SPC...
A non-enzymatic glucose sensor based on a pencil graphite electrode (PGE), a modifier suspension inc...
Identifying a non-enzymatic sensor electrocatalyst for the accurate determination of biomolecules is...
The glucose sensitivity achieved with copper(II) oxide particles with three different morphologies (...
Hybrids of carbon nanotubes (CNTs) and cupric oxide (CuO) nanoparticles were synthesized through a s...
The measurement of blood glucose levels is essential for diagnosing and managing diabetes. Enzymatic...
Cu nanostructures with different shapes were synthesized via a simple reduction approach from CuO na...
The glucose concentration in human blood can have a worrisome impact on human health, so the distrib...
A facile strategy is developed for the in situ synthesis of low-cost, freestanding, binder-free CuO ...
The aim of this study was to prepare three types of multiwall carbon nanotubes (CNT)-based composite...
Low-cost enzyme-free glucose sensors with partial flexibility adaptable for wearable Internet of Thi...
The production of a nanomaterial with enhanced and desirable electrocatalytic properties is of prime...
Copper oxide (CuO) films directly grown on Ti substrate have been successfully prepared via a hydrot...
An enzymeless biosensor based on Cu(x)O/Cu electrode was investigated in this study. The XRD analysi...
Precisely detecting the concentration of glucose in the human body is an attractive way to prevent o...
The development of material-based glucose sensor SiO2-CuO using Screen Printed Carbon Electrode (SPC...
A non-enzymatic glucose sensor based on a pencil graphite electrode (PGE), a modifier suspension inc...