Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research focused on Thermistor and Temperature coefficient, with related work in Ceramic, Dielectric spectroscopy, Spinel. Notable publications include 'Fabrication and electrical properties of the fast response Mn1.2Co1.5Ni0.3O4 miniature NTC chip thermistors', 'Novel NTC ceramics based on pyrochlore-type A2Ti2O7 (A = Sm, Eu, Y) titanates for high-temperature thermistors', and 'A study on the electrical properties of Mn-Co-Ni-O thin films grown by radio frequency magnetron sputtering with different thicknesses'.
Enhanced wide temperature range and linear electrical properties in Y2/3Cu3Ti4O12-Al2O3 composite ceramics
High‐entropy effect on the electrical properties and aging stability of lanthanum aluminate ceramics
High-temperature thermistors using novel double perovskite Ba2ReNbO6 (Re = La, Nd, and Sm) NTC ceramics
Achieving high‐performance Y <sub>2/3</sub> Cu <sub>3</sub> Ti <sub>4</sub> O <sub>12</sub> thermistor ceramics with high orientation by using a sol‒gel derived strategy
Design of temperature measurement system guided by thermal dissipation coefficient of NTC thermistor
Enhanced temperature range and stability in LaAlO3 NTC ceramics through Ce-Nb codoping
Microstructural and electrical properties of La0.9B0.1AlO3 (B=Pr, Nd, Sm) ceramics obtained by rare-earth ion doping
Enhanced Temperature Range and Stability in Laalo3 Ntc Ceramics Through Ce-Nb Codoping
Valence-Induced Effects on the Electrical Properties of Mn-Co-Fe-Zn-Ni-O High-Entropy Ceramics with Different Mn Feedstocks
Ce-Nb Co-Doping Endows Laalo3 Novel Wide Temperature Range and Excellent Stability Ntc Ceramics
Ce-Nb Co-Doping Endows Laalo3 Novel Wide Temperature Range and Excellent Stability Ntc Ceramics
Vacancy defects reducing the accuracy and reliability of NTC sensors
High-stability solid solution perovskite (1-x) Bi0.2Sr0.5La0.3TiO3- xLaMnO3 (0.05≤ × ≤0.2) for wide-temperature NTC thermistors
Aging improvement in Ho-doped NTC ceramics prepared by high-energy ball mill method
A novel design of fast response Mn–Ni–Cu–Fe–O microbead thermistors for radiosonde
Design of a Mn-Ni-Cu-Fe-O Microbead Thermistor for Radiosonde
Enhanced anti-aging behaviors in cubic phase CeO2 induced BaSnO3 thermosensitive ceramics
Novel NTC ceramics based on pyrochlore-type A2Ti2O7 (A = Sm, Eu, Y) titanates for high-temperature thermistors
CaMn Zr(1-)O3: A novel NTC thermo-sensitive ceramic for applications in a wide temperature range
Effect of Zn/Fe co-doping on the microstructure, electrical properties and aging behavior of Co–Mn–Ni–O NTC ceramics
The electrical properties of (Ba, Ca, Ce, Ti, Zr)O3 thermistor for wide-temperature sensor architecture
High-solid content, low viscosity and long-term stability Mn–Co–Ni–O ceramic slurry for the fabrication of free-standing ultrathin NTC sheets
High-Solid Content, Low Viscosity and Long-Term Stability Mn-Co-Ni-O Ceramic Slurry for the Fabrication of Free-Standing Ultrathin Ntc Sheets
Fast response and high stability Mn–Co–Ni–Al–O NTC microbeads thermistors
A novel core-shell structure NTC ceramic with high stability fabricating by an in-situ ink-jet printing method
New simultaneously doped pyrochlore compounds (Ca1−xCex)2(ZrxNb1−x)2O7 negative temperature coefficient ceramics
Resistance-temperature characteristics of a new high-temperature thermistor ceramics of Mn-doping Ba–Ca–Zr–Ti–O system
Substrate-induced morphology and its effect on the electrical properties and stability of polycrystalline Mn1.2Co1.5Ni0.3O4 thin films
Wide temperature range negative temperature coefficient thermistor of a Y2O3 modified LaMnO3 bilayer thin film
Preparation and characterization for LaMnO3 and 0.3LaMnO3–0.7Y2O3 high temperature bilayer structure NTC thermistors