期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
Enhanced humidity-sensing performance of(Zr^(4+)/Sb^(5+))-codoped TiO_(2) ceramics with giant dielectric properties
1
作者 Noppakorn Thanamoon Nateeporn Thongyong +2 位作者 Kaniknun Sreejivungsa Narong Chanlek Prasit Thongbai 《Journal of Advanced Ceramics》 2025年第1期71-80,共10页
In this study,(Zr_(0.5)/Sb_(0.5))xTi_(1−x)O_(2) ceramics with x=0.01,0.025,and 0.05 were prepared via the solid-state reaction(SSR)method.A pure phase of rutile TiO_(2) with a highly dense microstructure and relative ... In this study,(Zr_(0.5)/Sb_(0.5))xTi_(1−x)O_(2) ceramics with x=0.01,0.025,and 0.05 were prepared via the solid-state reaction(SSR)method.A pure phase of rutile TiO_(2) with a highly dense microstructure and relative density(ρr)higher than 96%was detected in all the sintered ceramics.The mean grain size was reduced,but the dielectric permittivity(ε′)increased.The giant dielectric properties were tested to investigate their possible use in capacitors and capacitive humidity sensors under various relative humidity(RH)levels ranging from 30%to 95%RH.(Zr_(0.5)/Sb_(0.5))xTi_(1−x)O_(2) ceramics present a giantε′of~(4.82‒7.39)×10^(4) and a low loss tangent(tanδ≈0.031‒0.106 at 1 kHz),indicating attractive giant dielectric properties.This observation was attributed to both intrinsic and extrinsic effects.For the humidity sensing properties,the best humidity sensing properties were observed in the ceramics with x=0.05,with a sensitivity of~237%pF/%RH,a low hysteresis error(~1.6%),and fast response/recovery time of~12 s/16 s at 1 kHz.The point defects of Sb⋅Ti and V_(O)^(··) were claimed to be active centers for water absorption.Furthermore,impedance spectroscopy(IS)analysis revealed that changes in the dielectric properties with varying RH levels were also influenced by interfacial polarization at the surface layer and grain boundaries. 展开更多
关键词 humidity sensor humidity-sensing properties giant/colossal dielectric permittivity X-ray photoelectron spectroscopy(XPS) pointdefect TiO_(2)
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部