期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
掺杂对CdSnO_3结构和气敏性能的影响 被引量:4
1
作者 张天舒 范华军 +1 位作者 沈瑜生 汪培芬 《中国科学技术大学学报》 CAS CSCD 北大核心 1994年第1期47-50,共4页
采用硝酸盐溶液浸泡方法在CdSnO3粉料中,分别掺入La、Pb、Ni及Ca四种元素的氧化物.实验结果表明,掺杂改变了材料的主晶相、微结构及物相组成,从而导致材料的电导、气敏特性与纯相的CdSnO3有很大区别,其中掺N... 采用硝酸盐溶液浸泡方法在CdSnO3粉料中,分别掺入La、Pb、Ni及Ca四种元素的氧化物.实验结果表明,掺杂改变了材料的主晶相、微结构及物相组成,从而导致材料的电导、气敏特性与纯相的CdSnO3有很大区别,其中掺Ni2O3、PbO提高粉料对乙醇的选择性,有可能开发成酒敏传感器. 展开更多
关键词 CdSnO3 掺杂 乙醇传感器 气敏性能
在线阅读 下载PDF
镧掺杂对CdO-SnO_2系物相及性能的影响 被引量:3
2
作者 张天舒 沈瑜生 《功能材料》 EI CAS CSCD 1995年第5期409-412,392,共5页
在CdO-SnO_2体系中加入La ̄(3+)可以提高学钛铁矿型β-CdSnO_3的热稳定性。通过对掺镧材料的物相及微结构的研究、认为La ̄(3+)部分固溶到β-CdSnO_3品格中是提高其稳定性的主要原因。并可控制掺... 在CdO-SnO_2体系中加入La ̄(3+)可以提高学钛铁矿型β-CdSnO_3的热稳定性。通过对掺镧材料的物相及微结构的研究、认为La ̄(3+)部分固溶到β-CdSnO_3品格中是提高其稳定性的主要原因。并可控制掺镧方式及热处理温度来合成不同相组成的气敏材料,改善CdO-SnO_2系的气敏性能。 展开更多
关键词 掺杂 相组成 气敏传感器 氧化镉 二氧化锡
在线阅读 下载PDF
研制Cd-Sb-W和Cd-Sn-W系列敏感陶瓷的新方法
3
作者 王梦魁 杨玉强 +1 位作者 刘文磊 刘连利 《微纳电子技术》 CAS 2005年第1期22-24,36,共4页
重点研究了由CdO-SnO_2-WO_3系列(简称Cd-Sn-W)和CdO-Sb_2O_3-WO_3系列(简称Cd-Sb-W)及由它们共同组成的双基体三相(Cd_2Sb_2O_7,CdSnO_3,CdWO_4)结构线性敏感陶瓷的制备方法。给出了上述半导体陶瓷的电子转移式;分析了半导相Cd_2Sb_2O_... 重点研究了由CdO-SnO_2-WO_3系列(简称Cd-Sn-W)和CdO-Sb_2O_3-WO_3系列(简称Cd-Sb-W)及由它们共同组成的双基体三相(Cd_2Sb_2O_7,CdSnO_3,CdWO_4)结构线性敏感陶瓷的制备方法。给出了上述半导体陶瓷的电子转移式;分析了半导相Cd_2Sb_2O_7和CdSnO_3的导电机理和电阻-温度(R-t)曲线呈线性的机理,并对其他相关特性进行了深入的分析和研究。 展开更多
关键词 双基体三相结构 线性 共沉淀 Cd2Sb2O7 CdSnO3
在线阅读 下载PDF
Room-temperature chlorine gas sensor based on CdSnO_(3) synthesized by hydrothermal process 被引量:3
4
作者 Xiaohua ZHAO Zhenzhen LI +2 位作者 Xiangdong LOU Meng LI Ning ZHANG 《Journal of Advanced Ceramics》 SCIE CAS 2013年第1期31-36,共6页
The perovskite-structure CdSnO_(3) was obtained by calcinating CdSnO_(3)·3H_(2)O precursor at 550℃,which was synthesized by hydrothermal process at 170℃for 16 h.The phase and microstructure of the obtained CdSn... The perovskite-structure CdSnO_(3) was obtained by calcinating CdSnO_(3)·3H_(2)O precursor at 550℃,which was synthesized by hydrothermal process at 170℃for 16 h.The phase and microstructure of the obtained CdSnO_(3) powders were characterized by X-ray diffraction(XRD),scanning electron microscopy(SEM)and transmission electron microscopy(TEM).The CdSnO_(3) powders exhibit uniformly cubic structure with side length of about 100 nm.The effects of working temperature and concentration of detected gas on the gas response were studied.The selectivity of chlorine gas against other gases and response-recovery time of the sensor were also investigated.The results reveal that the CdSnO_(3) gas sensor has enhanced sensing properties to 1-10 ppm chlorine gas at room temperature;the value of gas response can reach 1338.9 to 5 ppm chlorine gas.Moreover,the sensor shows good selectivity and quick response behavior(23 s)to chlorine gas,indicating its application in detecting chlorine gas at room temperature in the future. 展开更多
关键词 chlorine gas sensor room temperature CdSnO_(3) hydrothermal process
原文传递
Synthesis of porous flower-like SnO_(2)/CdSnO_(3) microstructures with excellent sensing performances for volatile organic compounds
5
作者 Jie Wan Gang Wang +2 位作者 Haibo Ren Jiarui Huang Sang Woo Joo 《Frontiers of Materials Science》 SCIE CSCD 2024年第1期45-57,共13页
Porous flower-like SnO_(2)/CdSnO_(3) microstructures self-assembled by uniform nanosheets were synthesized using a hydrothermal process followed by calcination,and the sensing performance was measured when a gas senso... Porous flower-like SnO_(2)/CdSnO_(3) microstructures self-assembled by uniform nanosheets were synthesized using a hydrothermal process followed by calcination,and the sensing performance was measured when a gas sensor,based on such microstructures,was exposed to various volatile organic compound(VOC)gases.The response value was found to reach as high as 100.1 when the SnO_(2)/CdSnO_(3) sensor was used to detect 100 ppm formaldehyde gas,much larger than those of other tested VOC gases,indicating the high gas sensitivity possessed by this sensor especially in the detection of formaldehyde gas.Meanwhile,the response/recovery process was fast with the response time and recovery time of only 13 and 21 s,respectively.The excellent gas sensing performance derive from the advantages of SnO_(2)/CdSnO_(3),such as abundant n-n heterojunctions built at the interface,high available specific surface area,abundant porosity,large pore size,and rich reactive oxygen species,as well as joint effects arising from SnO_(2) and CdSnO_(3),suggesting that such porous flower-like SnO_(2)/CdSnO_(3) microstructures composed of nanosheets have a high potential for developing gas sensors. 展开更多
关键词 SnO_(2)/CdSnO_(3) porous flower-like microstructure volatile organic gas sensingproperty gas sensor
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部