电子元件与材料
電子元件與材料
전자원건여재료
ELECTRONIC COMPONENTS & MATERIALS
2009年
11期
20-22
,共3页
李莉%盖翠萍%杨雪凤%邵丽英%王宝辉
李莉%蓋翠萍%楊雪鳳%邵麗英%王寶輝
리리%개취평%양설봉%소려영%왕보휘
sol-gel法%复合钒钛酸干凝胶%薄膜%湿敏特性
sol-gel法%複閤釩鈦痠榦凝膠%薄膜%濕敏特性
sol-gel법%복합범태산간응효%박막%습민특성
sol-gel method%poly-vanadium-titanium acid xerogel%thin films%humidity sensitive properties
采用sol-gel法制备了复合钒钛酸干凝胶(H_2V_(10)Ti_2O_(30-y)·nH_2O)薄膜,并对其湿敏特性进行了研究.结果表明:该薄膜为层状结构.用此薄膜制备的湿敏元件,在RH为11%~95%的范围内,感湿特性曲线线性好,其响应、恢复时间分别为5 s和20 s,湿滞为RH 2%,感湿温度系数为RH 0.45%/℃,并具有良好的稳定性.H_2V_(10)Ti_2O_(30-y)·nH_2O干凝胶薄膜湿敏元件的灵敏度和湿滞均优于复合钒酸(H_2V_(12)O_(31-y)·nH_2O)干凝胶薄膜湿敏元件.
採用sol-gel法製備瞭複閤釩鈦痠榦凝膠(H_2V_(10)Ti_2O_(30-y)·nH_2O)薄膜,併對其濕敏特性進行瞭研究.結果錶明:該薄膜為層狀結構.用此薄膜製備的濕敏元件,在RH為11%~95%的範圍內,感濕特性麯線線性好,其響應、恢複時間分彆為5 s和20 s,濕滯為RH 2%,感濕溫度繫數為RH 0.45%/℃,併具有良好的穩定性.H_2V_(10)Ti_2O_(30-y)·nH_2O榦凝膠薄膜濕敏元件的靈敏度和濕滯均優于複閤釩痠(H_2V_(12)O_(31-y)·nH_2O)榦凝膠薄膜濕敏元件.
채용sol-gel법제비료복합범태산간응효(H_2V_(10)Ti_2O_(30-y)·nH_2O)박막,병대기습민특성진행료연구.결과표명:해박막위층상결구.용차박막제비적습민원건,재RH위11%~95%적범위내,감습특성곡선선성호,기향응、회복시간분별위5 s화20 s,습체위RH 2%,감습온도계수위RH 0.45%/℃,병구유량호적은정성.H_2V_(10)Ti_2O_(30-y)·nH_2O간응효박막습민원건적령민도화습체균우우복합범산(H_2V_(12)O_(31-y)·nH_2O)간응효박막습민원건.
Poly-vanadium-titanium acid xerogel(H_2V_(10)Ti_2O_(30-y)·nH_2O)thin films were fabricated by sol-gel method and their humidity sensitive properties were studied. The results show that the thin films have a layered structure. The humidity sensitive property curve of the humidity sensor prepared by this thin films is good linearity in the range of RH 11%~95%. Its response time and recovery time of the humidity sensor are 5 s and 20 s, respectively. The humidity hysteresis is RH 2% and the temperature coefficient of the humidity is RH 0.45% /℃ for the humidity sensor. The humidity sensor appear good long term stability. The sensitivity and humidity hysteresis of the humidity sensor are superior than those of poly-vanadium acid xerogel thin film humidity sensors.