电子元件与材料
電子元件與材料
전자원건여재료
Electronic Components & Materials
2015年
10期
14-18
,共5页
闫会影%田先清%马凤国%孙杰
閆會影%田先清%馬鳳國%孫傑
염회영%전선청%마봉국%손걸
水溶液法%CuO%纳米线%VOC%灵敏度%气敏传感器
水溶液法%CuO%納米線%VOC%靈敏度%氣敏傳感器
수용액법%CuO%납미선%VOC%령민도%기민전감기
solution method%CuO%nanowire%VOC%sensitivity%gas sensor
通过简单经济的水溶液法并配合后续煅烧制备出了一维CuO纳米线。利用SEM、XRD、XPS等手段对所得纳米线的形貌、组成和晶体结构进行了表征,同时还测试了其在200℃下对常见挥发性有机物(VOC)的气敏响应状况。结果显示,CuO纳米线气敏传感器对(10~1000)×10–6(体积分数,以下同)的乙醇、甲醇、丙酮体现出优良的气敏响应特性,在(10~100)×10–6范围内,灵敏度随气体浓度增加呈线性增长,超过100×10–6后增长趋于平缓;响应时间均在10 s以内;浓度累加实验和多次重复实验显示出材料良好的稳定性和重复性;对所测11种VOC中的乙醇、甲醇、丙酮有一定的选择性;响应恢复基线无明显漂移;在300℃下,CuO纳米线气敏传感器对(10~1000)×10–6
通過簡單經濟的水溶液法併配閤後續煅燒製備齣瞭一維CuO納米線。利用SEM、XRD、XPS等手段對所得納米線的形貌、組成和晶體結構進行瞭錶徵,同時還測試瞭其在200℃下對常見揮髮性有機物(VOC)的氣敏響應狀況。結果顯示,CuO納米線氣敏傳感器對(10~1000)×10–6(體積分數,以下同)的乙醇、甲醇、丙酮體現齣優良的氣敏響應特性,在(10~100)×10–6範圍內,靈敏度隨氣體濃度增加呈線性增長,超過100×10–6後增長趨于平緩;響應時間均在10 s以內;濃度纍加實驗和多次重複實驗顯示齣材料良好的穩定性和重複性;對所測11種VOC中的乙醇、甲醇、丙酮有一定的選擇性;響應恢複基線無明顯漂移;在300℃下,CuO納米線氣敏傳感器對(10~1000)×10–6
통과간단경제적수용액법병배합후속단소제비출료일유CuO납미선。이용SEM、XRD、XPS등수단대소득납미선적형모、조성화정체결구진행료표정,동시환측시료기재200℃하대상견휘발성유궤물(VOC)적기민향응상황。결과현시,CuO납미선기민전감기대(10~1000)×10–6(체적분수,이하동)적을순、갑순、병동체현출우량적기민향응특성,재(10~100)×10–6범위내,령민도수기체농도증가정선성증장,초과100×10–6후증장추우평완;향응시간균재10 s이내;농도루가실험화다차중복실험현시출재료량호적은정성화중복성;대소측11충VOC중적을순、갑순、병동유일정적선택성;향응회복기선무명현표이;재300℃하,CuO납미선기민전감기대(10~1000)×10–6
The CuO nanowires were synthesized by using a facile and low-cost solution method combined with subsequent calcination. The morphology, composite and crystal structure of the products were examined by SEM, XRD and XPS. The volatile organic compounds sensing properties of the CuO nanowires gas sensor were also investigated at 200℃. The results demonstrate that the CuO nanowires gas sensor exhibits excellent sensing performances to (10–1 000)×10–6 volume fraction of ethanol, methanol and acetone. The sensor shows linear response at low concentration range of (10–100)×10–6 and saturates at high concentration range of (100–1 000)×10–6. All the response time is less than 10 s. The additive and repetitive experiments demonstrate good stability and reproducibility of the CuO nanowires sensor. The sensor shows some selectivity to ethanol, methanol and acetone when exposed to eleven detecting VOCs. There is no obvious drift of the baseline indicating the high recovery ability of the CuO nanowires sensor. At 300℃, the CuO nanowires sensor exhibits higher sensing response than that of commercial SnO2sensor to volume fraction of (10–1 000)×10–6 ethanol.