同质结
煅烧
材料科学
异质结
纳米技术
静电纺丝
超短脉冲
晶体结构
光电子学
化学工程
催化作用
化学
复合材料
光学
有机化学
聚合物
物理
工程类
激光器
作者
Yiming Zhao,Muhammad Ikram,Jianzhou Wang,Zhi Liu,Lijuan Du,Jiao Zhou,Kan Kan,Weijun Zhang,Li Li,Keying Shi
摘要
Highly selective detection, quick response times (<5 s), and superior response (|Rn – Ra|/Ra = 1.17) to NH3 gas, particularly at room temperature (RT), are still enormous challenges in gas sensor applications. In this paper, a rational design and facile synthesis for a NH3 sensor have been proposed. Massage ball-like WO3@CoWO4 (Co-W) nanofibres (NFs) were prepared by a facile one-step synthesis utilising an electrospinning approach, followed by appropriate calcination. A Co-W NF sensor with a Co-to-W atomic ratio of 3 : 10 (Co-W-3), which consisted of nano-sized WO3 protrusions (10–15 nm) on submicrometre-sized single crystal CoWO4 particles (100–150 nm) exhibited excellent gas-sensing properties at RT due to the single crystal CoWO4–CoWO4 homojunction structure and distinct massage ball-like WO3–CoWO4 heterojunction. The approach developed in this work will be important for the low-cost and large-scale production of a Co-W-3 ultrafast sensing material with highly promising applications in gas sensors.
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