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Self-Assembled Vanadium Oxide Nanoflakes for p-Type Ammonia Sensors at Room Temperature

机译:室温下用于p型氨传感器的自组装氧化钒纳米薄片

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摘要

VO2(B), VO2(M), and V2O5 are the most famous compounds in the vanadium oxide family. Here, their gas-sensing properties were investigated and compared. VO2(B) nanoflakes were first self-assembled via a hydrothermal method, and then VO2(M) and V2O5 nanoflakes were obtained after a heat-phase transformation in nitrogen and air, respectively. Their microstructures were evaluated using X-ray diffraction and scanning and transmission electron microscopies, respectively. Gas sensing measurements indicated that VO2(M) nanoflakes were gas-insensitive, while both VO2(B) and V2O5 nanoflakes were highly selective to ammonia at room temperature. As ammonia sensors, both VO2(B) and V2O5 nanoflakes showed abnormal p-type sensing characteristics, although vanadium oxides are generally considered as n-type semiconductors. Moreover, V2O5 nanoflakes exhibited superior ammonia sensing performance compared to VO2(B) nanoflakes, with one order of magnitude higher sensitivity, a shorter response time of 14–22 s, and a shorter recovery time of 14–20 s. These characteristics showed the excellent potential of V2O5 nanostructures as ammonia sensors.
机译:VO2(B),VO2(M)和V2O5是钒氧化物家族中最著名的化合物。在此,对它们的气敏特性进行了研究和比较。首先通过水热法自组装VO2(B)纳米片,然后在氮气和空气中进行热相转化后分别获得VO2(M)和V2O5纳米片。分别使用X射线衍射,扫描和透射电子显微镜对它们的微观结构进行了评估。气敏测量表明VO2(M)纳米片对气体不敏感,而VO2(B)和V2O5纳米片在室温下对氨具有高度选择性。作为氨传感器,VO2(B)和V2O5纳米薄片均显示出异常的p型感测特性,尽管通常将氧化钒视为n型半导体。此外,与VO 2 (B)纳米片相比,V2O 5 纳米片具有更好的氨感测性能,灵敏度提高了一个数量级,响应时间缩短了14-22 s ,恢复时间较短,为14–20 s。这些特性显示出V 2 O 5 纳米结构作为氨传感器的巨大潜力。

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