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Characterization and Gas Sensitivity of Polyaniline/Coral-Like SnO2 Hybrid Material Prepared by In Situ Polymerization

机译:原位聚合制备的聚苯胺/类似珊瑚的SnO2杂化材料的表征和气敏性

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摘要

A PANI/coral-like mesoporous SnO2 hybrid material was fabricated using in situ polymerization method at 0 similar to 5 degrees C. The coral-like mesoporous SnO2 was synthesized by controlling the hydrolysis of SnCl4 and subsequent removal of the templates by calcination in air. The obtained PANI/coral-like mesoporous SnO2 hybrid material was characterized by FT-IA, XRD, TEM and SEM. The XRD pattern suggested that PANI did not modify the crystal structure of SnO2, but SnO2 affect the crystallization of PANI to some extents. The SEM and TEM pattern suggested that coral-like mesoporous SnO2 was enwrapped by PANI. The gas-sensing property of PANI/coral-like SnO2 hybrid material was also studied to NH3, trimethylamine (TMA), and SO2 at room temperature. It was found that the sensor based on PANI/coral-like SnO2 hybrid material had higher response and faster response/recovery to NH3, TMA and SO2 than that based on PANI. The sensing mechanism of the hybrid material was also investigated.
机译:使用原位聚合法,在0类似于5摄氏度,于0的条件下制备了PANI /珊瑚状介孔SnO2杂化材料。通过控制SnCl4的水解并随后通过在空气中煅烧除去模板,合成了珊瑚状介孔SnO2。通过FT-IA,XRD,TEM和SEM对所得的PANI /类珊瑚状介孔SnO2杂化材料进行了表征。 XRD图谱表明PANI没有改变SnO2的晶体结构,但是SnO2在一定程度上影响了PANI的结晶。 SEM和TEM图表明PANI包裹了珊瑚状的中孔SnO2。在室温下,还研究了PANI /类珊瑚SnO2杂化材料对NH3,三甲胺(TMA)和SO2的气敏特性。发现基于PANI /类珊瑚SnO2杂化材料的传感器比基于PANI的传感器具有更高的响应速度和对NH3,TMA和SO2的响应/回收速度。还研究了杂化材料的传感机理。

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