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Effects of temperature and vapor pressure on the gas sensing behavior of carbon black filled polyurethane composites

机译:温度和蒸气压对炭黑填充聚氨酯复合材料气体传感行为的影响

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摘要

The authors of the present work developed conductive composite materials comprised of carbon black and waterborne polyurethane by latex blending. Unlike conventional polymer composites that only respond to certain specific group of solvent vapors, the present composites exhibit electrical resistance responses to a series of vapors of polar and non-polar solvents as a result of the block molecular structure of polyurethane. Under a given vapor pressure, the response rate increases with increasing temperature, but the maximum magnitude of response of the composites decreases because of the effect of vapor desorption. In the case of a constant temperature, the maximum responsivity of the composites increases with a rise in vapor pressure and the relationship follows linear regression within the p/p° range of 10~(-4) to 2 x 10~(-2). Besides, the slopes of the linear dependences vary when the vapor species is changed, suggesting the possibility of quantifying and distinguishing vapors.
机译:本工作的作者通过乳胶混合开发了由炭黑和水性聚氨酯组成的导电复合材料。与仅对溶剂蒸气的某些特定组响应的常规聚合物复合材料不同,由于聚氨酯的嵌段分子结构,本发明的复合材料对一系列极性和非极性溶剂的蒸气表现出电阻响应。在给定的蒸气压下,响应速率随温度的升高而增加,但复合材料的最大响应幅度由于蒸气解吸的影响而降低。在恒定温度下,复合材料的最大响应度随蒸气压的增加而增加,并且在p / p°范围10〜(-4)至2 x 10〜(-2)范围内呈线性回归关系。 。此外,当蒸汽种类改变时,线性相关性的斜率也变化,这暗示了量化和区分蒸汽的可能性。

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