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A bidirectional acid-base charging model for triboelectrification: part 1. Theory

机译:摩擦带电的双向酸碱充电模型:第1部分。理论

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A model for charging of insulative materials has been developed which quantitatively links the surface chemistry of materials to their work functions, and to the triboelectric charge exchange charge in two-component developers. The proposed model fits within the standard high-density of states model for charging, but proposes bidirectional electron transfer from basic sites on one contacting material to acidic sites on the second contacting material, and equally, from the basic sites on the second material to acidic sites on the first The result is an "effective" work function for the material surface, the average of the work functions of the surface acidic and basis sites. This model predicts that both surface work functions and negative toner charge increase linearly with the logarithm of the ratio of the toner acid/base constants, K-a/K-b, which can be experimentally measured by inverse gas chromatography. Charge exchange is zero when the toner and carrier acid-to-base constants are identical. The model implies that an insulator's surface Lewis base and acid functional groups are responsible for triboelectric charge exchange. The model can also be applied to insulator to metal charge exchange. (C) 2006 Society for Imaging Science and Technology.
机译:已经开发出一种用于绝缘材料充电的模型,该模型将材料的表面化学定量地关联到其工作功能,并与两组分显影剂中的摩擦电荷交换电荷相连。拟议的模型适合用于充电的标准高密度状态模型,但提出了从一种接触材料上的碱性位点到第二种接触材料上的酸性位点,以及从第二种材料上的碱性位点到酸性的双向电子转移。首先是位点,结果是材料表面的“有效”功函数,表面酸性位和基位的平均功函数。该模型预测表面功函数和负调色剂电荷均随调色剂酸/碱常数K-a / K-b之比的对数线性增加,这可以通过逆气相色谱法进行实验测量。当墨粉和载体酸碱常数相同时,电荷交换为零。该模型暗示绝缘子的表面路易斯碱和酸官能团负责摩擦电荷交换。该模型还可以应用于绝缘体到金属的电荷交换。 (C)2006年影像科学与技术学会。

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