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Electron-Transporting Polyamides for Organic Photoreceptors

机译:用于有机感光体的电子传输聚酰胺

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Negatively chargeable dual-layer organic photoreceptors (OPC) are typically prepared with an electrical (hole) blocking layer disposed between the conductive support and the charge-generation layer (CGL). The blocking layer provides an energy barrier to the injection of positive charges. In an electrophotographic charge/expose cycle, charge is generated in the CGL, and the OPC is discharged primarily by the transport of positive charge through the charge-transport layer to the negatively charged surface. Simultaneously, electrons in the CGL drift toward the grounded conductive layer. If the intervening blocking layer material is insulating, an undesirable residual charge will be produced. We have prepared hole-blocking layer polymers that transport electrons under an applied electric field. In these materials, naphthalene bisimide (NB) is the transport active moiety. This talk will discuss the synthesis and properties of high molecular weight polyamides with incorporated tetracarbonylbisimides. A desirable characteristic of such a blocking layer is that solvents used in the coating of subsequent layers do not attack it. These electron-transport active polyamides are soluble in mixed solvents, but are insoluble in chlorinated hydrocarbons or other solvents commonly used for coating other OPC layers. Because these blocking layers transport electronically, their function is substantially insensitive to humidity.
机译:带负电的双层有机感光体(OPC)通常是通过在导电性支撑体和电荷产生层(CGL)之间设置电(空穴)阻挡层来制备的。阻挡层为正电荷的注入提供了能量屏障。在电子照相充电/曝光循环中,电荷在CGL中生成,OPC主要通过正电荷通过电荷传输层传输到带负电荷的表面而放电。同时,CGL中的电子向接地的导电层漂移。如果中间阻挡层材料是绝缘的,则会产生不希望的残余电荷。我们准备了在电场作用下传输电子的空穴阻挡层聚合物。在这些材料中,萘双酰亚胺(NB)是运输活性部分。本演讲将讨论掺入四羰基双酰亚胺的高分子量聚酰胺的合成和性能。这种阻挡层的理想特征是在随后的层的涂层中使用的溶剂不会侵蚀它。这些电子传输活性聚酰胺可溶于混合溶剂,但不溶于氯代烃或通常用于涂覆其他OPC层的其他溶剂。因为这些阻挡层是电子传输的,所以它们的功能对湿度基本上不敏感。

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