首页> 外文会议>International Conference on Digital Printing Technologies and Digital Fabrication 2007(NIP 23); 20070916-21; Anchorage,AK(US) >Diphenoquinone Derivatives and Their Applications as Charge Transport Material in Single-layered Organic Photoreceptor
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Diphenoquinone Derivatives and Their Applications as Charge Transport Material in Single-layered Organic Photoreceptor

机译:联苯醌衍生物及其在单层有机感光体中作为电荷传输材料的应用

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A series of diphenoquinone derivatives were synthesized and their molecular structures were confirmed with IR, NMR and EA. The diphenoquinone molecules were characterized by asymmetrical structures and found highly soluble in common organic solvents and polymers. They could be dissolved in polyesters, like PC (polycarbonate), Vylon200 (a polyester) and etc., at high concentrations above 40 wt%. The diphenoquinone derivatives were used as electron transport material (ETM) and incorporated together with a hole-transport material (HTM) and a charge generation material (CGM) into either PC or Vylon 200 to form a single-layered organic photoreceptor. Xerographic performances of the single-layered multi-components photoreceptor were systematically investigated. For the ETM, HTM and CGM doped single-layered photoreceptors, their photo sensitivity was strongly dependent on ETM concentration. Half decay exposure dropped down sharply with increasing ETM concentration and reached minimum when ETM"s concentration was 10 wt% and then slightly increased at even higher ETM concentrations. When exposed at 780 nm, the lowest half decay exposures of positive- and negative-charging were 2.2μJ/cm~2 and2.8μJ/cm`2, respectively. For the HTM or ETM and CGM doped single-layered photoreceptor, charge generation was localized in the surface of photoreceptor and the bulk of photoreceptor acted only as the space for charge transport when CGM's concentration was 15wt% or higher. This kind of single-layered photoreceptor had separated charge generation and transport functions and worked very much like a dual layered photoreceptor. Half decay exposure was found a decreasing function of CTM's concentration. The lowest half decay exposure under optimized conditions was 9.6μJ/cm~2 and 0.59μJ/cm~2 by using ETM's and HTM's at 780nm wavelength with excellent xerographic performances.
机译:合成了一系列联苯醌衍生物,并通过IR,NMR和EA证实了其分子结构。二苯醌分子的特征是不对称结构,发现它们可溶于常见的有机溶剂和聚合物中。它们可以以高于40 wt%的高浓度溶于聚酯,例如PC(聚碳酸酯),Vylon200(聚酯)等。将二苯醌衍生物用作电子传输材料(ETM),并与空穴传输材料(HTM)和电荷产生材料(CGM)一起掺入PC或Vylon 200中以形成单层有机感光体。系统研究了单层多组分感光体的静电复印性能。对于ETM,HTM和CGM掺杂的单层感光体,它们的光敏度强烈依赖于ETM浓度。随着ETM浓度的增加,半衰期曝光急剧下降,当ETM的浓度为10 wt%时,半衰期暴露降至最低,而在更高的ETM浓度下,半衰期暴露则略有增加。当在780 nm曝光时,正负电荷的最低半衰期暴露分别为2.2μJ/ cm〜2和2.8μJ/ cm`2,对于HTM或ETM和CGM掺杂的单层感光体,电荷产生局限于感光体表面,而大部分感光体仅充当了空间。当CGM浓度为15wt%或更高时,电荷传输;这种单层感光体具有分开的电荷产生和传输功能,并且非常类似于双层感光体;半衰期暴露是CTM浓度的下降函数,最低的一半通过使用ETM和HTM在780nm波长下具有最佳的静电复印性能,在最佳条件下的衰减曝光分别为9.6μJ/ cm〜2和0.59μJ/ cm〜2。

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