首页> 外文会议>Symposia on Thin Films for Optical Waveguide Devices and Materials for Optical Limiting held November 30-December 3, 1999, Boston, Massachusetts, U.S.A. >Excited state absorption in dendrimers incorporating diphenylaminodiphenylpolyene moieties via photo-induced electron transfer
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Excited state absorption in dendrimers incorporating diphenylaminodiphenylpolyene moieties via photo-induced electron transfer

机译:通过光致电子转移结合二苯基氨基二苯基多烯部分的树枝状聚合物的激发态吸收

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摘要

During the past decade there has been considerable progress in the design of new orgnaic materials for optical power limiting (OPL) applications. Among the more promising of the new material approaches are reverse saturable absorbers (RSAs) which derive their optical limiting capability from the photogeneration of highly absorbing transient excited states. Most of the previous research in this field has focused on excited state absorption from singlet or triplet states whose cross-sections are greater than the original S_0-S_1 transition. However, other transient states, such as polaronic radical ions or bipolaronic diions, formed by photo-induced electron transfer, are attractive alternatives. We have initiated studies to determine if these transient charge states can be photo-generated efficiently, and if their excited states absorption and lifetimes are acceptable for current optical power limiting requirements.
机译:在过去的十年中,用于光功率限制(OPL)应用的新型有机材料的设计取得了长足的进步。新材料方法中最有前途的是可逆饱和吸收剂(RSAs),它是通过高吸收瞬态激发态的光生而获得其光学限制能力的。该领域中的大多数先前研究都集中于从单重态或三重态的激发态吸收,其截面大于原始的S_0-S_1跃迁。然而,通过光诱导的电子转移形成的其他瞬态,例如极化子自由基离子或双极化子离子,是有吸引力的选择。我们已经开始研究以确定这些瞬态电荷状态是否可以有效地光生,以及它们的激发态吸收率和寿命对于当前的光功率限制要求是否可以接受。

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