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Interface-Dependent Aggregation-Induced Delayed Fluorescence in Bottlebrush Polymer Nanofibers

机译:取决于接口的聚合诱导的牙刷聚合物纳米纤维中的延迟荧光。

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摘要

Bottlebrush copolymers provide a covalent route to multicompartment nanomaterials that remain nanosegregated regardless of environmental conditions. This is particularly advantageous when combining polymers for optoelectronics, where the ability to control the interface between multiple chemically distinct polymers can be key to a device's function. Here we prepare bottlebrush nanofibers from an acridine- and triazine-based donor/acceptor pair, which have been shown to exhibit thermally activated delayed fluorescence (TADF) via through-space charge transfer (TSCT). By controlling the morphology of the donor and acceptor domains within the bottlebrush, random, miktoarm, and block bottlebrush morphologies are obtained. Using these materials, nanofibers may be prepared which (i) strongly exhibit TSCT TADF; (ii) exhibit switchable TSCT TADF based on aggregation of the fibers; or (iii) preserve the properties of the original donor and acceptor components. This work demonstrates that a bottlebrush strategy may be used to either force or prevent interactions between chemically dissimilar optoelectronic polymers in blended thin films. In this way, we establish a convenient method for either maximizing or minimizing donor-acceptor interactions in semiconductor polymer blends, using different arrangements of the same building blocks within a bottlebrush nanofiber.
机译:洗瓶刷共聚物为多隔室的纳米材料提供了共价途径,无论环境条件如何,纳米材料都可以保持纳米隔离。当组合用于光电子学的聚合物时,这特别有利,因为控制多种化学上不同的聚合物之间的界面的能力可能是设备功能的关键。在这里,我们从an啶基和三嗪基供体/受体对制备了洗瓶刷纳米纤维,这些纤维已显示出通过空间电荷转移(TSCT)的热激活延迟荧光(TADF)。通过控制洗瓶刷中供体域和受体域的形态,可以获得随机,Miktoarm和块状洗瓶器形态。使用这些材料,可以制备出以下纳米纤维:(i)强烈表现出TSCT TADF; (ii)显示出基于纤维聚集的可切换TSCT TADF;或(iii)保留原始供体和受体成分的特性。这项工作表明,可以使用刷瓶策略来强制或阻止混合薄膜中化学相异的光电聚合物之间的相互作用。通过这种方式,我们建立了一种方便的方法,可以使用牙刷纳米纤维中相同构件的不同排列来最大化或最小化半导体聚合物共混物中的供体-受体相互作用。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第35期|13970-13976|共7页
  • 作者单位

    Univ British Columbia Dept Chem 2036 Main Mall Vancouver BC V6T 1Z1 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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