铱和钌配合物的二元和异质结构微板:制备、表征和热响应发射

IF 5.9 4区 化学 Q1 CHEMISTRY, INORGANIC & NUCLEAR
Chun-Yun Ding , Ru-Yuan Zhang , Yu-Wu Zhong , Jiannian Yao
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引用次数: 0

摘要

具有明显发射强度或颜色变化的热响应微晶在传感、信息加密和微电子领域具有巨大潜力。我们在此报告了将蓝色发射铱复合物和红色发射钌复合物二元组装成具有热响应特性的均匀掺杂或光学异质结构微晶的方法。根据组装条件的不同,可获得具有微板形状的横向或纵向三嵌段异质结构,由于能量传递效率降低,这些异质结构在加热时会显示出明显的发射模式变化。此外,还通过分步组装制备了支化异质结构。此外,还进一步研究了均匀掺杂二元晶体的发光偏振和纵向三嵌段异质结构的波导特性。这项工作证明了过渡金属复合物在组装成各种发光纳米/微结构方面的多功能性,在热感应和纳米光子学方面具有潜在的应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Binary and heterostructured microplates of iridium and ruthenium complexes: Preparation, characterization, and thermo-responsive emission

Binary and heterostructured microplates of iridium and ruthenium complexes: Preparation, characterization, and thermo-responsive emission

Thermo-responsive microcrystals exhibiting obvious emission intensity or color changes have great potentials in sensing, information encryption, and microelectronics. We report herein the binary assembly of a blue-emissive iridium complex and a red-emissive ruthenium complex into homogeneously-doped or optically-heterostructured microcrystals with thermo-responsive properties. Depending on the assembly conditions, lateral or longitudinal triblock heterostructures with a microplate shape are obtained, which display distinct emission pattern changes upon heating as a result of the decreased efficiency of energy transfer. In addition, branched heterostructures are prepared by a stepwise assembly. The luminescence polarization of the homogeneously-doped binary crystals and the waveguiding property of the longitudinal triblock heterostructure are further examined. This work evidences the versatility of transition metal complexes in the assembly into various luminescent nano/micro structures with potential applications in thermo-sensing and nanophotonics.

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来源期刊
结构化学
结构化学 化学-晶体学
CiteScore
4.70
自引率
22.70%
发文量
5334
审稿时长
13 days
期刊介绍: Chinese Journal of Structural Chemistry “JIEGOU HUAXUE ”, an academic journal consisting of reviews, articles, communications and notes, provides a forum for the reporting and discussion of current novel research achievements in the fields of structural chemistry, crystallography, spectroscopy, quantum chemistry, pharmaceutical chemistry, biochemistry, material science, etc. Structural Chemistry has been indexed by SCI, CA, and some other prestigious publications.
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