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Tunable Photoluminescent and Photothermal Properties of Organic Cocrystals Containing Hydrogen-Bonded Interlocked Planar Molecules

  • Xinmeng Chen
  • , Ling Zhu
  • , Shan He
  • , Bin Liu
  • , Qiang Lv
  • , Xuedong Wang
  • , Lin Xu
  • , Yu Wang
  • , Ryan T.K. Kwok
  • , Jacky W.Y. Lam*
  • , Lianrui Hu*
  • , Wenping Hu
  • , Ben Zhong Tang*
  • *此作品的通讯作者
  • Hong Kong University of Science and Technology
  • East China Normal University
  • Sun Yat-Sen University
  • Soochow University
  • Tianjin University
  • The Chinese University of Hong Kong, Shenzhen

科研成果: 期刊稿件文章同行评审

摘要

Expanding the structural diversity of precursor molecules can inject greater vitality into the development of cocrystal engineering. Here, two hydrogen-bond interlocked planar molecules, HNAO and HPAO is reported, which coassemble with 1,2,4,5-tetracyanobenzene (TCB) into charge-transfer (CT) cocrystals NTC and PTC. The resulting NTC inherits two-photon adsorption properties from HNAO, with the bathochromic shift enhanced by synergistic ESIPT and CT interactions, ultimately achieving near-infrared emission. Remarkably, the intramolecular hydrogen bonds lock the molecule into a planar and ordered conformation, enabling regular face-to-face packing in NTC organic microwires and yielding the lowest optical-loss coefficient (0.021 dB/µm) of organic cocrystal to date, thereby demonstrating great potential for applications in optical computing systems. In contrast, the extremely low energy gap between the HOMO of HPAO and the LUMO of TCB in PTC drives a dramatically higher degree of CT in its excited states, predominantly facilitating non-radiative transitions and resulting in non-emissive behavior. Nevertheless, this trade-off enables efficient NIR-I photothermal conversion (η = 47.7%) and excellent photostability, making PTC highly effective for rapid photothermal imaging and breakthrough time-dependent information encryption applications. This work enriches the library of cocrystals and provides a novel strategy for tailoring the properties of cocrystal materials.

源语言英语
文章编号e15054
期刊Advanced Science
12
48
DOI
出版状态已出版 - 29 12月 2025

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