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声子抑制型分子间粘合剂:基于儿茶酚的宽带有机太赫兹发生器

Phonon-Suppressing Intermolecular Adhesives: Catechol-Based Broadband Organic THz Generators.

作者信息

Yoon Ga-Eun, Seok Jin-Hong, Puc Uros, Shin Bong-Rim, Yoon Woojin, Yun Hoseop, Kim Dongwook, Yu In Cheol, Rotermund Fabian, Jazbinsek Mojca, Kwon O-Pil

机构信息

Department of Molecular Science and Technology, Ajou University, Suwon, 16499, Korea.

Institute of Computational Physics, Zurich University of Applied Sciences (ZHAW), Winterthur, 8401, Switzerland.

出版信息

Adv Sci (Weinh). 2022 Aug;9(24):e2201391. doi: 10.1002/advs.202201391. Epub 2022 Jul 15.

Abstract

Solid-state molecular phonons play a crucial role in the performance of diverse photonic and optoelectronic devices. In this work, new organic terahertz (THz) generators based on a catechol group that acts as a phonon suppressing intermolecular adhesive are developed. The catechol group is widely used in mussel-inspired mechanical adhesive chemistry. Newly designed organic electro-optic crystals consist of catechol-based nonlinear optical 4-(3,4-dihydroxystyryl)-1-methylpyridinium (DHP) cations and 4-(trifluoromethyl)benzenesulfonate anions (TFS), which both have multiple interionic interaction capability. Interestingly, compared to benchmark organic crystals for THz generators, DHP-TFS crystals concomitantly achieve top level values of the lowest void volume and the highest crystal density, resulting in an exceptionally small amplitude of solid-state molecular phonons. Simultaneously achieving small molecular phonon amplitude, large optical nonlinearity and good phase matching at infrared optical pump wavelengths, DHP-TFS crystals are capable of generating broadband THz waves of up to 16 THz with high optical-to-THz conversion efficiency; one order of magnitude higher than commercial inorganic THz generators.

摘要

固态分子声子在各种光子和光电器件的性能中起着至关重要的作用。在这项工作中,基于儿茶酚基团开发了新型有机太赫兹(THz)发生器,该基团作为一种抑制声子的分子间粘合剂。儿茶酚基团广泛应用于受贻贝启发的机械粘合剂化学中。新设计的有机电光晶体由基于儿茶酚的非线性光学4-(3,4-二羟基苯乙烯基)-1-甲基吡啶鎓(DHP)阳离子和4-(三氟甲基)苯磺酸盐阴离子(TFS)组成,它们都具有多种离子间相互作用能力。有趣的是,与用于太赫兹发生器的基准有机晶体相比,DHP-TFS晶体同时实现了最低空隙体积和最高晶体密度的顶级值,从而导致固态分子声子的幅度异常小。DHP-TFS晶体在红外光泵浦波长下同时实现了小分子声子幅度、大光学非线性和良好的相位匹配,能够产生高达16太赫兹的宽带太赫兹波,具有高的光到太赫兹转换效率;比商用无机太赫兹发生器高一个数量级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73fa/9403645/ab0b079b227f/ADVS-9-2201391-g001.jpg

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