Valueva Aleksandra D, Novikov Sergei A, Gabilondo Eric, Tisdale Hunter B, Maksimova Alevtina A, Parker Mikhail, Reukov Vladimir, Klepov Vladislav V
Department of Chemistry, University of Georgia, Athens, Georgia 30602, United States.
Department of Chemistry, University of Houston, Houston, Texas 77204, United States.
ACS Mater Lett. 2025 Jul 7;7(8):2814-2821. doi: 10.1021/acsmaterialslett.5c00784. eCollection 2025 Aug 4.
Hybrid structures have emerged as a promising class of optical materials, due to their ability to couple the robustness of inorganic and the tunability of organic compounds. However, their application in nonlinear optics (NLO) remains limited, largely due to underexplored factors that drive the formation of noncentrosymmetric structures and NLO property characterization. In this work, we explore the formation, structural and temperature polymorphism, and optical properties of the (EtNH)BiBr composition, which crystallizes as either noncentrosymmetric or centrosymmetric polymorph. Structural analysis showed that the alignment of [BiBr] units dictates the symmetry of phases, as well as the nonlinear optical properties, with the triclinic polymorph exhibiting a second harmonic generation (SHG) response both in visible and IR regions (1.29 × KHPO and 0.08 × AgGaS). Thermal analysis reveals polymorphic phase transitions and low melting points, making them melt-processable and ionic liquid candidates.
由于能够结合无机材料的稳健性和有机化合物的可调性,混合结构已成为一类很有前景的光学材料。然而,它们在非线性光学(NLO)中的应用仍然有限,这主要是由于驱动非中心对称结构形成和NLO特性表征的因素尚未得到充分探索。在这项工作中,我们研究了(EtNH)BiBr组合物的形成、结构和温度多晶型性以及光学性质,该组合物结晶为非中心对称或中心对称多晶型物。结构分析表明,[BiBr]单元的排列决定了相的对称性以及非线性光学性质,三斜多晶型物在可见光和红外区域均表现出二次谐波产生(SHG)响应(1.29×KHPO和0.08×AgGaS)。热分析揭示了多晶型相变和低熔点,使其具有可熔融加工性和离子液体候选物的特性。