Siddiqui Shiraz Ahmed, Prado-Roller Alexander, Shiozawa Hidetsugu
Faculty of Physics, University of Vienna Boltzmanngasse 5 1090 Vienna Austria
Department of Inorganic Chemistry, University of Vienna Währinger Straβe 42 1090, Vienna Austria.
Mater Adv. 2021 Nov 22;3(1):224-231. doi: 10.1039/d1ma00866h. eCollection 2022 Jan 4.
Synthesis of crystalline materials is elemental in the field of coordination chemistry towards optical applications. In the present work, coordination between copper and benzene-1,3,5-tricarboxylic acid (BTC) is controlled by adjusting the pH scale of the reaction mixture at room temperature to synthesize two crystalline structures: metal-organic framework HKUST-1 and coordination polymer Cu(BTC)·3HO. The post-synthesis transformation of HKUST-1 into Cu(BTC)·3HO is further demonstrated. Single crystals of both structures are studied by multi-laser Raman and luminescence spectroscopy. It is found that both crystals exhibit photoluminescence in the range of 700-900 cm within the optical gap of the bulk materials, which can be associated with crystallographic defects. This work gives impetus for the synthesis of large metal-organic crystals based on which optical properties can be studied in depth.
在光学应用的配位化学领域,晶体材料的合成至关重要。在本工作中,通过在室温下调节反应混合物的pH值来控制铜与苯 - 1,3,5 - 三羧酸(BTC)之间的配位,以合成两种晶体结构:金属有机框架HKUST - 1和配位聚合物Cu(BTC)·3H₂O。进一步证明了HKUST - 1向Cu(BTC)·3H₂O的合成后转变。通过多激光拉曼光谱和发光光谱对这两种结构的单晶进行了研究。发现两种晶体在体材料的光学带隙内700 - 900 cm⁻¹范围内均表现出光致发光,这可能与晶体缺陷有关。这项工作为合成大型金属有机晶体提供了动力,在此基础上可以深入研究光学性质。