Das Tushar Kanti, Jesionek Marcin, Kępińska Mirosława, Nowak Marian, Kotyczka-Morańska Michalina, Zubko Maciej, Młyńczak Jarosław, Kopczyński Krzysztof
Institute of Physics-Center for Science and Education, Silesian University of Technology, Krasińskiego 8, 40-019 Katowice, Poland.
Institute for Chemical Processing of Coal, Zamkowa 1, 41-803 Zabrze, Poland.
Materials (Basel). 2023 Jan 27;16(3):1105. doi: 10.3390/ma16031105.
In the past twenty years, the basic investigation of innovative Non-Linear Optical (NLO) crystals has received significant attention, which has built the crucial heritage for the use of NLO materials. Fundamental research is essential given the scarcity of materials for NLO compounds, especially in the deep ultraviolet (DUV) and middle- and far-infrared (MFIR) regions. In the present work, we synthesized high-quality MFIR SbI·3S NLO crystals having a length in the range of 1-5 mm through rapid facile liquid phase ultrasonic reaction followed by the assistance of instantaneous natural evaporation phenomenon of the solvent at room temperature. X-ray diffraction (XRD) results ratify the hexagonal R3m structure of SbI·3S crystal, and energy-dispersive X-ray spectroscopy (EDX) demonstrates that the elemental composition of SbI·3S crystal is similar to that of its theoretical composition. The direct and indirect forbidden energy gaps of SbI·3S were measured from the optical transmittance spectra and they were shown to be 2.893 eV and 1.986 eV, respectively. The green sparkling signal has been observed from the crystal during the second harmonic generation (SHG) experiment. Therefore, as inorganic adducts are often explored as NLO crystals, this work on the MFIR SbI·3S NLO crystal can bring about additional investigations on this hot topic in the near future.
在过去的二十年里,新型非线性光学(NLO)晶体的基础研究受到了广泛关注,这为NLO材料的应用奠定了关键基础。鉴于NLO化合物材料的稀缺性,特别是在深紫外(DUV)以及中红外和远红外(MFIR)区域,基础研究至关重要。在本工作中,我们通过快速简便的液相超声反应,随后借助室温下溶剂的瞬间自然蒸发现象,合成了长度在1 - 5毫米范围内的高质量MFIR SbI·3S NLO晶体。X射线衍射(XRD)结果证实了SbI·3S晶体的六方R3m结构,能量色散X射线光谱(EDX)表明SbI·3S晶体的元素组成与其理论组成相似。通过光学透过率光谱测量得到SbI·3S的直接和间接禁带能量分别为2.893 eV和1.986 eV。在二次谐波产生(SHG)实验中,从该晶体观察到了绿色闪烁信号。因此,由于无机加合物常被探索用作NLO晶体,这项关于MFIR SbI·3S NLO晶体的工作在不久的将来能够引发对这一热门话题的更多研究。