化学
带隙
四方晶系
光致发光
Crystal(编程语言)
波长
透射率
声子
光电子学
二次谐波产生
密度泛函理论
非线性光学
光学
热的
分子物理学
折射率
非线性系统
直接和间接带隙
非线性光学
对称(几何)
单晶
态密度
光子晶体
电子能带结构
红外线的
凝聚态物理
晶体结构
热稳定性
作者
Jing Peng,Chi Wang,Kexin Huang,Jinsong Wei,Guohong Tang,Bin Chen,Zhiyu He,Wei Huang
标识
DOI:10.1021/acs.inorgchem.6c00666
摘要
LixAg1-xGaS2, a novel quaternary solid-solution nonlinear optical (NLO) crystal, has emerged as a promising material for mid-IR applications. The crystal exhibits a significantly enhanced nonlinear optical coefficient and a more optimally tuned bandgap compared to AgGaS2. In this work, single crystals of LixAg1-xGaS2 (x = 0, 0.2, 0.4, 0.5, 0.6, 0.8, and 1) with dimensions of Φ25 mm × 25-50 mm were first grown by a modified Bridgman method. It is found that LixAg1-xGaS2 crystals (x = 0-0.6) maintain the same tetragonal symmetry as AgGaS2, while Li0.8Ag0.2GaS2 and LiGaS2 exhibit orthogonal symmetry. Due to the low transparency of as-grown crystals, we conducted a systematic thermal treatment experiment resulting in significant improvement in the transmittance and bandgap of LixAg1-xGaS2 crystal wafers. The photoluminescence spectrum of AgGaS2 is characterized by a wide "green emission" centered at about 500 nm (2.50 eV) due to donor-acceptor pair recombination, and this emission wavelength decreases after Li+ replacement. Density functional theory calculations were performed to simulate the phonon spectrum and density of states, facilitating the study of phonon vibrational modes in the lattice. Finally, the second harmonic generation (SHG) response of Li0.5Ag0.5GaS2 was measured to be approximately 2.5 times that of AgGaS2, confirming its promising nonlinear optical properties.
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