带隙
钻石
四面体
二次谐波产生
非线性光学
激光器
材料科学
高次谐波产生
光电子学
格子(音乐)
结晶学
原子物理学
化学
物理
非线性系统
光学
量子力学
复合材料
声学
作者
Hua Lin,Hong Chen,Yu‐Jun Zheng,Ju‐Song Yu,Xin‐Tao Wu,Li‐Ming Wu
标识
DOI:10.1002/chem.201701679
摘要
Abstract Mid‐infrared (MIR, 2–20 μm) second‐order nonlinear optical (NLO) materials with outstanding performances are of great importance in laser science and technology. However, the enormous challenge to design and synthesize an excellent MIR NLO material lies in achieving simultaneously a strong second harmonic generation (SHG) response [ d ij >0.6 × AgGaS 2 (AGS)] and wide band gap ( E g >3.5 eV). Herein three new MIR NLO materials, AZn 4 Ga 5 S 12 (A=K, Rb, Cs) are reported, which crystallize in the KCd 4 Ga 5 S 12 ‐type structure and adopt a 3D diamond‐like framework (DLF) consisting of MS 4 (M=Zn/Ga) tetrahedra; achieving the desired balance with strong powder SHG response (1.2–1.4 × AGS) and wide band gap ( E g ≈3.65 eV). Moreover, they also show large laser induced damage thresholds (LIDTs, 36 × AGS), a wide range of optical transparency (0.4–25 μm) and ultrahigh thermal stability (up to 1400 K). Upon analyzing the structure‐property relationship of AX II 4 X III 5 Q 12 family, these 3D DLF structures can be used as a highly versatile and tunable platform for designing excellent MIR NLO materials.
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