Yan Guo,Wen‐Fa Chen,Mingxin Li,Fan Wu,Qiu‐Pei Qin,Bin‐Wen Liu,Xiao‐Ming Jiang,Guo‐Cong Guo
出处
期刊:Chemistry of Materials [American Chemical Society] 日期:2024-04-24卷期号:36 (9): 4838-4848被引量:2
标识
DOI:10.1021/acs.chemmater.4c00723
摘要
To address the challenge of nonphase matching in many infrared (IR) nonlinear optical (NLO) materials, despite having substantial NLO coefficients, we present a new strategy for realizing phase matching (PM) in IR NLO materials by manipulating the fractal dimension (FD) of covalent motifs. As a representative demonstration, we select a salt-inclusion chalcogenide system and validate its efficacy. Consequently, we successfully synthesized two new chalcogenides, denoted as K2[K4Cl][Ga5Sn7S24] (1) and [Na4I][Ga9S15] (2). The latter exhibits PM, while the former does not, primarily attributed to their markedly different FD values of the electron localization function map, resulting in distinct optical anisotropy. Compounds 1 and 2 demonstrate enhanced IR NLO efficiency, measuring 0.25 and 0.70 times that of AgGaS2 at 1910 nm, respectively. Notably, compound 2 features a wide band gap of 3.10 eV and a substantial-high laser-induced damage threshold (LIDT) of 93.15 MW cm–2@1064 nm (9.6 × AgGaS2). This work illuminates the exploration of new PM IR NLO materials derived from nonphase matching counterparts.