Zheng-Yu Yang, Ming-Yang Cao, Liang Ma, Bing-Wei Miao, Xingyu Li, Wenfeng Zhou, Ru-Ling Tang
Organic–inorganic hybrid halides have attracted extensive research efforts due to their promising nonlinear optical (NLO) properties, and enhancing the polarizability of these materials can effectively improve their second-harmonic generation (SHG) efficiency. In this work, three isostructural NLO crystals, (C 5 H 5 NS) 2 MCl 2 (M = Zn, Cd, Hg), were successfully synthesized by an equivalent anion substitution strategy. The crystal structure is constructed by tetrahedral [MCl 2 S 2 ] 4– and π-conjugated (C 5 H 5 NS) units. (C 5 H 5 NS) 2 MCl 2 shows strong SHG intensities of 2.78, 3.96, and 4.60 times those of KH 2 PO 4 (KDP) at 1064 nm and 0.31, 0.34, and 0.50 times those of AgGaS 2 (AGS) at 2100 nm for M = Zn, Cd, and Hg, respectively. Theoretical calculations indicate that the SHG responses in these compounds arise from the synergistic contribution of the organic π-conjugated rings and the distorted metal-centered moieties. This work has enriched the material repertoire of NLO crystals constructed via the integration of pyridine-based groups and metal halides.