Organic Halogen Substitution-Driven Halogen Bonding Induces Polar 3D Supramolecular Framework and Second-Harmonic-Generation Response
作者:Mingchang Wang, Jiajia Li, Yan Chen, Ke‐Zhao Du, Jin Chen · 发表于:Inorganic Chemistry · 年份:2025 · DOI:10.1021/acs.inorgchem.5c03877 · 被引用次数:5 · 研究领域:Crystallography and molecular interactions、Inorganic Fluorides and Related Compounds、Solid-state spectroscopy and crystallography
The development of nonlinear optical (NLO) crystals with strong second-harmonic-generation (SHG) efficiency, large birefringence, and wide bandgaps is crucial for next-generation ultraviolet photonics. Here we report two new organic–inorganic metal halides, HPyXB(OH) 2 CdCl 3 (X = Cl, Br; Py = pyridyl), that demonstrate how halogen substitution on organic ligands can effectively tune crystal symmetry and optical performance. Both compounds feature one-dimensional [CdCl 3 ] ∞ – chains constructed from face-sharing CdCl 6 octahedra. The chlorine-containing HPyClB(OH) 2 CdCl 3 crystallizes in the centrosymmetric space group P 1̅, forming a two-dimensional supramolecular structure with antiparallel π-conjugated cations. It shows a large birefringence of 0.22 at 546 nm and a wide bandgap of 4.08 eV. In contrast, bromine substitution induces C–Br···O halogen bonding and O–H···O hydrogen bonding, which drive HPyBrB(OH) 2 CdCl 3 into a polar three-dimensional supramolecular framework in the noncentrosymmetric space group Pna 2 1 . This symmetry breaking unlocks a phase-matchable SHG efficiency of 1.0× KH 2 PO 4 while retaining a large birefringence (0.16 at 546 nm) and a wide bandgap (3.81 eV). These results highlight halogen substitution as an effective strategy for designing high-performance ultraviolet NLO crystals.