Exceptional Second Harmonic Generation in Ultraviolet Nonlinear Optical Oxyfluoroniobate Crystals via Structural Fingerprint Optimization of Polar Chains

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초록

Partial fluorination of oxides has positioned oxyfluorides as a promising class of nonlinear optical (NLO) materials owing to their balanced optical properties. However, effectively arranging optical chromophores to achieve strong optical nonlinearity remains challenging. In this study, we explore the structural chemistry of 1[NbOF4]infinity chain-based oxyfluoroniobates and establish a molecular geometric framework to quantify key structural fingerprint factors, namely, the angle(O & horbar;Nb & horbar;O ') bond angle, chi[F,Nb,Nb ',F '] torsion angle, chain alignment, and distortion of [NbO2F4] nodes. Theoretical calculations confirm that these factors critically influence second harmonic generation (SHG) activity. By integrating pi-conjugated biuret (C2H5N3O2) molecules with optimally aligned 1[NbOF4]infinity chains, we synthesized (H3O)(Biu)2(NbOF4) (Biu = biuret), a crystal exhibiting a record-breaking SHG response, reaching 10.8 times that of KH2PO4, among transition metal (TM) oxyfluorides. Its moderate birefringence (Delta n = 0.062 @1064 nm) and wide band gap (Eg = 4.50 eV) further support its potential as a high-performance ultraviolet (UV) NLO material. These results highlight the power of structural fingerprint optimization in fully activating polar chains and offer a new strategy for designing next-generation UV NLO crystals with enhanced SHG performance.

키워드

OxyfluoroniobateUV NLO crystalShort wavelengthStructural fingerprintELECTRONIC-STRUCTURECATION
제목
Exceptional Second Harmonic Generation in Ultraviolet Nonlinear Optical Oxyfluoroniobate Crystals via Structural Fingerprint Optimization of Polar Chains
저자
Jin, CongcongLi, YangKim, Jin SeongLim, Jong-HoonHuang, HongboChen, Chong-AnLee, JihyunHeo, YejinZhang, BingbingJang, Joon IkOk, Kang Min
DOI
10.1002/anie.202512618
발행일
2025-09
유형
Article
저널명
Angewandte Chemie - International Edition
64
36