From Centrosymmetric Eu 2 Ga 2 S 5 to Noncentrosymmetric EuMg 6 Ga 6 S 16 via Introduction of Distorted MgS 6 Octahedron: Featuring Wide Bandgap and Nonlinear Optical Activity

Xin‐Long Ni, Wenfeng Zhou, Wenlong Liu, Sheng‐Ping Guo, Wen‐Dong Yao, Qiu-Yang Du
2025-08-21

SCID:  54.1/zdkzenxs
Rare-earth chalcogenides have emerged as promising materials for infrared nonlinear optical (IR NLO) applications owing to their exceptional physicochemical properties. In this work, the introduction of distorted [MgS 6 ] octahedra into the parent Eu 2 Ga 2 S 5 induces a centrosymmetric to noncentrosymmetric structural transformation, leading to the successful synthesis of novel EuMg 6 Ga 6 S 16 (EMGS). Its structure is composed of [EuS 6 ] triangular prisms, [MgS 6 ] octahedra, and [GaS 4 ] tetrahedra, among which the [MgS 6 ] octahedra show the largest distortion degree. EMGS exhibits a phase-matchable second-harmonic generation response, enhanced laser-induced damage threshold, and almost the widest optical band gap among Eu-based IR NLO chalcogenides. Besides, EMGS shows a green emission at 553 nm. Theoretical calculations indicate that the NLO response and band gap of EMGS are mainly contributed by the distorted [MgS 6 ] units. This work enriches the chemical diversity of IR NLO Eu-based chalcogenides and provides an interesting case for designing Eu-based chalcogenides with wide optical band gaps.
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2025-08-21
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Xin‐Long Ni
Wenfeng Zhou
Wenlong Liu
Sheng‐Ping Guo
Wen‐Dong Yao
Qiu-Yang Du
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