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Exploring ultra-high optical anisotropy in polyiodides
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作者 mingye han Hongbo Huang +3 位作者 Siyu Li Yan Xiao Bingbing Zhang Ying Wang 《Inorganic Chemistry Frontiers》 2025年第23期7581-7589,共9页
High anisotropy birefringent materials are urgently needed as essential elements for modern optical technology.The integration of organic π-conjugated moieties with inorganic active units produces hybrid materials ex... High anisotropy birefringent materials are urgently needed as essential elements for modern optical technology.The integration of organic π-conjugated moieties with inorganic active units produces hybrid materials exhibiting pronounced optical anisotropy and tunable birefringence characteristics.However,the exploration and development of materials exhibiting large birefringence present ongoing challenges.In this work,three new organic-inorganic hybrid polyiodides,namely,C_(4)H_(6)N_(3)I_(2),(C_(5)H7N2)I·I_(3) and(C_(5)H_(6)NO)_(2)I_(4),have been synthesized by a solution method.It has been established that the structures of all three compounds contain two types of polyiodide anions(I_(3)^(-)and I_(4)^(2-)),which are formed by different Ⅰ-Ⅰ bonds.It is noteworthy that C_(4)H_(6)N_(3)I_(2),(C_(5)H_(7)N_(2))I·I_(3),and(C_(5)H_(6)NO)_(2)I_(4) exhibit significant birefringence at 1064 nm,with calculated values of 1.384,0.829,and 0.891,respectively.Theoretical calculations indicate that the combination of linear polyiodide anions with appropriately arranged π-conjugated groups results in high optical anisotropy.This work demonstrates that polyiodides are promising candidates for the development of superior birefringent materials. 展开更多
关键词 inorganic active units exploration development materials exhibiting large birefringence ultra high optical anisotropy hybrid materials polyiodides organic conjugated moieties optical anisotropy birefringent materials
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