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Hydroxyl-induced structural reconstruction:two new potassium hepta-borates with deep-UV transparency and enhanced birefringence
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作者 Meng Cheng Wenbin Zhang +3 位作者 Wenqi Jin Artem R.Oganov Zhihua Yang Shilie Pan 《Inorganic Chemistry Frontiers》 2026年第3期1006-1012,共7页
As a critical component of polarization devices and optical devices,birefringent crystals are widely used in high-tech fields such as laser communication,laser polarization engineering,and high-precision scientific re... As a critical component of polarization devices and optical devices,birefringent crystals are widely used in high-tech fields such as laser communication,laser polarization engineering,and high-precision scientific research instruments.In this study,two new hydroxyl borates,KB_(7)O_(9)(OH)_(4)and KB_(7)O_(10)(OH)_(2),were synthesized successfully via the hydrothermal method.The two hepta-borates feature different fundamental building units:[B_(7)O_(10)(OH)_(4)]in KB_(7)O_(9)(OH)_(4)and[B_(7)O_(12)(OH)_(2)]in KB_(7)O_(10)(OH)_(2).These units polymerize through oxygen atoms to form a one-dimensional(1D)infinite[B_(7)O_(10)(OH)_(4)]chain and a two-dimensional(2D)[B_(7)O_(12)(OH)_(2)]layer,respectively,demonstrating a hydroxyl-induced structural reconstruction.Notably,the 1D[B_(7)O_(9)(OH)_(4)]_(∞)infinite chain in KB_(7)O_(9)(OH)_(4)represents the first such structure identified in inorganic hydrated hepta-borates,as confirmed by the ICSD database.Performance characterization reveals that both compounds exhibit deep-UV transparency(with cut-off wavelengths shorter than 200 nm)and moderate birefringence values ranging from 0.041 to 0.078 at 546 nm,highlighting their potential as deep-UV birefringent crystal candidates. 展开更多
关键词 hydroxyl borateskb o oh laser communicationlaser polarization engineeringand potassium hepta borates optical devicesbirefringent crystals polarization devices deep UV transparency hydroxyl induced structural reconstruction hydrothermal methodthe
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