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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Two-stage evolution from phosphate to sulfate of new KTP-type family members as UV nonlinear optical materials through chemical cosubstitution-oriented design
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Two-stage evolution from phosphate to sulfate of new KTP-type family members as UV nonlinear optical materials through chemical cosubstitution-oriented design

机译:通过化学辅助设计为UV非线性光学材料,从磷酸盐到硫酸盐的两阶段演进

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KTiOPO4 (KTP) is a classic commercial nonlinear optical (NLO) crystal, but its narrow bandgap (3.52 eV) prevents its practical application in the ultraviolet (UV) region. Many trials to widen the narrow bandgap of KTP have failed in the past few decades. A chemical cosubstitution strategy was implemented to design new members of the KTP-type family as potential UV NLO materials. First, a novel centrosymmetric KTP-type compound NH4SbFPO4H2O with a sharply enlarged bandgap (5.01 eV) was obtained through three-site aliovalent substitution. Second, the noncentrosymmetric NH4SbF2SO4 was synthesized by the introduction of more F- anions to destroy the crystal symmetry and SO42- to replace PO43- for balancing the charge in NH4SbFPO4H2O, which realized the transformation from a visible phosphate system to solar blind UV sulfate system for KTP-type family NLO materials. The preliminary experimental results indicated that NH4SbF2SO4 is a promising solar blind UV NLO material. The first-principles calculations revealed that the sharply enlarged bandgap resulted from the substitution of the transition metal cations with the main group metal cations and the introduction of F- anions with high electronegativity.
机译:Ktiopo4(KTP)是经典的商业非线性光学(NLO)晶体,但其窄的带隙(3.52eV)可防止其在紫外(UV)区域中的实际应用。在过去的几十年里,许多争夺ktp的狭窄带隙的试验失败了。实施了化学辅助战略,以设计KTP型家族的新成员作为潜在的UV NLO材料。首先,通过三位除价取代获得具有急剧扩大的带隙(5.01eV)的新型氯化物ktp型化合物NH4SBFPO4H2O。其次,通过引入更多的FIONS来合成非致白的NH4SBF2SO4以破坏晶体对称性和SO42-以替代PO43 - 用于平衡NH4SBFPO4H2O中的电荷,这实现了从可见磷酸盐系统到太阳盲UV硫酸盐系统的转化KTP型系列NLO材料。初步实验结果表明,NH4SBF2SO4是有前景的太阳盲UV NLO材料。第一原理计算表明,由于替代过渡金属阳离子与主要群金属阳离子的替代和具有高电负性的F-阴离子引入的急剧放大的带隙。

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