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ANISOTROPIC MATERIALS AND METHODS OF FORMING ANISOTROPIC MATERIALS EXHIBITING HIGH OPTICAL ANISOTROPY

机译:各向异性材料和形成具有高光学各向异性的各向异性材料的方法

摘要

A method for forming a crystalline material having an anisotropic, quasi-one-dimensional crystal structure is disclosed. In various embodiments, the method includes: mixing a plurality of precursor materials together to form a combined precursor material, the plurality of precursor materials including a transition-metal ion or a main group ion and at least one of an alkaline earth ion or an alkali metal ion; and reacting the combined precursor material to obtain the crystalline material, the crystalline material having a formula ABX3, wherein A is the at least one of the alkaline earth ion or the alkali metal ion and B is the transition-metal ion surrounded by six anions (X), and wherein the quasi-one-dimensional anisotropic crystal provides a birefringence of at least 0.03, defined as the absolute difference in the real part of the complex-refractive-index values along different crystal axes, in at least a portion of one or both of the visible-wave spectrum or the infrared spectrum.
机译:公开了一种用于形成具有各向异性准一维晶体结构的晶体材料的方法。在各种实施例中,该方法包括:将多种前体材料混合在一起以形成组合的前体材料,该多种前体材料包括过渡金属离子或主族离子以及碱土金属离子或碱金属中的至少一种。金属离子使合并的前体材料反应,得到具有式ABX3的晶体材料,其中A为碱土金属离子或碱金属离子中的至少一种,B为被六个阴离子包围的过渡金属离子( X),其中准一维各向异性晶体在至少一个晶体的一部分中提供至少0.03的双折射,该双折射定义为沿不同晶体轴的复折射率值的实部的绝对差。或可见光谱或红外光谱两者。

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