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Morphology control of anglesite microcrystals with polyhedron: Synthesis, growth mechanism, and optical properties

机译:多面体对角位微晶的形貌控制:合成,生长机理和光学性质

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The formation of novel structure polyhedron-shaped PbSO_4 single crystal by reaction of UV irradiation and hydrothermal treated method is described. The kinetics of crystallization of PbSO_4 assembly is studied as a function of aging time and reaction time. The possible mechanism is also discussed. The effect on the crystallization of PbSO_4 micro-polyhedron under different conditions is investigated. The optical properties are also studied. The results show that tungstocilicate acid (TSA) acting as catalysts and a new class of inorganic scaffolds for the synthesis of materials in crystal engineering and composites design for different applications is versatile reactor and may be extended to the creation of other highly novel inorganic structures with applications in catalysis, novel optical materials and other fields.
机译:描述了通过紫外线照射和水热处理方法反应形成新颖结构的多面体形PbSO_4单晶。研究了PbSO_4组装体的结晶动力学与时效时间和反应时间的关系。还讨论了可能的机制。研究了在不同条件下对PbSO_4微多面体结晶的影响。还研究了光学性质。结果表明,钨酸高铁酸(TSA)可以作为催化剂,是一类新型的无机支架,可用于晶体工程和复合材料设计中用于不同应用的材料合成,是一种多功能反应器,并且可以扩展到具有以下特征的其他新型无机结构的创建:在催化,新型光学材料等领域的应用。

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