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Theory-Guided Design of Organic Electro-Optic Materials and Devices

机译:有机光电材料和器件的理论指导设计

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Integrated (multi-scale) quantum and statistical mechanical theoretical methods have guided the nano-engineering of controlled intermolecular electrostatic interactions for the dramatic improvement of acentric order and thus electro-optic activity of melt-processable organic polymer and dendrimer electro-optic materials. New measurement techniques have permitted quantitative determination of the molecular order parameters, lattice dimensionality, and nanoscale viscoelasticity properties of these new soft matter materials and have facilitated comparison of theoretically-predicted structures and thermodynamic properties with experimentally-defined structures and properties. New processing protocols have permitted further enhancement of material properties and have facilitated the fabrication of complex device structures. The integration of organic electro-optic materials into silicon photonic, plasmonic, and metamaterial device architectures has led to impressive new performance metrics for a variety of technological applications.
机译:集成的(多尺度)量子和统计力学理论方法已经指导了分子间静电相互作用的纳米工程,以显着改善无心轴序,从而极大地改善了可熔融加工的有机聚合物和树枝状大分子电光材料的电光活性。新的测量技术允许定量确定这些新型软物质材料的分子序参数,晶格尺寸和纳米级粘弹性,并有助于将理论上预测的结构和热力学性质与实验定义的结构和性质进行比较。新的处理协议允许进一步增强材料性能,并促进了复杂器件结构的制造。将有机电光材料集成到硅光子,等离激元和超材料设备架构中,已经为各种技术应用带来了令人印象深刻的新性能指标。

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