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Chiral Molecular Ferroelectrics with Polarized Optical Effect and Electroresistive Switching

机译:具有偏振光效应和电阻式切换的手性分子铁电解

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Multifunctional properties of chiral molecules arise from the coexistence of mirror-symmetry-induced stereoisomers and optical rotation characteristics in one material. One of these complex phenomena in these molecules is chiral ferroelectricity, providing the coupling between polarized light and the spatial asymmetry induced dipole moment. Herein we describe the chiral polarization and electroresistance in molecular ferroelectric (R)-(-)-3-hydroxyquinuclidinium chloride thin films with a Curie temperature of 340 K. The high transmittance of chiral ferroelectrics is coupled with polarized light for a linear electro-optic effect, which exhibits angle-dependent optical behaviors. The polarization-controlled conductance imposes a large on/off ratio (similar to 26.6) of electroresistive switching in molecular ferroelectrics with superior antifatigue endurance.
机译:手性分子的多功能性质来自镜子对称诱导的立体异构体和一种材料中的光学旋转特性的共存。 这些分子中的这些复杂现象中的一种是手性铁电,提供偏振光与空间不对称诱导的偶极矩之间的耦合。 在此,我们描述了具有340k的居里温度的分子铁电(R) - ( - ) - 3-羟基核素核酸薄膜的手性偏振和电渗透性。手性铁电气的高透射率与线性电光的偏振光耦合 效果,其呈现依赖性光学行为。 偏振控制电导征施加大的开/关比(类似于26.6)的分子铁电解中的电气化切换,具有优异的抗抗原耐久性。

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