Litcius/Paper detail

Ferroelectric Lithography in Single‐Component Organic Enantiomorphic Ferroelectrics

Han‐Yue Zhang, Huan‐Huan Jiang, Yao Zhang, Nan Zhang, Ren‐Gen Xiong

2022Angewandte Chemie International Edition35 citationsDOI

Abstract

Organic ferroelectrics are flexible, lightweight, and bio-friendly, promising for bio-harmonized electronic devices, while their ferroelectric lithography remains relatively unexplored. Here, by introducing homochirality and ZE photoisomerization, we obtained a pair of organic enantiomorphic ferroelectrics, di(benzylamino)-substituted derivatives of muconic acids, the first ferroelectrics in the muconic family. Their ferroelectric and chiral features were confirmed by the polarization-electric field hysteresis loops and circular dichroism spectra, respectively. Piezoresponse force microscopy measurements demonstrate that the desired domain structure can be precisely achieved by applying a local electric field on a predefined pattern in their thin films. Moreover, thermogravimetric analyses reveal that their ferroelectricity can persist up to above 550 K. The precise pattern lithography and excellent thermal stability make them competitive candidates for ferroelectric lithography.

Topics & Concepts

FerroelectricityMaterials scienceLithographyPiezoresponse force microscopyPolarization (electrochemistry)Electric fieldThermal stabilityPhotolithographyThin filmPiezoelectricityOptoelectronicsNanotechnologyChemistryOrganic chemistryDielectricPhysical chemistryComposite materialPhysicsQuantum mechanicsLiquid Crystal Research AdvancementsPolydiacetylene-based materials and applicationsPhotorefractive and Nonlinear Optics
Ferroelectric Lithography in Single‐Component Organic Enantiomorphic Ferroelectrics | Litcius