Ferroelectric Polarization and Second Harmonic Generation in Supramolecular Cocrystals with Two Axes of Charge-Transfer
Author(s) -
Ashwin Narayanan,
Dennis Cao,
Laszlo Frazer,
Alok S. Tayi,
Anthea K. Blackburn,
Andrew C.H. Sue,
J. B. Ketterson,
J. Fraser Stoddart,
Samuel I. Stupp
Publication year - 2017
Publication title -
journal of the american chemical society
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.115
H-Index - 612
eISSN - 1520-5126
pISSN - 0002-7863
DOI - 10.1021/jacs.7b02279
Subject(s) - ferroelectricity , chemistry , supramolecular chemistry , second harmonic generation , molecule , polarization (electrochemistry) , acceptor , crystallography , superstructure , chemical physics , charge (physics) , nanotechnology , optoelectronics , condensed matter physics , materials science , crystal structure , optics , physics , dielectric , organic chemistry , laser , quantum mechanics , thermodynamics
Ferroelectricity in organic materials remains a subject of great interest, given its potential impact as lightweight information storage media. Here we report supramolecular charge-transfer cocrystals formed by electron acceptor and donor molecules that exhibit ferroelectric behavior along two distinct crystallographic axes. The solid-state superstructure of the cocrystals reveals that a 2:1 ratio of acceptor to donor molecules assemble into nearly orthogonal mixed stacks in which the molecules are positioned for charge-transfer in face-to-face and edge-to-face orientations, held together by an extended hydrogen-bonding network. Polarization hysteresis was observed along the face-to-face and edge-to-face axes at room temperature. The noncentrosymmetric nature of the cocrystals, required to observe ferroelectric behavior, is demonstrated using second harmonic generation measurements. This finding suggests the possibility of designing supramolecular arrays in which organic molecules support multidimensional information storage.
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