Litcius/Paper detail

Giant Single‐Crystal Shape Transformation with Wide Thermal Hysteresis Actuated by Synergistic Motions of Molecular Cations and Anions

Xiao‐Lei Wang, Jin‐Peng Xue, Xiaopeng Sun, Yan‐Xin Zhao, Shu‐Qi Wu, Zi‐Shuo Yao, Jun Tao

2020Chemistry - A European Journal23 citationsDOI

Abstract

Abstract Manipulating the collective molecular movements to implement macroscopic mechanical response of bulk material is attractive and challenging. Here, an organic‐inorganic hybrid single crystal is synthesized, which exhibits a giant macroscopic shape transformation with a remarkable thermal hysteretic feature. The colossal anisotropic shape change, which manifests as an abrupt elongation of ca. 9 % along the crystallographic c ‐axis and a concomitant contraction of ca. 9 % in a perpendicular direction, is induced by a significant reorientation of imidazolium, accompanied with a substantial configurational variation in CuBr 4 2− complex anions. The synergistic motions of both the molecular cations and anions engender a remarkable large thermal hysteresis (>30 K) in the shape transformation of the single crystal, implying that this material may play a role in alternating memory media. Furthermore, due to the stable crystal lattice, a single crystal that demonstrates naked‐eye detectable large shape transformation was used as a thermal actuator to spontaneously control an electric circuit by temperature variation.

Topics & Concepts

AnisotropyMaterials scienceHysteresisMolecular dynamicsSingle crystalChemical physicsThermalCrystal (programming language)Condensed matter physicsElongationPerpendicularLattice (music)Crystal structureThermal hysteresisShape-memory alloyCrystallographyChemistryComposite materialThermodynamicsGeometryPhysicsOpticsComputational chemistryPhase transitionUltimate tensile strengthMathematicsComputer scienceProgramming languageAcousticsSupramolecular Self-Assembly in MaterialsSupramolecular Chemistry and ComplexesLuminescence and Fluorescent Materials