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Cocrystal engineering: a collaborative strategy toward functional materials
Cocrystal engineering with a noncovalent assembly feature by simple constituent units has
inspired great interest and has emerged as an efficient and versatile route to construct …
inspired great interest and has emerged as an efficient and versatile route to construct …
2D organic materials for optoelectronic applications
The remarkable merits of 2D materials with atomically thin structures and optoelectronic
attributes have inspired great interest in integrating 2D materials into electronics and …
attributes have inspired great interest in integrating 2D materials into electronics and …
Creating organic functional materials beyond chemical bond synthesis by organic cocrystal engineering
L Sun, W Zhu, X Zhang, L Li, H Dong… - Journal of the American …, 2021 - ACS Publications
Organic cocrystal engineering refers to two or more organic molecules stoichiometrically
combined and held together by noncovalent intermolecular interactions, which differs from …
combined and held together by noncovalent intermolecular interactions, which differs from …
Integrating Full‐Color 2D Optical Waveguide and Heterojunction Engineering in Halide Microsheets for Multichannel Photonic Logical Gates
Ensuring information security has emerged as a paramount concern in contemporary human
society. Substantial advancements in this regard can be achieved by leveraging photonic …
society. Substantial advancements in this regard can be achieved by leveraging photonic …
Organic cocrystals: beyond electrical conductivities and field‐effect transistors (FETs)
Organic cocrystals based on noncovalent intermolecular interactions (weak interactions)
have aroused interest owing to their unpredicted and versatile chemicophysical properties …
have aroused interest owing to their unpredicted and versatile chemicophysical properties …
Charge‐Transfer Complexes: Fundamentals and Advances in Catalysis, Sensing, and Optoelectronic Applications
Supramolecular assemblies, formed through electronic charge transfer between two or more
entities, represent a rich class of compounds dubbed as charge‐transfer complexes (CTCs) …
entities, represent a rich class of compounds dubbed as charge‐transfer complexes (CTCs) …
Facile synthesis of 1D organic–inorganic perovskite micro-belts with high water stability for sensing and photonic applications
The development of low-dimensional perovskite micro/nanostructures with high water
stability for novel photonic/electronic applications is highly desirable. Herein, one …
stability for novel photonic/electronic applications is highly desirable. Herein, one …
Manipulating light‐induced dynamic macro‐movement and static photonic properties within 1D isostructural hydrogen‐bonded molecular cocrystals
Smart molecular crystals with light‐driven mechanical responses have received interest
owing to their potential uses in molecular machines, artificial muscles, and biomimetics …
owing to their potential uses in molecular machines, artificial muscles, and biomimetics …
The emergence of organic single‐crystal electronics
Organic semiconducting single crystals are perfect for both fundamental and application‐
oriented research due to the advantages of free grain boundaries, few defects, and minimal …
oriented research due to the advantages of free grain boundaries, few defects, and minimal …
Piezochromic luminescence of donor–acceptor cocrystals: distinct responses to anisotropic grinding and isotropic compression
Piezochromic luminescent materials that exhibit distinct luminescence responses to different
types of mechanical stresses have been emerging as new kinds of materials which are …
types of mechanical stresses have been emerging as new kinds of materials which are …