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Controlling Ambipolar Transport and Voltage Inversion in Solution-Processed Thin-Film Devices through Polymer Blending
When 2D Materials Meet Molecules: Opportunities and Challenges of Hybrid Organic/Inorganic van der Waals Heterostructures
Multiresponsive Nonvolatile Memories Based on Optically Switchable Ferroelectric Organic Field‐Effect Transistors
Flexible non-volatile optical memory thin-film transistor device with over 256 distinct levels based on an organic bicomponent blend
Optically switchable transistors comprising a hybrid photochromic molecule/n-type organic active layer
Self-Suspended Nanomesh Scaffold for Ultrafast Flexible Photodetectors Based on Organic Semiconducting Crystals
Reversible, Fast, and Wide-Range Oxygen Sensor Based on Nanostructured Organometal Halide Perovskite
Supramolecular Self-Assembly in a Sub-micrometer Electrodic Cavity: Fabrication of Heat-Reversible π-Gel Memristor
Dynamic covalent conjugated polymer epitaxy on graphene
A nanomesh scaffold for supramolecular nanowire optoelectronic devices
Fast-Response Photonic Device Based on Organic-Crystal Heterojunctions Assembled into a Vertical-Yet-Open Asymmetric Architecture
Carbon-Passivated Ni Electrodes for Charge Injection in Organic Semiconductors
Exfoliation of Few-Layer Graphene in Volatile Solvents Using Aromatic Perylene Diimide Derivatives as Surfactants
Electrochemical Functionalization of Graphene at the Nanoscale with Self-Assembling Diazonium Salts
Current crowding issues on nanoscale planar organic transistors for spintronic applications
The Role of Morphology in Optically Switchable Transistors Based on a Photochromic Molecule/p‐Type Polymer Semiconductor Blend
Improving the electrical performance of solution processed oligothiophene thin-film transistors via structural similarity blending
Collective molecular switching in hybrid superlattices for light-modulated two-dimensional electronics
Boosting and Balancing Electron and Hole Mobility in Single- and Bilayer WSe2 Devices via Tailored Molecular Functionalization
Engineering Optically Switchable Transistors with Improved Performance by Controlling Interactions of Diarylethenes in Polymer Matrices

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