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Halide perovskites: a new era of solution‐processed electronics
Organic–inorganic mixed halide perovskites have emerged as an excellent class of
materials with a unique combination of optoelectronic properties, suitable for a plethora of …
materials with a unique combination of optoelectronic properties, suitable for a plethora of …
Recent progress of organic–inorganic hybrid perovskites in RRAM, artificial synapse, and logic operation
Organic–inorganic hybrid perovskites (OHPs) with a rich reservoir of distinct physical
attributes have been considered as promising resistive switching materials for next …
attributes have been considered as promising resistive switching materials for next …
Electrode engineering in halide perovskite electronics: plenty of room at the interfaces
Contact engineering is a prerequisite for achieving desirable functionality and performance
of semiconductor electronics, which is particularly critical for organic–inorganic hybrid halide …
of semiconductor electronics, which is particularly critical for organic–inorganic hybrid halide …
Carbon-based electrodes for perovskite solar cells
The cost-effective processability and high stability of carbon-based perovskite solar cells (C-
PSCs) have shown great potential to positively devote to the development of large-scale …
PSCs) have shown great potential to positively devote to the development of large-scale …
A review of the synthesis, fabrication, and recent advances in mixed dimensional heterostructures for optoelectronic devices applications
Low dimensional materials are promising candidates for the construction of electronic and
optoelectronic devices owing to their novel electronic structure and exciting physiochemical …
optoelectronic devices owing to their novel electronic structure and exciting physiochemical …
Synthesis of wafer‐scale graphene with chemical vapor deposition for electronic device applications
The first isolation of graphene opens the avenue for new platforms for physics, electronic
engineering, and materials sciences. Among several kinds of synthesis approaches …
engineering, and materials sciences. Among several kinds of synthesis approaches …
Enhancing resistive switching performance and ambient stability of hybrid perovskite single crystals via embedding colloidal quantum dots
Hybrid organic‐inorganic halide perovskites are actively pursued for optoelectronic
technologies, but the poor stability is the Achilles' heel of these materials that hinders their …
technologies, but the poor stability is the Achilles' heel of these materials that hinders their …
Low-energy room-temperature optical switching in mixed-dimensionality nanoscale perovskite heterojunctions
Long-lived photon-stimulated conductance changes in solid-state materials can enable
optical memory and brain-inspired neuromorphic information processing. It remains …
optical memory and brain-inspired neuromorphic information processing. It remains …
Highly sensitive self-powered UV-visible photodetector based on ZrO2-RGO nanofibers/n-Si heterojunction
Nanoscale microstructures such as nanofibers (NFs) have the potential to be widely used in
optoelectronics as they minimize the interfacial effects. A low-cost and easily prepared the …
optoelectronics as they minimize the interfacial effects. A low-cost and easily prepared the …
Performance and stability improvements in metal halide perovskite with intralayer incorporation of organic additives
Metal halide perovskites are emerging semiconducting materials with a wide range of
applications, including photovoltaics, thin-film transistors, and light-emitting diodes. A key …
applications, including photovoltaics, thin-film transistors, and light-emitting diodes. A key …