Unlocking limited electric double-layer capacity via electrochemically-driven continuous partial desolvations in carbon nanopores. [PDF]
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A circular route, involving upcycling of waste surgical masks, affords a Mn‐based layered carbide with porosity, redox activity and low work function. These features enable its effective operation as positive supercapacitor electrode in an aqueous asymmetric supercapacitor delivering 213 Wh L−1 energy density.
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Solid-state shear pan-milling synthesis of high-performance MoS<sub>2</sub>/graphene nanocomposites for supercapacitors. [PDF]
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High performance and low leakage heterojunction 10 nm PZT NC-FinFET for low power application. [PDF]
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Sodium cholate orchestrated synthesis of silver deposited camphorsulphonic acid doped rodlike polypyrrole architecture for asymmetric supercapacitor applications. [PDF]
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Nickel(II) Complexes Derived from Schiff Base Ligands Designed as Electrode Materials in Asymmetric Supercapacitor Coin Cells for Enhanced Energy Storage Performance. [PDF]
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Cationic and Non-Ionic Surfactant-Assisted Morphological Engineering of CoMoO4 for High-Performance Asymmetric Supercapacitors. [PDF]
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A Microfluidic Platform for Whole-Membrane Integrity Profiling in Live Neuronal Cells
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Toward negative capacitance electronics
Innovation and Emerging Technologies, 2022Progress in electronics is limited by power dissipation constraints. Ferroelectric materials with a negative capacitance could help to overcome these limits. Especially, HfO2 and ZrO2 based ferroelectrics are promising for negative capacitance electronics due to their compatibility with modern transistor manufacturing processes.
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