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Smart eutectic gallium–indium: from properties to applications
Abstract Eutectic gallium–indium (EGaIn), a liquid metal with a melting point close to or
below room temperature, has attracted extensive attention in recent years due to its …
below room temperature, has attracted extensive attention in recent years due to its …
Plasmonic phenomena in molecular junctions: principles and applications
Molecular junctions are building blocks for constructing future nanoelectronic devices that
enable the investigation of a broad range of electronic transport properties within nanoscale …
enable the investigation of a broad range of electronic transport properties within nanoscale …
ABO 3 multiferroic perovskite materials for memristive memory and neuromorphic computing
The unique electron spin, transfer, polarization and magnetoelectric coupling characteristics
of ABO3 multiferroic perovskite materials make them promising candidates for application in …
of ABO3 multiferroic perovskite materials make them promising candidates for application in …
Molecular electronics: creating and bridging molecular junctions and promoting its commercialization
Molecular electronics is driven by the dream of expanding Moore's law to the molecular level
for next‐generation electronics through incorporating individual or ensemble molecules into …
for next‐generation electronics through incorporating individual or ensemble molecules into …
Molecular diodes with rectification ratios exceeding 105 driven by electrostatic interactions
Molecular diodes operating in the tunnelling regime are intrinsically limited to a maximum
rectification ratio R of∼ 103. To enhance this rectification ratio to values comparable to …
rectification ratio R of∼ 103. To enhance this rectification ratio to values comparable to …
Metal‐organic Frameworks in Semiconductor Devices
Metal‐organic frameworks (MOFs) are a specific class of hybrid, crystalline, nano‐porous
materials made of metal‐ion‐based 'nodes' and organic linkers. Most of the studies on MOFs …
materials made of metal‐ion‐based 'nodes' and organic linkers. Most of the studies on MOFs …
Quantum mechanical effects in plasmonic structures with subnanometre gaps
Metallic structures with nanogap features have proven highly effective as building blocks for
plasmonic systems, as they can provide a wide tuning range of operating frequencies and …
plasmonic systems, as they can provide a wide tuning range of operating frequencies and …
[HTML][HTML] How to design plasmonic Ag/SrTiO3 nanocomposites as efficient photocatalyst: Theoretical insight and experimental validation
An integrated theoretical-experimental investigation is performed to understand the
photocatalytic and optical properties of Ag/SrTiO 3 nanocomposite (Ag/STO). Theoretical …
photocatalytic and optical properties of Ag/SrTiO 3 nanocomposite (Ag/STO). Theoretical …
Highly efficient on-chip direct electronic–plasmonic transducers
Photonic elements can carry information with a capacity exceeding 1,000 times that of
electronic components, but, due to the optical diffraction limit, these elements are large and …
electronic components, but, due to the optical diffraction limit, these elements are large and …
High-yield functional molecular electronic devices
An ultimate goal of molecular electronics, which seeks to incorporate molecular components
into electronic circuit units, is to generate functional molecular electronic devices using …
into electronic circuit units, is to generate functional molecular electronic devices using …