International audienceThe aim of molecular electronics is to miniaturize active electronic devices and ultimately construct single-molecule nanocircuits using molecules with diverse structures featuring various functions, which is extremely challenging. Here, we realize a gate-controlled rectifying function (the on/off ratio reaches ∼60) and a high-performance field effect (maximum on/off ratio >100) simultaneously in an initially symmetric single-molecule photoswitch comprising a dinuclear ruthenium-diarylethene (Ru-DAE) complex sandwiched covalently between graphene electrodes. Both experimental and theoretical results consistently demonstrate that the initially degenerated frontier molecular orbitals localized at each Ru fragment in t...
A reliable and reproducible solid-state molecular electronic device that shows bidirectional conduct...
A great challenge to present-day applied science is to develop electronic devices at the nanometer s...
Molecular switches enable the fabrication of multifunctional devices in which an electrical output c...
International audienceThe aim of molecular electronics is to miniaturize active electronic devices a...
International audienceAs conventional silicon-based transistors are fast approaching the physical li...
A major goal of molecular electronics is the development and implementation of devices such as singl...
Individual molecules have been demonstrated to exhibit promising applications as functional componen...
In recent years, a wide range of single-molecule devices has been realized, enabled by technological...
Photo-modulable molecular transport junctions are developed via on-wire lithography-fabricated nanog...
Reversible conductance photoswitching behaviors of single diarylethene molecule have garnered increa...
International audiencePhoto-modulable molecular transport junctions are developed via on-wire lithog...
A molecular switch: The conductance of a new molecular device based on graphene-molecule junctions w...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
The use of individual molecules as functional components in electronic circuits offers the great opp...
Stable single-molecule switches with high on–off ratios are an essential component for future molecu...
A reliable and reproducible solid-state molecular electronic device that shows bidirectional conduct...
A great challenge to present-day applied science is to develop electronic devices at the nanometer s...
Molecular switches enable the fabrication of multifunctional devices in which an electrical output c...
International audienceThe aim of molecular electronics is to miniaturize active electronic devices a...
International audienceAs conventional silicon-based transistors are fast approaching the physical li...
A major goal of molecular electronics is the development and implementation of devices such as singl...
Individual molecules have been demonstrated to exhibit promising applications as functional componen...
In recent years, a wide range of single-molecule devices has been realized, enabled by technological...
Photo-modulable molecular transport junctions are developed via on-wire lithography-fabricated nanog...
Reversible conductance photoswitching behaviors of single diarylethene molecule have garnered increa...
International audiencePhoto-modulable molecular transport junctions are developed via on-wire lithog...
A molecular switch: The conductance of a new molecular device based on graphene-molecule junctions w...
In the pursuit of down-sizing electronic components, the ultimate limit is the use of single molecul...
The use of individual molecules as functional components in electronic circuits offers the great opp...
Stable single-molecule switches with high on–off ratios are an essential component for future molecu...
A reliable and reproducible solid-state molecular electronic device that shows bidirectional conduct...
A great challenge to present-day applied science is to develop electronic devices at the nanometer s...
Molecular switches enable the fabrication of multifunctional devices in which an electrical output c...