Self-assembled Molecular Monolayers with Ultra-low Thermal Conductance for Energy Harvesting (QSAMs)
Lead Research Organisation:
Durham University
Department Name: Chemistry
Abstract
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Organisations
People |
ORCID iD |
Martin Bryce (Principal Investigator) |
Publications
Bryce M
(2021)
A review of functional linear carbon chains (oligoynes, polyynes, cumulenes) and their applications as molecular wires in molecular electronics and optoelectronics
in Journal of Materials Chemistry C
Dekkiche H
(2020)
Electronic conductance and thermopower of single-molecule junctions of oligo(phenyleneethynylene) derivatives
in Nanoscale
O'Driscoll LJ
(2023)
Planar aromatic anchors control the electrical conductance of gold|molecule|graphene junctions.
in Nanoscale advances
O'Driscoll LJ
(2020)
Carbazole-Based Tetrapodal Anchor Groups for Gold Surfaces: Synthesis and Conductance Properties.
in Angewandte Chemie (International ed. in English)
O'Driscoll LJ
(2021)
Extended curly arrow rules to rationalise and predict structural effects on quantum interference in molecular junctions.
in Nanoscale
O'Driscoll LJ
(2021)
A review of oligo(arylene ethynylene) derivatives in molecular junctions.
in Nanoscale
O'Driscoll LJ
(2021)
Heteroatom Effects on Quantum Interference in Molecular Junctions: Modulating Antiresonances by Molecular Design.
in The journal of physical chemistry. C, Nanomaterials and interfaces
Wang X
(2022)
Electrostatic Fermi level tuning in large-scale self-assembled monolayers of oligo(phenylene-ethynylene) derivatives.
in Nanoscale horizons
Wang X
(2024)
Correction: Tailoring quantum transport efficiency in molecular junctions via doping of graphene electrodes
in Journal of Materials Chemistry C
Wang X
(2024)
Tailoring quantum transport efficiency in molecular junctions via doping of graphene electrodes
in Journal of Materials Chemistry C
Wang X
(2022)
Thermoelectric properties of organic thin films enhanced by p-p stacking
in Journal of Physics: Energy
Wang X
(2023)
Orientation preference control: a novel approach for tailoring molecular electronic functionalities
in Journal of Materials Chemistry C
Description | New molecules have been synthesised and they have been supplied to partners for studies of their self-assembly on metal and graphene surfaces.. |
Exploitation Route | Our molecules are available to other groups who are working in molecular electronics. |
Sectors | Chemicals Electronics Energy |
Description | Results included in lectures I have presented at conferences and meetings |
First Year Of Impact | 2022 |
Sector | Chemicals,Electronics,Energy |
Impact Types | Economic |