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
O'Driscoll LJ
(2020)
Carbazole-Based Tetrapodal Anchor Groups for Gold Surfaces: Synthesis and Conductance Properties.
in Angewandte Chemie (International ed. in English)
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
Wang X
(2023)
Orientation preference control: a novel approach for tailoring molecular electronic functionalities
in Journal of Materials Chemistry C
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 L
(2023)
Planar aromatic anchors control the electrical conductance of gold|molecule|graphene junctions
in Nanoscale Advances
Wang X
(2022)
Electrostatic Fermi level tuning in large-scale self-assembled monolayers of oligo(phenylene-ethynylene) derivatives.
in Nanoscale horizons
O'Driscoll L
(2021)
Heteroatom Effects on Quantum Interference in Molecular Junctions: Modulating Antiresonances by Molecular Design
in The Journal of Physical 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 |