David G Lidzey
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Explore the profile of David G Lidzey including associated specialties, affiliations and a list of published articles.
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66
Citations
486
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Recent Articles
1.
Blackburn D, Hill N, Wood C, Velusamy T, Nieto-Diaz B, Woolley C, et al.
ACS Appl Energy Mater
. 2025 Feb;
8(4):2219-2228.
PMID: 40018388
We fabricate a type of back-contact perovskite solar cell based on 1.5 μm-width grooves that are embossed into a plastic film whose opposing "walls" are selectively coated with either n-...
2.
Sasitharan K, Frisch J, Kulicek J, Iraqi A, Lidzey D, Bar M, et al.
Sci Rep
. 2024 Nov;
14(1):29559.
PMID: 39609514
Metal-organic framework nanosheets (MONs) have proved themselves to be useful additives for enhancing the performance of a variety of thin film solar cell devices. However, to date only isolated examples...
3.
Kilbride R, Spooner E, Cassella E, OKane M, Doudin K, Lidzey D, et al.
ACS Appl Energy Mater
. 2024 Oct;
7(19):8401-8411.
PMID: 39421274
Improving the photostability of the light-harvesting blend film in organic photovoltaics is crucial to achieving long-term operational lifetimes that are required for commercialization. However, understanding the degradation factors which drive...
4.
Sasaki Y, Georgiou K, Wang S, Bossanyi D, Jayaprakash R, Yanai N, et al.
Phys Chem Chem Phys
. 2024 May;
26(20):14745-14753.
PMID: 38716658
Strong light-matter interactions have attracted much attention as a means to control the physical/chemical properties of organic semiconducting materials with light-matter hybrids called polaritons. To unveil the processes under strong...
5.
Kilbride R, Spooner E, Burg S, Oliveira B, Charas A, Bernardo G, et al.
Small
. 2024 Apr;
20(33):e2311109.
PMID: 38597752
Controlling the nanomorphology in bulk heterojunction photoactive blends is crucial for optimizing the performance and stability of organic photovoltaic (OPV) technologies. A promising approach is to alter the drying dynamics...
6.
Georgiou K, Athanasiou M, Jayaprakash R, Lidzey D, Itskos G, Othonos A
J Chem Phys
. 2023 Dec;
159(23).
PMID: 38112504
Strong coupling of a confined optical field to the excitonic or vibronic transitions of a molecular material results in the formation of new hybrid states called polaritons. Such effects have...
7.
Putintsev A, McGhee K, Sannikov D, Zasedatelev A, Topfer J, Jessewitsch T, et al.
Phys Rev Lett
. 2023 Nov;
131(18):186902.
PMID: 37977614
The development of high-speed, all-optical polariton logic devices underlies emerging unconventional computing technologies and relies on advancing techniques to reversibly manipulate the spatial extent and energy of polartion condensates. We...
8.
Spooner E, Cassella E, Smith J, Catley T, Burholt S, Lidzey D
ACS Appl Mater Interfaces
. 2023 Jul;
15(33):39625-39635.
PMID: 37428479
The power conversion efficiencies (PCEs) of organic solar cells (OSCs) have risen dramatically since the introduction of the "Y-series" of non-fullerene acceptors. However, the demonstration of rapid scalable deposition techniques...
9.
Louca C, Genco A, Chiavazzo S, Lyons T, Randerson S, Trovatello C, et al.
Nat Commun
. 2023 Jun;
14(1):3818.
PMID: 37369664
Nonlinear interactions between excitons strongly coupled to light are key for accessing quantum many-body phenomena in polariton systems. Atomically-thin two-dimensional semiconductors provide an attractive platform for strong light-matter coupling owing...
10.
Game O, Thornber T, Cepero-Mejias F, Infante-Ortega L, Togay M, Cassella E, et al.
Adv Mater
. 2023 Mar;
36(20):e2209950.
PMID: 37001880
Integrating photovoltaic devices onto the surface of carbon-fiber-reinforced polymer substrates should create materials with high mechanical strength that are also able to generate electrical power. Such devices are anticipated to...