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James R Durrant

Explore the profile of James R Durrant including associated specialties, affiliations and a list of published articles. Areas
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Articles 223
Citations 2540
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Recent Articles
1.
Cho Y, Yang M, Cui J, Yang Y, Singh S, Eslava S, et al.
J Am Chem Soc . 2025 Feb; 147(9):7703-7710. PMID: 39985412
Photoelectrochemical water splitting offers a promising pathway for green hydrogen production, but its efficiency is limited by electron-hole recombination. Overcoming this challenge requires detailed analysis of the relationship between charge...
2.
Kuila A, Diez-Cabanes V, Melillo A, Gosch J, Dhakshinamoorthy A, Yao S, et al.
Small . 2025 Feb; :e2407273. PMID: 39967438
The metal organic framework (MOF) MIP-177(Ti) is under the spotlight for its robust photo-response and stability. This MOF can be synthesized in forms: MIP-177(Ti)-LT (LT: low temperature) and MIP-177(Ti)-HT (HT:...
3.
Dong Y, Zheng R, Qian D, Lee T, Bristow H, Shakya Tuladhar P, et al.
J Am Chem Soc . 2024 Nov; 146(49):33579-33586. PMID: 39601273
Organic photovoltaics (OPVs) have recently shown substantial progress in enhancing device efficiency, driven in particular by advances in the design of nonfullerene acceptors and the reduction of the energy offset...
4.
Cho Y, He T, Moss B, Benetti D, Liang C, Tian L, et al.
ACS Catal . 2024 Nov; 14(21):16543-16550. PMID: 39507490
This study examines the kinetic origins of the temperature dependence of photoelectrochemical water oxidation on nanostructured titania photoanodes. We observe that the photocurrent is enhanced at 50 °C relative to...
5.
Gonzalez-Carrero S, Kosco J, Fei T, McCulloch I, Durrant J
Chem Sci . 2024 Oct; PMID: 39479153
Organic heterojunction nanoparticles (NP) have recently gained significant interest as photocatalysts for visible light-driven hydrogen production. Whilst promising photocatalytic efficiencies have been reported for aqueous NP dispersions, the underlying dynamics...
6.
Willner B, Aitchison C, Podjaski F, Lu W, Tian J, Durrant J, et al.
J Am Chem Soc . 2024 Oct; 146(45):30813-30823. PMID: 39475215
Increasing the interface area between organic semiconductor photocatalysts and electrolyte by fabricating nanoparticles has proven to be an effective strategy to increase photocatalytic hydrogen production activity. However, it remains unclear...
7.
Li S, Xiao Y, Su R, Xu W, Luo D, Huang P, et al.
Nature . 2024 Oct; 635(8040):874-881. PMID: 39401515
Obtaining micron-thick perovskite films of high quality is key to realizing efficient and stable positive (p)-intrinsic (i)-negative (n) perovskite solar cells, but it remains a challenge. Here we report an...
8.
He T, Zhao Y, Benetti D, Moss B, Tian L, Selim S, et al.
J Am Chem Soc . 2024 Sep; 146(39):27080-27089. PMID: 39305258
A limiting factor to the efficiency of water Oxygen Evolution Reaction (OER) in metal oxide nanoparticle photocatalysts is the rapid recombination of holes and electrons. Facet-engineering can effectively improve charge...
9.
Salati M, Dorchies F, Wang J, Ventosa M, Gonzalez-Carrero S, Bozal-Ginesta C, et al.
Small . 2024 Sep; 21(7):e2406375. PMID: 39235360
Light-induced water splitting (hν-WS) for the production of hydrogen as a solar fuel is considered a promising sustainable strategy for the replacement of fossil fuels. An efficient system for hν-WS...
10.
Alsufyani M, Moss B, Tait C, Myers W, Shahi M, Stewart K, et al.
Adv Mater . 2024 Sep; 36(44):e2403911. PMID: 39221539
A key challenge in the development of organic mixed ionic-electronic conducting materials (OMIEC) for high performance electrochemical transistors is their stable performance in ambient. When operating in aqueous electrolyte, potential...