Chris S Hawes
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Explore the profile of Chris S Hawes including associated specialties, affiliations and a list of published articles.
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44
Citations
101
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Recent Articles
1.
Hawkins P, Hawes C, Matthews P, Matthews P
Chempluschem
. 2025 Jan;
:e202400725.
PMID: 39878090
Frustrated Lewis pairs (FLPs) have rapidly become one of the key metal-free catalysts for a variety of chemical transformations. Embedding these catalysts within a supramolecular assembly can offer improvements to...
2.
Ramirez Lazaro L, Sigurvinsson L, Curtin N, Ho J, Luis E, McAdams D, et al.
J Mater Chem B
. 2024 Dec;
13(3):929-942.
PMID: 39635833
Four new aromatic imides bearing triphenylamino (TPA) moieties are reported each of which differ by the number and/or positional arrangements of the TPA units. Compounds 1-3 are 1,8-naphthalimides (naps) that...
3.
van Beek C, Swarbrook A, Creissen C, Hawes C, Gazis T, Matthews P
Chemistry
. 2023 Dec;
30(8):e202301944.
PMID: 38050753
Boron- and nitrogen-doped polycyclic aromatic hydrocarbons (B-PAHs) have established a strong foothold in the realm of organic electronics. However, their catalytic potential remains largely untapped. In this study, we synthesise...
4.
Ahmadipour S, Wahart A, Dolan J, Beswick L, Hawes C, Field R, et al.
Beilstein J Org Chem
. 2022 Oct;
18:1379-1384.
PMID: 36247981
Sufferers of cystic fibrosis are at significant risk of contracting chronic bacterial lung infections. The dominant pathogen in these cases is mucoid Such infections are characterised by overproduction of the...
5.
Brightwell D, Truccolo G, Samanta K, Fenn E, Holder S, Shepherd H, et al.
Chemistry
. 2022 Aug;
28(66):e202202368.
PMID: 36040298
The ability to use bio-inspired building blocks in the assembly of novel supramolecular frameworks is at the forefront of an exciting research field. Herein, we present the first polyproline helix...
6.
Swarbrook A, Weekes R, Goodwin J, Hawes C
Dalton Trans
. 2021 Dec;
51(3):1056-1069.
PMID: 34935828
Fused-ring pyrazoles offer a versatile platform for derivitization to give finely tuned and functional ligands in coordination assemblies. Here, we explore the pyrazolo[4,3-]pyridine (HL1) and pyrazolo[3,4-]pyridine (HL2) backbones and their...
7.
Guinan M, Huang N, Hawes C, Lima M, Smith M, Miller G
Org Biomol Chem
. 2021 Nov;
20(7):1401-1406.
PMID: 34806745
Analogues of the canonical nucleosides required for nucleic acid synthesis have a longstanding presence and proven capability within antiviral and anticancer research. 4'-Thionucleosides, that incorporate bioisosteric replacement of furanose oxygen...
8.
Kumawat L, Wynne C, Cappello E, Fisher P, Brennan L, Strofaldi A, et al.
Chempluschem
. 2021 Aug;
86(8):1058-1068.
PMID: 34351081
The synthesis and characterisation of two novel self-assembled amphiphiles (SSAs) SQS-1 and SQS-2 are reported. Both compounds, based on the squaramide motif, were fully soluble in a range of solvents...
9.
Hawes C
Dalton Trans
. 2021 May;
50(18):6034-6049.
PMID: 33973587
In the design of new metal-organic frameworks, the constant challenges of framework stability and structural predictability continue to influence ligand choice in favour of well-studied dicarboxylates and similar ligands. However,...
10.
Yuan D, Cai N, Xu J, Miao D, Zhang S, Woodfine S, et al.
Chempluschem
. 2020 Jun;
85(6):1210-1219.
PMID: 32515150
The development of a team-based approach to research-led transnational practical chemistry teaching is described in which a team of five Chinese students on an articulated transnational degree programme, supported by...