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Patrick C Hillesheim

Explore the profile of Patrick C Hillesheim including associated specialties, affiliations and a list of published articles. Areas
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Articles 32
Citations 54
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Recent Articles
1.
Butch C, Hillesheim P, Mirjafari A
Precis Chem . 2025 Feb; 3(2):105-107. PMID: 40018451
In this Comment, we suggest salt metathesis (or ion exchange) as an ultimate click reaction, extending click chemistry principles beyond covalent bonds to ionic interactions. These universal and robust reactions,...
2.
Adu C, Boucher M, Hillesheim P, Mirjafari A
J Electrochem Soc . 2024 Jul; 170(6). PMID: 38993190
The persistent achievements of ionic liquids in various fields, including medicine and energy necessitate the efficient development of novel functional ionic liquids that exhibit favorable characteristics, alongside the development of...
3.
Scheuren M, Teodoro L, Witters A, Musozoda M, Adu C, Guillet G, et al.
J Phys Chem B . 2024 Jun; 128(24):5895-5907. PMID: 38845589
While machine learning and artificial intelligence offer promising avenues in the computer-aided design of materials, the complexity of these computational techniques remains a barrier for scientists outside of the specific...
4.
Wu A, Hillesheim P, Nelson P, Zeller M, Carignan G, Li J, et al.
Dalton Trans . 2024 Apr; 53(16):6932-6940. PMID: 38567414
A novel type of chemosensor based on tin(IV) complexes incorporating hydroxyquinoline derivatives has been designed and investigated for selectively detecting fluoride ions. Sn(meq)Cl (meq = 2-methyl-8-quinolinol) (complex 1) exhibits a...
5.
Yeboah J, Metott Z, Butch C, Hillesheim P, Mirjafari A
Chem Commun (Camb) . 2024 Feb; 60(29):3891-3909. PMID: 38420843
Ionic liquids (ILs) have emerged as a new class of materials, displaying a unique capability to self-assemble into micelles, liposomes, liquid crystals, and microemulsions. Despite evident interest, advancements in the...
6.
Musozoda M, Muller 2nd J, Anderson G, Boucher M, Zeller M, Raymond C, et al.
Chem Commun (Camb) . 2024 Jan; 60(13):1723-1726. PMID: 38240071
The serendipitous discovery of an unorthodox ionic cocrystallization system using 2-mercaptothiazolium-based ionic liquids as a crystallization milieu paves the way for the first report of crystal structures of long-chain 1-bromoalkanes....
7.
Ble-Gonzalez E, Isbel S, Ojo O, Hillesheim P, Zeller M, Bugarin A
New J Chem . 2023 Dec; 47(36):17020-17025. PMID: 38094749
Sulfones are fascinating and highly used functional groups, but current syntheses still have limitations. Here, a regiodivergent transition metal-free approach towards sulfones [()-allylic sulfones and α-sulfonyl-methyl styrenes] is reported. The...
8.
OBrien R, Hillesheim P, Soltani M, Badilla-Nunez K, Siu B, Musozoda M, et al.
J Phys Chem B . 2023 Feb; 127(6):1429-1442. PMID: 36745872
The replacement of unsaturation with a cyclopropane motif as a (bio)isostere is a widespread strategy in bacteria to tune the fluidity of lipid bilayers and protect membranes when exposed to...
9.
Anderson G, Hardy D, Hillesheim P, Wagle D, Zeller M, Baker G, et al.
ACS Phys Chem Au . 2023 Jan; 3(1):94-106. PMID: 36718259
A fundamental challenge underlying the design principles of ionic liquids (ILs) entails a lack of understanding into how tailored properties arise from the molecular framework of the constituent ions. Herein,...
10.
Bellia S, Teodoro L, Barbosa A, Zeller M, Mirjafari A, Hillesheim P
ChemistrySelect . 2023 Jan; 7(46). PMID: 36643613
A heteroaryl sulfonyl(VI) fluoride, 4-chloro-7-fluorosulfonyl-2,1,3-benzoxadiazole, was synthesized from its chloride counterpart (4-chloro-7-chlorosulfonyl-2,1,3-benzoxadiazole) and the X-ray structure analysis of these compounds and the interactions in the solid-state were thoroughly examined. Hirshfeld...