{"id":"00053035","next":"","publications":{"selected_publication":[],"favourites":[],"journal_article":[{"html":"
Mirashi VU; Kockelmann W; Kapur N; Matamoros-Veloza A<\/span> (2026)<\/span> Reducing edge enhancement effects in neutron imaging for metal surface studies<\/span>. Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment<\/span>, 1088<\/span>, pp. 171490<\/span>. Xu N; Wang D; Taylor C; Secker J; de Boer G; Thompson H; Kapur N; Morina A<\/span> (2026)<\/span> Adhesive layer formation and its dual role in tribological performance and surface integrity of Ti-6Al-4V: Implications for the machining process<\/span>. Tribology International<\/span>, 214<\/span>, (Part B)<\/span>, pp. 111228<\/span>. Bradbury MMA; Bourne RA; Jones MF; Kapur N; Munday RH; Rice S; Willans CE<\/span> (2026)<\/span> Going-with-the-flow: nickel-catalysed Suzuki\u2013Miyaura cross-couplings in continuous flow and translation into APIs savolitinib and baxdrostat<\/span>. Catalysis Science and Technology<\/span>. Mirashi VU; Kockelmann W; Kapur N; Matamoros-Veloza A<\/span> (2026)<\/span> Corrigendum to \u201cIntegrated in-situ imaging and diffraction flow cell technology (NX-DRT) for advanced corrosion studies\u201d [Corrosion Science, Volume 258 (2025) 1\u201312] (Corrosion Science (2026) 258, (S0010938X25007450), (10.1016\/j.corsci.2025.113417))<\/span>. Corrosion Science<\/span>, 258<\/span>, pp. 113447<\/span>. Mirashi VU; Kockelmann W; Kapur N; Matamoros-Veloza A<\/span> (2026)<\/span> Integrated in-situ imaging and diffraction flow cell technology (NX-DRT) for advanced corrosion studies<\/span>. Corrosion Science<\/span>, 258<\/span>, pp. 113417<\/span>. Bennett JD; Wilson MCT; Kapur N; Jimack PK; Maltby RP; Looney MK<\/span> (2025)<\/span> A CFD based approach to the modelling of pressure drop and flow pattern evolution through industrial filter systems<\/span>. Chemical Engineering Research and Design<\/span>, 222<\/span>, pp. 177-190<\/span>. Martinez J; Ingram N; Kapur N; Jayne DG; Beales PA<\/span> (2025)<\/span> Composition-dependent tunability of the cell interactions of hybrid lipid - block copolymer vesicles<\/span>. J Colloid Interface Sci<\/span>, 694<\/span>, pp. 137664<\/span>. Cahill A; Walko M; Fenton B; Ganji SR; Herbert A; Radford SE; Kapur N; Livingstone K; Wright MH; Calabrese AN<\/span> (2025)<\/span> Design and characterisation of photoactivatable and lysine reactive o-nitrobenzyl alcohol-based crosslinkers<\/span>. Chem Sci<\/span>, 16<\/span>, (33)<\/span>, pp. 15239-15255<\/span>. Kardamaki A; Nikolakopoulos A; Kavousanakis M; Doganis P; Jellicoe M; Stokes W; Hongisto V; Simmons M; Chamberlain TW; Kapur N; Grafstr\u00f6m R; Nelson A; Sarimveis H<\/span> (2025)<\/span> The SABYDOMA Safety by Process Control framework for the production of functional, safe and sustainable nanomaterials<\/span>. Computers and Chemical Engineering<\/span>, 199<\/span>, pp. 109113<\/span>. Crow B; Grafstrom R; Hongisto V; Kamat M; Kapur N; Kelly R; Owen J; Rashid A; Stokes W; William N; Williams J; Nelson A<\/span> (2025)<\/span> Emerging screening platform characterises aminoquinoline structure-activity relationships with phospholipid layers<\/span>. Bioelectrochemistry<\/span>, 164<\/span>, pp. 108927<\/span>. Shaw T; Clayton AD; Houghton JA; Kapur N; Bourne RA; Hanson BC<\/span> (2025)<\/span> Multi-Objective Bayesian Optimization of Continuous Purifications with Automated Phase Separation for On-Demand Manufacture of DEHiBA<\/span>. Separation and Purification Technology<\/span>, 361<\/span>, (Part 2)<\/span>, pp. 131288<\/span>. Li LHD; Douglas KM; Hall F; Kirker A; Driver L; de Boer GN; Kapur N; Lehman JH; Blitz MA; Heard DE<\/span> (2025)<\/span> Experimental and Theoretical Study of the Kinetics of Dimerization of Ammonia at Low Temperatures<\/span>. J Phys Chem A<\/span>, 129<\/span>, (28)<\/span>, pp. 6289-6305<\/span>. Serrano E; Zhao T; Mark DR; Soroor M; Floria I; Terrill NJ; Kapur N; Tyler AII; Horrocks MH; Roe AJ; Byron O<\/span> (2025)<\/span> Enterohaemorrhagic Escherichia coli AdhE spirosome length correlates with enzymatic directionality and is perturbed by salicylidene acylhydrazides<\/span>. Open Biol<\/span>, 15<\/span>, (6)<\/span>, pp. 250041<\/span>. Namulema E; Davis Birch W; Nakiriba Mayega R; Namugga B; Musasizi R; Tumwesigye A; Littlejohns A; Please H; Sharma V; Cunningham A; Waters I; Brettle D; Parmar JD; Miller R; Beacon T; Murdoch S; Culmer P; Kapur N; Winton M; Lawton T<\/span> (2025)<\/span> Feasibility of using continuous positive airway pressure via the LeVe CPAP System among children with acute hypoxaemic respiratory failure at Mengo Hospital, Kampala, Uganda: a mixed-methods study<\/span>. ERJ Open Res<\/span>, 11<\/span>, (3)<\/span>, pp. 673-2024<\/span>. Mirashi VU; Kockelmann W; Kapur N; Fedrigo A; Morgano M; Chulapakorn T; Losko A; Wolfertz A; Tremsin AS; Matamoros-Veloza A<\/span> (2025)<\/span> Exploring spatial resolution enhancements on IMAT for steel corrosion studies<\/span>. Nuclear Instruments and Methods in Physics Research Section A Accelerators Spectrometers Detectors and Associated Equipment<\/span>, 1073<\/span>, pp. 170284<\/span>. Pittaway PM; Knox ST; Cayre OJ; Kapur N; Golden L; Drillieres S; Warren NJ<\/span> (2025)<\/span> Self-driving laboratory for emulsion polymerization<\/span>. Chemical Engineering Journal<\/span>, 507<\/span>, pp. 160700<\/span>. Pittaway PM; Chingono KE; Knox ST; Martin E; Bourne RA; Cayre OJ; Kapur N; Booth J; Capomaccio R; Pedge N; Warren NJ<\/span> (2025)<\/span> Exploiting Online Spatially Resolved Dynamic Light Scattering and Flow-NMR for Automated Size Targeting of PISA-Synthesized Block Copolymer Nanoparticles<\/span>. ACS Polym Au<\/span>, 5<\/span>, (1)<\/span>, pp. 1-9<\/span>. Garg S; Singla P; Kaur S; Canfarotta F; Velliou E; Dawson JA; Kapur N; Warren NJ; Amarnath S; Peeters M<\/span> (2025)<\/span> Future Perspectives on the Automation and Biocompatibility of Molecularly Imprinted Polymers for Healthcare Applications<\/span>. Macromolecules<\/span>, 58<\/span>, (3)<\/span>, pp. 1157-1168<\/span>. Jellicoe M; Yang Y; Stokes W; Simmons M; Yang L; Foster S; Aslam Z; Cohen J; Rashid A; Nelson AL; Kapur N; Drummond-Brydson R; Chamberlain TW<\/span> (2025)<\/span> Continuous Flow Synthesis of Copper Oxide Nanoparticles Enabling Rapid Screening of Synthesis-Structure-Property Relationships<\/span>. Small<\/span>, 21<\/span>, (6)<\/span>, pp. e2403529<\/span>. Rowley BM; Thompson LA; Power LA; Daglish J; Parks E; Birbeck J; Marsden S; Kapur N; Blacker AJ<\/span> (2025)<\/span> Integrating continuous flow reaction and work-up: chiral amine resolution, separation and purification using a novel coalescing filter system<\/span>. React Chem Eng<\/span>, 10<\/span>, (2)<\/span>, pp. 392-397<\/span>. Willis LF; Trayton I; Saunders JC; Br\u00f9que MG; Davis Birch W; Westhead DR; Day K; Bond NJ; Devine PWA; Lloyd C; Kapur N; Radford SE; Darton NJ; Brockwell DJ<\/span> (2025)<\/span> Rationalizing mAb Candidate Screening Using a Single Holistic Developability Parameter<\/span>. Mol Pharm<\/span>, 22<\/span>, (1)<\/span>, pp. 181-195<\/span>. Martinez J; Ingram N; Kapur N; Jayne DG; Beales PA<\/span> (2024)<\/span> Vesicle-based formulations for pain treatment: a narrative review<\/span>. Pain Rep<\/span>, 9<\/span>, (6)<\/span>, pp. e1196<\/span>. Turner TD; O'Shaughnessy C; He X; Levenstein MA; Hunter L; Wojciechowski J; Bristowe H; Stone R; Wilson CC; Florence A; Robertson K; Kapur N; Meldrum FC<\/span> (2024)<\/span> Flow-Xl: a new facility for the analysis of crystallization in flow systems<\/span>. J Appl Crystallogr<\/span>, 57<\/span>, (Pt 5)<\/span>, pp. 1299-1310<\/span>. Bennett JD; Wilson MCT; Kapur N; Jimack PK; Maltby RP; Looney MK<\/span> (2024)<\/span> Computational modelling and experimental validation of pressure drop through multi-layered woven screens for polymer melts<\/span>. Chemical Engineering Research and Design<\/span>, 209<\/span>, pp. 323-333<\/span>. Husbands DR; Booth EM; Donaldson NWB; Kapur N; Willans RM; Willans CE<\/span> (2024)<\/span> Electrochemical removal of toxic metals from reaction media following catalysis<\/span>. Chem Commun (Camb)<\/span>, 60<\/span>, (67)<\/span>, pp. 8876-8879<\/span>. Martinez J; Maisey T; Ingram N; Kapur N; Beales PA; Jayne DG<\/span> (2024)<\/span> Development and validation of a mouse model to investigate post surgical pain after laparotomy<\/span>. Surg Open Sci<\/span>, 20<\/span>, pp. 106-115<\/span>. Arshad Z; Blacker AJ; Chamberlain TW; Kapur N; Clayton AD; Bourne RA<\/span> (2024)<\/span> Droplet microfluidic flow platforms for automated reaction screening and optimisation<\/span>. Current Opinion in Green and Sustainable Chemistry<\/span>, 48<\/span>, pp. 100940<\/span>. Driver L; Douglas K; Lucas DI; Guillaume T; Lehman JH; Kapur N; Heard DE; de Boer GN<\/span> (2024)<\/span> Developing a predictive model for low-temperature Laval nozzles with applications in chemical kinetics<\/span>. Physics of Fluids<\/span>, 36<\/span>, (7)<\/span>, pp. 076128<\/span>. Daglish J; Blacker AJ; de Boer G; Russell SJ; Tausif M; Hose DRJ; Parsons AR; Crampton A; Kapur N<\/span> (2024)<\/span> A Coalescing Filter for Liquid-Liquid Separation and Multistage Extraction in Continuous-Flow Chemistry<\/span>. Org Process Res Dev<\/span>, 28<\/span>, (5)<\/span>, pp. 1979-1989<\/span>. Sharma K; McCorry A; Boobier S; Mottram J; Napier R; Ashworth IW; Blacker AJ; Kapur N; Warriner SL; Wright MH; Nguyen BN<\/span> (2024)<\/span> Activation of fluoride anion as nucleophile in water with data-guided surfactant selection<\/span>. Chem Sci<\/span>, 15<\/span>, (15)<\/span>, pp. 5764-5774<\/span>.
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