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Giacomo Crisenza

@gemcrisenza.bsky.social
435 followers 412 following 14 posts

EU/IT Chemist⚗️| Lecturer @UoMChemistry (UK) Synthetic radical chemistry⚡️💡| Sustainable catalysis🔄 Passionate about InterMilan🐍, amaro Braulio and good food 📍Manchester, United Kingdom | 🌐 www.crisenzalab.net

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Giacomo Crisenza @gemcrisenza.bsky.social · 10/07/2026
📣 Here’s another doctor from the Crisenza group! 👨‍🔬 🍾 Massive congrats to Roberto Buscemi for successfully defending his viva voce examination yesterday, and a big thank you to Allegra Franchino and Mike Greaney for examining! Best of luck for your next step, Roberto!
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Giacomo Crisenza @gemcrisenza.bsky.social · 23/04/2026
🎯A major milestone for our lab as we celebrate the very first PhD graduate from the Crisenza group! A huge congratulations to the freshly minted👨‍🔬Dr Wanderley for surv…ehm successfully defending his viva on Tuesday, and many thanks to Igor @larrosagroup.bsky.social and Alastair Lennox for examining!
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SCI - Where Science Meets Business @sciupdate.bsky.social · 26/03/2026
📢 Register Now! bit.ly/PrideinChem This event is dedicated to celebrating and amplifying the voices of LGBTQIA+ chemists by providing a safe and inclusive environment to share their work research, ideas and experiences authentically.
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Giacomo Crisenza @gemcrisenza.bsky.social · 16/03/2026
Excited to see our recent work on the electroreductive cleavage of C(sp³)–N bonds in saturated N-carbonyl heterocycles out in @jacs.acspublications.org 🔌Check the full study here: pubs.acs.org/doi/10.1021/...
pubs.acs.org
Electroreductive Cleavage of C(sp3)–N Bonds in Saturated N-Carbonyl Heterocycles
Ring-opening C–N bond cleavage reactions provide an effective means to convert widespread, readily accessible chiral N-heterocycles into hard-to-attain stereodefined linear amines. Current strategies either rely on the strain-induced release of small aziridine and azetidine rings or, for larger ring systems, require highly electrophilic reagents, oxidative conditions, or preinstalled reactive functionalities to enable the ring-opening event. Recently, complementary radical strategies that exploit the reactivity of α-amino-ketyl radicals, formed upon single-electron transfer (SET) reduction of common N-carbonyl protecting groups, have emerged. Nevertheless, these methods facilitate the homolytic fragmentation only of up to 5-membered azacycles. In this study, we leveraged electroreductive conditions to switch the nature of the above C–N bond cleavage manifold from radical to ionic and enable the heterolytic ring-opening of a broad array of unstrained cyclic amines (comprising pyrrolidines, piperidines, azepines, azocanes, and N-macrocycles), protected as N-(thio)amides, carbamates, or ureas. Crucially, this electrochemically enabled reactivity switch grants complementary functional group compatibility and a broader ring size and N-carbonyl group scope. Computational and experimental studies indicate that electrochemical settings are crucial for generating the Mg(II)-Lewis acid catalyst, activating the N-carbonyl moiety while prompting the so-formed oxy-iminium ion intermediates to undergo two consecutive cathodic SET reductions, generating “umpoled” α-amino-α-oxy-carbanion species. These, via irreversible E1cB fragmentation of the adjacent C–N bond, lead to the desired ring-opened products. Our electrochemical procedure can be scaled up and miniaturized (enabling its application to high-throughput experimentation screening), and its synthetic utility has been demonstrated by accessing decorated stereodefined linear amides from stereochemically rich pyrrolidine and azepane derivatives.
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Synlett Journal @synlettjournal.bsky.social · 28/01/2026
Turning alkenes into chiral building blocks✨Wanderley & Crisenza showcase how #electrosynthesis is revolutionizing asymmetric 1,2-difunctionalization. Their “Sew & Cut” strategy merges pericyclic 1,3-dipolar cycloadditions with radical reactivity for complexity generation🧪 👉 buff.ly/gmBJTl3
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SCI - Where Science Meets Business @sciupdate.bsky.social · 18/11/2025
📢 Register your interest! bit.ly/PrideinChem This event is dedicated to celebrating and amplifying the voices of LGBTQIA+ chemists by providing a safe and inclusive environment to share their work research, ideas and experiences authentically.
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Giacomo Crisenza @gemcrisenza.bsky.social · 31/10/2025
📢📜In this #Synpacts (@synlettjournal.bsky.social), we showcase how electrosynthesis enabled the design of innovative diastereo- and enantioselective alkene 1,2-difunctionalization reactions. These contributions have inspired a complementary “Sew & Cut” strategy www.thieme-connect.com/products/ejo...
thieme-connect.com
Thieme E-Journals - Synlett / Abstract
Thieme E-Books & E-Journals
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Giacomo Crisenza @gemcrisenza.bsky.social · 23/10/2025
We are seeking a motivated candidate to apply for the prestigious Bicentenary PhD Scholarship at the University of Manchester👩‍🔬🧑‍🔬 Interested applicants should contact me at giacomo.crisenza@manchester.ac.uk. We welcome applications from the UK and worldwide🗺️ Info: www.findaphd.com/phds/project...
findaphd.com
[FSE Bicentenary PhD] New Electrosynthetic Strategies to Nitrile Covalent Warheads, and Their Application to the Development of Electrochemically-Activated Prodrugs for Targeted Drug-Delivery at The ...
PhD Project - [FSE Bicentenary PhD] New Electrosynthetic Strategies to Nitrile Covalent Warheads, and Their Application to the Development of Electrochemically-Activated Prodrugs for Targeted Drug-De...
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Giacomo Crisenza @gemcrisenza.bsky.social · 14/05/2025
Thanks @organicportal.bsky.social for the very kind highlight!
organic-chemistry.org
Reactions of Alkenes: The Jia Synthesis of Kalmanol
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Perry Group @perrychem.bsky.social · 06/05/2025
📢 Come join us in sunny Southampton ☀️ The opening for our Postdoctoral Research Associate in Organic Synthesis is now live! jobs.soton.ac.uk/Vacancy.aspx?ref=3086025EB Deadline: Thurs 29th May 2025 Start date: Flexible – anytime from now to early 2026 @unisouthampton.bsky.social
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Giacomo Crisenza @gemcrisenza.bsky.social · 25/04/2025
🧑‍🔬Lots of new faces in our lab: a big welcome to Pol, Erick and Hugo; who join our Team as PDRA, visiting PhD and Master’s student, respectively! Best of luck⚡️💡 www.crisenzalab.net/team
crisenzalab.net
Team — CrisenzaLab
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Giacomo Crisenza @gemcrisenza.bsky.social · 25/04/2025
Buona festa della Liberazione🌹 #25Aprile
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Larrosa Group @larrosagroup.bsky.social · 04/02/2025
Interested in carrying out postdoctoral research at the interface of artificial intelligence, organic chemistry and catalysis? Join us in this collaborative project with the Bures group!! Please follow the link below for further information: www.jobs.manchester.ac.uk/Job/JobDetai...
jobs.manchester.ac.uk
Postdoctoral Research Associate in Catalysis and Machine Learning:Oxford Road
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Dave Leigh @profdaveleigh.bsky.social · 15/01/2025
Peng-Lai, @stefanborsley.bsky.social, Martin & our collaborators Alessandro and @giusepponelab.bsky.social demonstrate how a catalyst transduces chemical energy to perform mechanical work in www.nature.com/articles/s41... in @nature.com. tinyurl.com/jny7nen5. Animation @scicommstudios.bsky.social😀
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Trowbridge Group @trowbridgegroup.bsky.social · 20/12/2024
This years TruJamEnzaBridge Christmas social was a success! A jolly Christmas quiz organised by Ben and Ruth - congrats to the academics for winning the quiz! Great food and even better drinks after, finishing with an inspiring speech by both George and Ben…here’s to next year :)
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Giacomo Crisenza @gemcrisenza.bsky.social · 17/12/2024
Kudos to Taciano for securing the Oustanding Oral Presentation Prize🏆at the Postgraduate Symposium on Future Directions on Chemical Synthesis, yesterday at the University of Bath – way to go! (thanks @perrychem.bsky.social for taking the picture📸)
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Guillaume De Bo @guillaumedebo.bsky.social · 16/12/2024
The University of Manchester, making an impact since 1824 ! As 2024 draws to a close, we wanted to celebrate our university's 200th anniversary mechanochemically 🔨 @official-uom.bsky.social purple and gold colours are revealed by the impact of a hammer on a mechanochromic elastomer. #UoM200
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Nick Chiappini 🏳️‍🌈🧪 @ndchiappini.bsky.social · 11/12/2024
Super handy homologation protocol from the Silvi group at U Nottingham (I don't ~think they're on here yet?) Carboxylic acid, PC, Nitroethylene and 1 C extension! #ChemSkyPaperPile pubs.acs.org/doi/full/10.1021/jacs.4c13630
pubs.acs.org
Iterative One-Carbon Homologation of Unmodified Carboxylic Acids
The one-carbon homologation of carboxylic acids is a valuable route to construct families of homologues, which play fundamental roles in chemistry and biology. However, known procedures are based on m...
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Giacomo Crisenza @gemcrisenza.bsky.social · 09/12/2024
Warm getaways are overrated...🇮🇸
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Cristina Trujillo @trujillo-group.bsky.social · 07/12/2024
Excited to see this fantastic project from Trowbridge Group published! We had so much fun contributing the computational insights @jamesob2.bsky.social A great exp-comp collaboration exploring targeted photoactivation of periodate for oxenoid reactivity onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Oxenoid Reactivity Enabled by Targeted Photoactivation of Periodate
The targeted photoactivation of periodate provides a novel and operationally straightforward method for accessing oxenoid-type reactivity. Computational studies have revealed a geometric transition i...
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Giacomo Crisenza @gemcrisenza.bsky.social · 27/11/2024
Great to see our recent paper highlighted on @naturesynthesis.bsky.social ! Thanks @drtwest for writing the article🔗👇 www.nature.com/articles/s44...
nature.com
Electrochemical fragmentation for alkene difunctionalization - Nature Synthesis
Nature Synthesis - Electrochemical fragmentation for alkene difunctionalization
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Cristina Trujillo @trujillo-group.bsky.social · 18/11/2024
Check our latest paper in @BeilsteinInstitut.hessen.social.ap.brid.gy JOC. We explore how FLPs drive stereoselective CO2-epoxide transformations, advancing CCU technologies. Part of the "Adaptive experimentation and optimization in organic chemistry" issue. 👉 beilstein-journals.org/bjoc/article...
beilstein-journals.org
Computational design for enantioselective CO2 capture: asymmetric frustrated Lewis pairs in epoxide transformations
Beilstein Journal of Organic Chemistry
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Giacomo Crisenza @gemcrisenza.bsky.social · 18/11/2024
Thrilled to see our first contribution out in JACS! Taciano, Roberto, Órla & Ben developed a practical, broad-scope and selective strategy for alkene 1,2-syn-difunctionalization, combining 1,3-dipolar cycloadditions with electrochemical radical activation🪡✂️ 📜🔗: pubs.acs.org/doi/full/10....
pubs.acs.org
General Alkene 1,2-syn-Cyano-Hydroxylation Procedure Via Electrochemical Activation of Isoxazoline Cycloadducts
Stereoselective alkene 1,2-difunctionalization is a privileged strategy to access three-dimensional C(sp3)-rich chiral molecules from readily available “flat” carbon feedstocks. State-of-the-art appro...
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