#electrosynthesis
So excited to see this amazing work out today in #JACS! ⚡🎉

A great interdisciplinary project and wonderful team effort, combining electrosynthesis and #compchem with lots of creativity and collaboration!

@manchester.ac.uk

#Electrosynthesis #OrganicChemistry #ComputationalChemistry
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/...
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.
pubs.acs.org
March 17, 2026 at 8:56 AM
These little chips, born out of a collaboration between Cornell researchers @songlin1.bsky.social and Paul McEuen, can turn any well plate into an array of tiny wireless electrochemical reactors, for truly high-throughput electrosynthesis!

New in @cenmag.bsky.social:

cen.acs.org/synthesis/El...
Electrosynthesis goes wireless
Light-powered microelectronics enable high-throughput experimentation
cen.acs.org
January 8, 2025 at 10:39 PM
Enhancing Carbon Conversion Efficiency and Product Yield Through Systematic Biocatalyst Design for Microbial Electrosynthesis https://www.biorxiv.org/content/10.64898/2026.09.22.753537v1
September 24, 2026 at 4:17 AM
Now online:

Article by Bin Zhang & co-workers

Ampere-level electrosynthesis of a nylon-6 precursor by local NO coverage tuning

www.nature.com/articles/s44... ($)

#Chemsky
Ampere-level electrosynthesis of a nylon-6 precursor by local NO coverage tuning - Nature Synthesis
Cyclohexanone oxime electrosynthesis has low Faradaic efficiency at high current densities. Now, high NO coverage is found to favour oxime production. A doping strategy is proposed to break the electr...
www.nature.com
August 7, 2025 at 6:01 PM
⚡ Electrosynthesis scale up alert! ⚡ Happy to share our OPRD article detailing lessons learned on improving robustness of electrosynthesis setups across scales.

doi.org/10.1021/acs....
Scalable Flow Electrosynthesis of Iminophosphoranes
A scalable electrochemical process to synthesize iminophosphorane ligands is reported. The application of these iminophosphoranes was recently reported in Ni-catalyzed cross-electrophile and C–N cross...
doi.org
January 9, 2025 at 1:57 AM
Hydrogen Peroxide Electrosynthesis From Seawater
Hydrogen Peroxide Electrosynthesis From Seawater

doi.org/10.1002/smm2...
August 8, 2025 at 3:00 PM
Hydrogen Peroxide Electrosynthesis From Seawater
Hydrogen Peroxide Electrosynthesis From Seawater

doi.org/10.1002/smm2...
August 9, 2025 at 11:41 PM
Spin Catalysis of Urea Electrosynthesis Using Diluted Magnetic Oxides www.chinesechemsoc.org/doi/10.31635...

#chemistry #openaccess #science
May 27, 2026 at 8:55 PM
Here comes e-Diazo / e-Cyclopropanation ⚡️
Can diazo chemistry finally scale if diazo never accumulates?
Electro-generate, consume immediately.
Gram-scale cyclopropanes, safer by design!
pubs.rsc.org/en/content/a...
@chemicalscience.rsc.org @realtimechem.bsky.social
#Electrosynthesis #ChemSky
February 11, 2026 at 5:00 PM
I'd be inclined to throw research funding at diverse approaches, including modification of cereal crops to adopt alternate metabolic pathways, enabling, for instance, electrosynthesis instead of photosynthesis
August 5, 2026 at 9:46 AM
#CoverFeature for our collaborative work with P.Nikolaienko & K.J.J. Mayrhofer on “In-Situ #Electrolyte for #Electrosynthesis: One-Pot Sequence to Isoxazol(in)es"!
#ChemSky #AcademicSky
chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/... chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/...
December 29, 2024 at 1:30 PM
Hydrogen Peroxide Electrosynthesis From Seawater
Hydrogen Peroxide Electrosynthesis From Seawater

doi.org/10.1002/smm2...
August 8, 2025 at 2:53 PM
Exclusivity for #ChemSky:🎉 New paper to start 2026!
Electrochemical conversion of alkyl halides to α-keto esters, no organometallics, no sup. electrolyte, no −78 °C, mild and scalable!

pubs.acs.org/doi/10.1021/...

#Electrosynthesis #GreenChemistry #UniofGreenwich @realtimechem.bsky.social
January 4, 2026 at 3:22 PM
Researchers created wireless light-powered microelectronic devices that can turn nearly any well plate into an array of teeny-tiny electrochemical reactors, enabling truly high-throughput electrochemistry. cen.acs.org/synthesis/El... #chemsky🧪 #scinews
Electrosynthesis goes wireless
Light-powered microelectronics enable high-throughput experimentation
cen.acs.org
January 10, 2025 at 4:20 PM
N-B-O-crosslinker-induced mechanochemical conversion of carbon phase unlocks efficient hydrogen peroxide electrosynthesis
@Boron_Chemistry @2DMaterialsLab

doi.org/10.1016/j.cc...
October 2, 2025 at 3:07 AM
N-B-O-crosslinker-induced mechanochemical conversion of carbon phase unlocks efficient hydrogen peroxide electrosynthesis
N-B-O-crosslinker-induced mechanochemical conversion of carbon phase unlocks efficient hydrogen peroxide electrosynthesis
@Boron_Chemistry @2DMaterialsLab

doi.org/10.1016/j.cc...
October 2, 2025 at 3:27 AM
Hydrogen Peroxide Electrosynthesis From Seawater

doi.org/10.1002/smm2...
August 8, 2025 at 2:31 PM
Song Lin and Paul McEuen are working on commercializing SPECS through McEuen’s start-up, OWiC Technologies, so that more chemists can experiment with wireless electrochemistry. cen.acs.org/synthesis/El... #chemsky🧪 #scinews
Electrosynthesis goes wireless
Light-powered microelectronics enable high-throughput experimentation
cen.acs.org
January 20, 2025 at 7:59 PM
I just had Conall, a first year PhD student signing up to give a talk by « mistake » instead of poster at the Bristol Electrosynthesis Meeting! Well he aced it! #Proud #UniOfGreenwich #Bristol #ChemSky
April 7, 2025 at 3:39 PM
A new total synthesis of (+)-colchicine epitomises how green chemistry tools are becoming mainstream strategies for building complex molecules.

Irene Sanchez Molina reports:
#ChemSky
www.chemistryworld.com/news/colchic...
Colchicine total synthesis embraces electrochemistry
Route highlights how electrosynthesis, and to a lesser extent mechanochemistry, are becoming increasingly important to the synthetic chemist's toolbox
www.chemistryworld.com
September 22, 2026 at 9:08 AM
Now online:

Article by Zhenpeng Yao, Jun Li & co-workers

Electrosynthesis of ethanol via CO–CHx cross-coupling on copper alloy catalysts with engineered oxygen affinity

www.nature.com/articles/s44...
#Chemsky
Electrosynthesis of ethanol via CO–CHx cross-coupling on copper alloy catalysts with engineered oxygen affinity - Nature Synthesis
Ethanol electrosynthesis from CO reduction is achieved using an oxygen-affinity-engineered copper alloy catalyst. Unlike conventional CO dimerization pathways, which yield diverse products, this catal...
www.nature.com
September 1, 2025 at 3:47 PM
Some say “back to the flatland.”
We say: time to spiro. A fantastic work by @myrl.bsky.social with @astra-zeneca.bsky.social

Out in Green Chem: #eSpiro – a metal-free, scalable electrosynthetic route to spiroketals via anodic oxidation.

pubs.rsc.org/en/content/a...

#Electrosynthesis #ChemSky
June 3, 2025 at 9:18 AM