Dave Leigh
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profdaveleigh.bsky.social
Dave Leigh
@profdaveleigh.bsky.social
President-elect @RSC.org; @RoyalSociety.org Research Professor & Sir Samuel Hall Chair of Chemistry @manchester.ac.uk, UK. European. molecules・machines・magic
Pinned
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😀
Reposted by Dave Leigh
Fatboy Slim to play anniversary gig at RSC's Burlington House... Legendary DJ set to play a special gig at our London HQ to celebrate 30 years of his debut album 'Better Living Through Chemistry'

www.rsc.org/news/fatboy-...
Superstar DJ Fatboy Slim to play anniversary set at RSC HQ
The electronic music legend will play a special gig at Burlington House to celebrate 30 years of his debut album 'Better Living Through Chemistry'.
www.rsc.org
September 15, 2026 at 7:11 PM
In recent years many old PhD theses have been digitised & put online in university repositories, but they can be difficult to find. So we've located almost all the PhDs from the first three-and-a-half decades of Leigh group and have put them online here: www.catenane.net/phd-theses. Happy reading!😃
Leigh Group | Molecular Ratchets
www.catenane.net
September 16, 2026 at 8:02 AM
Reposted by Dave Leigh
First paper featuring one of my students out now in @jacs.acspublications.org!

The brilliant Willow Baxter teamed up with the group of @giuliosflask.bsky.social to show how we can pump gradients across lipid bilayer membranes, and harness them to drive other processes.

pubs.acs.org/jacsat/artic...
August 3, 2026 at 3:46 PM
Reposted by Dave Leigh
Coal may have powered the industrial revolution but it also galvanised the science of thermodynamic efficiency because chemically fuelling stuff is hard...
Molecular ratchets: unlocking the chemistry of biological motion
Motor proteins power everything from muscle contraction to bacterial swimming. While replicating their chemically fuelled directional motion in the laboratory has proved difficult, researchers are mak...
www.chemistryworld.com
July 24, 2026 at 6:32 AM
Reposted by Dave Leigh
Thoughts on the various Trump administration proposals to revamp US science funding - and what they all have in common:
The Assault On Science Funding Continues
www.science.org
July 23, 2026 at 7:04 PM
Reposted by Dave Leigh
With football dominating summer headlines, the benefits of packing in slow-release carbohydrates before a big game are widely known – but how exactly motor proteins in muscles turn food energy into movement remains up for debate.

Anna Demming explores:
www.chemistryworld.com/features/mol...
Molecular ratchets: unlocking the chemistry of biological motion
Motor proteins power everything from muscle contraction to bacterial swimming. While replicating their chemically fuelled directional motion in the laboratory has proved difficult, researchers are mak...
www.chemistryworld.com
July 20, 2026 at 4:27 PM
Reposted by Dave Leigh
For decades, chemists believed that assembling rotaxanes required carefully designed molecular recognition between a ring and an axle, or rod-shaped, unit. Researchers have now flipped this paradigm, showing that a flexible molecular chain can direct the formation of the ring around itself #chemsky🧪
A simpler way to make rotaxanes
No need for metals or recognition sites to build these molecular machines
cen.acs.org
July 9, 2026 at 7:35 PM
A simpler way to make rotaxanes cen.acs.org/synthesis/ro...
A simpler way to make rotaxanes
No need for metals or recognition sites to build these molecular machines
cen.acs.org
July 9, 2026 at 10:28 AM
Reposted by Dave Leigh
‘I find myself suddenly in unprecedented times where the federal government, which throughout my lifetime had been a staunch supporter of basic science as well as applied science, is turning in a different direction,’ Carolyn Bertozzi said.

www.chemistryworld.com/news/latest-...
Latest White House move to politicise science funding provokes outrage among research leaders
US research community mobilising to push back on proposed rule that would give apparatchiks control of which research gets funded
www.chemistryworld.com
June 15, 2026 at 1:14 PM
Reposted by Dave Leigh
Professor David Leigh wins @rsc.org presidential election. Professor Leigh, @royalsociety.org Research Professor and Sir Samuel Hall Chair of Chemistry at @manchester.ac.uk, will be president-elect from 2026-28, when his presidential term begins.
Read more ➡️ www.rsc.org/news/profess...
June 2, 2026 at 3:02 PM
Remembering the 22 teenagers, kids & parents who, 9 years ago, went to a pop concert and never came home 🐝❤️https://youtube.com/watch?v=BmSKF5hdIpw
May 22, 2026 at 6:16 AM
Knotting to see here in @jacs.acspublications.org pubs.acs.org/doi/10.1021/... 🪢 Congrats to Jiankang & Min!🎉🥂
Conformationally Switchable Molecular Trefoil Knot Assembled From 2,6-Bis(1,2,3-triazol-4-yl)pyridine (btp) Building Blocks
We report an efficient lanthanide-template synthesis of a conformationally switchable molecular trefoil knot assembled from three 2,6-bis(1,2,3-triazol-4-yl)pyridine (btp) ligand strands. Coordination of Lu3+ organizes three btp building blocks into a trimeric circular helicate that, upon subsequent ring-closing olefin metathesis, gives a trefoil knotted coordination complex in 73% yield over two steps. Subsequent demetalation with tetraethylammonium fluoride quantitatively affords the corresponding metal-free 87-atom-loop trefoil knot. The metal-coordinated and metal-free knots were characterized by NMR spectroscopy, high-resolution mass spectrometry, and single-crystal X-ray diffraction. The metalated and metal-free knots adopt substantially different conformations to each other, in both solution and the solid state. In the Lu3+-bound knot the btp units are directed inward to coordinate the metal center, with the strand conformation further stabilized by pyridine–naphthalene π-stacking. In the metal-free knot the btp motifs are rotated outward, with the conformation stabilized by triazole C–H···O hydrogen bonding and naphthalene–naphthalene π-stacking. Reversible metalation and demetalation cleanly interconverts the two knot conformations, establishing btp building blocks as a simple and versatile platform for responsive entangled or woven molecular topologies.
pubs.acs.org
May 18, 2026 at 4:06 PM
Online petition and open letter to the University of Nottingham in response to its plans for redundancies in the School of Chemistry. nottinghamchemistry.github.io/Open_Letter/
Save Nottingham Chemistry
nottinghamchemistry.github.io
May 16, 2026 at 5:47 AM
Reposted by Dave Leigh
We caught a chemically-driven molecular shuttle in the act! 🤫

Read @angewandtechemie.bsky.social how we use optical-tweezers with @3mlab.bsky.social to track how a two-station shuttle becomes a single-station rotaxane upon Diels-Alder reaction!

onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
May 6, 2026 at 2:01 PM
Congrats to Leigh grp members Valerie Bruyr & Dan Tetlow (neither on @bsky.app), consultants shorturl.at/2n5dQ for the new BBC Bitesize GCSE Chemistry series that's now live! www.bbc.co.uk/bitesize/gui... Featuring @bigmanny1.bsky.social (10 followers @bsky.app; TikTok+Insta >3.6M! 😂) Great job!🧪
April 27, 2026 at 12:40 PM
Reposted by Dave Leigh
The U.S. administration has dismissed the National Science Board, the body that advises the National Science Foundation.

Read the full statement from AAAS: https://bit.ly/4eHKg1whttps://bit.ly/4eHKg1w
April 26, 2026 at 5:57 PM
Hi folks, I’m on the ballot for President of the @rsc.org. I’m standing because we live in post-truth times where respect for expertise & evidence can no longer be taken for granted. It’s time to push back. If that resonates, RSC members can vote here www.mi-vote.com/secure/rsc 🗳️🙏
www.mi-vote.com
April 25, 2026 at 1:50 PM
In @cp-chem.bsky.social tinyurl.com/3vmzatbh Maria @benjaminoacid.bsky.social @stefanborsley.bsky.social Fabio & @zashbridge.bsky.social show that driving a receptor out-of-equilibrium through chem fueling allows quantification of binding at concentrations where receptor is saturated at equilibrium😃
Out-of-equilibrium sensing with a chemically fueled molecular machine
Biological adaptive receptors are driven out of equilibrium to change the detectable range of analyte concentrations. Here, a chemically fueled rotaxane information ratchet couples Zn(II) binding to c...
www.cell.com
March 26, 2026 at 3:35 PM
Reposted by Dave Leigh
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 16, 2026 at 6:25 PM
No time for a marmalade sandwich! 🥪 #Paddington
March 6, 2026 at 7:06 PM
Our new video, created by Stuart Jantzen (Biocinematics), depicts the original Maxwell’s Demon thought experiment 😈 tinyurl.com/3ja25xfz, the archetypal information ratchet that inspires how we design molecular motors & pumps: tinyurl.com/msn8c2an; tinyurl.com/yj53rfvm; tinyurl.com/557vcubt 👹
March 1, 2026 at 2:35 PM
Reposted by Dave Leigh
El Prof. Emilio M. Pérez es nombrado nuevo director del Instituto IMDEA Nanociencia, continuando nuestra misión de impulsar la investigación de excelencia en nanociencia y nanotecnología.

+info nanociencia.imdea.org/es/imdea-nan...
February 2, 2026 at 6:15 PM
Reposted by Dave Leigh
Our latest collaborative preprint from the group and @kilbinger-group.bsky.social is out - tinyurl.com/3bbrfyhw - we've been looking at creating stably folded, helical, and polyfluorinated transmembrane channels with rates of water transport exceeding Aquaporins. Great to see the manuscript up!
January 16, 2026 at 11:31 AM