News

November 12th 2023: Fancy counting: our new paper now on arxiv

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How much can you learn about a system just by counting particles? We explore this question in our new paper on arxiv.
Here, in a collaboration with Sophie Marbach (Sorbonne, Paris) and Brennan Sprinkle (Colorado School of Mines, USA) we combine experiments, simulation and theory to show have careful statistical analysis of number fluctuations can be used to probe details of self and collective particle dynamics

 

November 1st 2023: Welcome to new group members!

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Halloween 2023 Group Pumpkin Carving!

We have had a busy and exciting few months as five new members have joined the team.
In September, we welcomed Jessica Carder to the group as our new PDRA, alongside our Part II students Mohammed Ahmed, Lucas Ipkendanz and Jon Starkey. And in October, James Tett started his DPhil in the group. 
Read more about their research here
We were also very lucky to have two excellent summer interns – Tina Chou and Poramas Komonvasee – join us during the break. We wish them all the best of luck with the rest of their studies.

 

July 1st 2023: Poster Presentation Prize for Anna

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Congrats Anna!

Huge congratulations to Anna for being awarded a prize for her poster presentation ‘Cation dependence of noise induced by polymers in nanopores‘ at the recent Faraday Discussions meeting on Iontronics in Edinburgh, UK.

 

June 10th 2023: Our new nanopore chip featured in photo competition!

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Anna's "Snowflake" Chip

Many congratulations to Anna for having her artistic image of our nanopore device featured as part of the Chemistry Department's photo competition. Read more here.

 

October 14th 2022: Congratulations Dr. Stuart Knowles!

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Big congratulations to Stuart for passing his PhD viva with (very) minor corrections. After two months helping to set up the lab in Oxford, Stuart will soon start a new job in London. We wish him all the best for the future!

 

September 2nd 2022: Thorneywork Group moves to Oxford

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From September 2022 the group will have a new home at the Physical and Theoretical Chemistry Laboratory, University of Oxford. We’re sad to leave so many friends and colleagues in Cambridge but excited for the adventures ahead!

 

May 19th 2022: Mapping flow fields with optical tweezers – new paper out in Rev. Sci. Inst.

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Great to see some collaborative work with Jeffrey Mc Hugh finally published (also here on arXiv).  Here, we describe a method to map flow fields outside nanopores in their full three-dimensional glory by exploiting optical tweezers and some neat particle tracking techniques. 

 

January 11th 2022: ERC Starting Grant success

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Exciting news for the new year! Our group has been awarded an ERC Starting Grant! The project aims to investigate the origins of noise and fluctuations in soft systems driven out of equilibrium using a unique combination of state-of-the-art experimental model systems. These will exploit a huge range of techniques including colloids, microfluidics, optical tweezers, nanopores, nanoparticles and DNA nanotechnology. Alice discusses more about the project here.
To tackle this ambitious project we will soon be recruiting a diverse and interdisciplinary team. Watch this space for more details…

 

September 24th 2022: Polymer adsorption in nanopores paper out now in PRL

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Our recent ArXiv paper exploring how careful analysis of ionic current fluctuations can be used to probe polymer adsorption in nanopores has a new home in PRL! Super excited to see this appear as the result of a fantastic cross-disciplinary collaboration. 
https://journals.aps.org/prl/abstract/10.1103/PhysRevLett.127.137801

 

August 5th 2021: Alice awarded a Royal Society University Research Fellowship

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I’m absolutely delighted to be one of the 37 new University Research Fellows appointed by the Royal Society this year. This amazing award will support me in pursuing the exciting new experiments we are planning in the group, aiming to understand fundamental aspects of fluctuations and transport in soft matter systems.

 

January 12th 2021: Noise of polymer adsorption paper now on arXiv

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Our new paper investigating the noise signatures associated with passive adsorption of polymers in nanopores is now available on arXiv. Here we combine detailed analysis of ionic current traces, Quartz Crystal Microbalance measurements and simulations to explore how characteristic noise in the ionic current trace reflects passive adsorption of polymers to the pore surface.

 

May 4th 2020: Publications are like buses… new papers in Science Advances and Phys. Rev. E

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In a very exciting week three new papers have now appeared online!  
In Science Advances, ‘Direct detection of molecular intermediates from first-passage times’ discusses a method to reveal details of energy landscapes from analysis of dynamic properties. Some exciting experimental collaborations with the Bayley group (University of Oxford) and Ritort group (University of Barcelona) and with theorist Anatoly Kolomeisky (Rice University) allowed us to demonstrate how our method can be used to count intermediate states across a diverse range of systems – colloids, biological nanopores and DNA hairpins- which differ in their timescales, length scales and interactions.  
‘Generalized network theory of physical two-dimensional systems’ (online here) also considers how a single analysis links many different systems (here from molecular materials, to colloids to geopolitical regions (!)), this time with respect to the structure of networks describing them. Exciting to have contributed our data to this paper from the Wilson group (University of Oxford). 
Finally, bringing the focus back to colloids, ‘Long-time self-diffusion in quasi-two-dimensional colloidal fluids of paramagnetic particles’ explores the effect (or non-effect…) of hydrodynamic interactions in colloidal monolayers of particles with long-range interactions.  More fascinating work with collaborators Nima Siboni and Jürgen Horbach.

 

December 3rd 2019: New paper in Nanotechnology

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Our new paper looking at the noise in rectifying and non-rectifying nanopores has just appeared online.
Here,  we studied the behaviour of conical glass nanopores as components in ionic circuits, showing that while net conduction is bulk dominated, the low frequency noise is surface dominated. 
Stuart F. Knowles, Ulrich F. Keyser and Alice L. Thorneywork‘Noise properties of rectifying and non-rectifying nanopores’, Nanotechnology, 31 (10), 10LT01 (2019)

 

September 18th 2019: Summer Conferences

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Alice presented work on analysing first passage time distributions to uncover energy landscapes in talks at the 5th International Soft Matter Conference in Edinburgh (June 2019) and the ‘Transport Phenomena in Complex Environments’ conference in Erice, Sicily (September 2019). 

 

February 26th 2019: Alice’s work featured in the Oxford Scientist Magazine

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Following on from her RSC SMTG young scientist award, the Oxford Scientist Magazine has featured some of Alice’s work on the 2D melting transition. Read her article here: https://oxsci.org/studying-the-2d-melting-transition/

 

January 7th 2019: Alice wins 2019 SMTG Young Scientist Award

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Alice has won the 2019 RSC Statistical Mechanics and Thermodynamics Group (SMTG) Young Scientist Award for her experimental work on the two-dimensional melting of colloidal hard spheres (PRL 118, 158001 (2017)). The prize is awarded for ‘exceptional contributions in the field of statistical mechanics and thermodynamics’ and was awarded in recognition of her experimental resolution of a decades-old debate. She will give her Award Lecture during the Annual Meeting of the SMTG group in Manchester, 9-11 January 2019.

 

July 9th 2018: New paper in Mol. Phys. ‘Structure factors in a two-dimensional binary colloidal hard sphere system’ now online

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New paper in Mol. Phys. ‘Structure factors in a two-dimensional binary colloidal hard sphere system’ now online

 

February 15th 2018: New paper on 2D melting published in Journal of Physics: Condensed Matter

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New paper on 2D melting published in Journal of Physics: Condensed Matter out now!