Sign in

Damon de Clercq

@dmdeclercq.bsky.social
187 followers 151 following 31 posts

Swiss Excellence Postdoctoral Scholar in the @feldmannlab.bsky.social @EPFL. PhD with @schmidtim.bsky.social @UNSW (He/him) 🇿🇦🇳🇿

PostsRepliesMedia
Reposted by Damon de Clercq
Tim Schmidt @schmidtim.bsky.social · 18/05/2026
Structural exciton localization drives efficient solid-state sensitized triplet fusion upconversion www.nature.com/articles/s41...
nature.com
Structural exciton localization drives efficient solid-state sensitized triplet fusion upconversion - Nature Photonics
An absolute photon upconversion efficiency of 8.2% is demonstrated using a liquid triplet fusion medium that behaves as solid on excitonic timescales. The findings may drive higher efficiencies in nan...
142
Reposted by Damon de Clercq
Sascha Feldmann @feldmannlab.bsky.social · 26/02/2026
Check out our latest in @acs.org ACS Energy Letters: Damon explores how #chirality may impact singlet fission and triplet fusion in molecular semiconductors as a new twist for efficient photon management, boosting performance of solarcells, displays and more. #OpenAccess pubs.acs.org/doi/10.1021/...
pubs.acs.org
The Impact of Chirality on Singlet Fission and Triplet Fusion: A Molecular Twist for Photon Management
Chirality has recently emerged as a new means to profoundly impact the properties of organic semiconductors for spin-optoelectronic applications. Yet, a clear mechanistic understanding of chiral structure–property relationships remains absent to date, particularly for photon interconversion processes such as singlet exciton fission and triplet fusion. In this perspective, we highlight recent work that investigates chiral structures for these processes. We discuss the various ways in which chirality can impact such conversion processes and suggest ways to leverage it to improve photon management for both energy applications and quantum information science.
093
Reposted by Damon de Clercq
Stuart Batten @sbattenresearch.bsky.social · 09/12/2025
Richard Robson always had very small research groups and limited, sporadic funding. This has never been better illustrated than by the acknowledgement slides to the Nobel lectures of Robson, Kitagawa, and Yaghi (only 1 of 4 slides shown below). We punched above our weight! #ozchem #NobelPrize
0206
Reposted by Damon de Clercq
Suzie Sheehy (she/her) @suziesheehy.bsky.social · 24/11/2025
In case you’re interested, some stats here. australiainstitute.org.au/post/in-2023...
australiainstitute.org.au
In 2023-24 Australians paid more than 4 times on HECS/HELP than gas companies did on PRRT
In 2023-24 tax from the PRRT was less than an quarter the amount raised by HECS/HELP debts repayments.
021
Reposted by Damon de Clercq
Prashant Kamat @kamat.bsky.social · 08/09/2025
Viewpoint by @schmidtim.bsky.social and collaborators Singlet Fission Provides a Scalable Pathway to High Efficiency Silicon Photovoltaics | ACS Energy Letters pubs.acs.org/doi/full/10....
062
Reposted by Damon de Clercq
Prashant Kamat @kamat.bsky.social · 29/08/2025
Latest work from @schmidtim.bsky.social Tayebjee and collaborators Singlet Fission c-Si Solar Cells: Beyond Tetracene | ACS Energy Letters pubs.acs.org/doi/10.1021/...
pubs.acs.org
Singlet Fission c-Si Solar Cells: Beyond Tetracene
Singlet fission photovoltaics enable the extraction of two electron–hole pairs from each higher-energy photon while leveraging a mature technology such as crystalline silicon (c-Si) as the underlying cell. Significant steps have been made in the development of singlet fission silicon photovoltaics, but all examples reported to date use tetracene as the singlet fission material. Tetracene is photochemically unstable and therefore unsuitable for commercial applications. Here we demonstrate singlet fission-derived triplet exciton transfer to c-Si from photochemically stable dipyrrolonaphthyridinedione (DPND) derivatives, with a thin layer of tin oxide as the passivation layer. An overlayer of poly(3,4-ethylenedioxythiophene) polystyrenesulfonate (PEDOT:PSS) was found to improve interface passivation further. These observations demonstrate that singlet fission photovoltaic devices can be made using stable and commercially viable materials.
0103
Reposted by Damon de Clercq
Tim Schmidt @schmidtim.bsky.social · 29/08/2025
Our team at UNSW Science and Engineering is making progress with singlet fission solar cells. pubs.acs.org/doi/10.1021/... @unswchemistry.bsky.social
pubs.acs.org
Singlet Fission c-Si Solar Cells: Beyond Tetracene
Singlet fission photovoltaics enable the extraction of two electron–hole pairs from each higher-energy photon while leveraging a mature technology such as crystalline silicon (c-Si) as the underlying ...
085
Reposted by Damon de Clercq
Tim Schmidt @schmidtim.bsky.social · 23/06/2025
Latest upconversion research from our labs: chemrxiv.org/engage/chemr...
chemrxiv.org
Solid-state sensitized liquid-chromophore triplet fusion upconversion
Photochemical upconversion has several potential applications in optoelectronics. However, there is yet to be demonstrated a rational approach to high efficiencies in nanoscale solid state devices. He...
032
Damon de Clercq @dmdeclercq.bsky.social · 03/07/2025
Honored to have been included in the excellent lineup of young scientists to present their work at the Lindau Nobel Laureate Meetings. Thanks to the SIEF-AAS fellowship for the support. #lino25 The Australian Academy of Science UNSW School of Chemistry UNSW
040
Reposted by Damon de Clercq
Sascha Feldmann @feldmannlab.bsky.social · 26/06/2025
Excited to share in @nature.com today: Broadband transient full-Stokes luminescence spectroscopy - detecting the most subtle changes in light polarization over time with unprecedented sensitivity. Grateful for the team that made this possible!😊 www.nature.com/articles/s41... #chirality #light
nature.com
Broadband transient full-Stokes luminescence spectroscopy - Nature
A high-sensitivity, broadband, transient, full-Stokes spectroscopy setup is demonstrated, which can detect quickly varying small signals from chiral emitters.
04114
Reposted by Damon de Clercq
Frances Separovic @francesbiophys.bsky.social · 23/06/2025
Started the day with an informative tour of Bayer Pharmaceuticals Berlin and went onto Leibniz-Forschungsinstitut für Molekulare Pharmakologie (FMP), where our early career researchers presented short #chemistry talks and then went onto tour the #nmr and high throughput screening facilities
022
Damon de Clercq @dmdeclercq.bsky.social · 22/06/2025
Made it to Berlin for the first leg of the SIEF-AAS Lindau fellowship looking forward to a week of visiting labs and industry along with the Australian delegates! #LINO25
050
Damon de Clercq @dmdeclercq.bsky.social · 19/05/2025
A box of Koalas arrived today from the Australian Academy of Science. The countdown to #LINO25 has begun!
040
Reposted by Damon de Clercq
Tim Schmidt @schmidtim.bsky.social · 05/04/2025
New #crazywavefunction project paper. We use a tesselation of the 3Nd wave function to isolate the energies of bonding electrons. The C-C bond is just like H2! #chemsky #theochem pubs.acs.org/doi/10.1021/...
pubs.acs.org
Energetics of Covalent Bonding from Wave Function Tiles
The mechanism of covalent bonding has been debated for a century, with proponents variously championing kinetic or potential energy as the driver. While detailed calculations have revealed the bonding...
172
Damon de Clercq @dmdeclercq.bsky.social · 01/04/2025
🤩
010
Damon de Clercq @dmdeclercq.bsky.social · 24/03/2025
Excited to join the Australian delegation for the 74th Lindau Nobel Laureate meeting! Thank you @unswchemistry.bsky.social, @schmidtim.bsky.social for all the support during my PhD! #auschem #realtimechem #LINO25 www.science.org.au/news-and-eve...
science.org.au
Ten Australian scientists to attend the 2025 Lindau Nobel Laureate
Top row from left: Mr Damon de Clercq; Dr Elena Gorenskaia; Ms Made Ganesh Darmayanti; Dr James Watson; Ms Jess Algar. Bottom row: Dr Wenchao Duan; Dr Tuan Sang Tran; Dr Saheli Biswas; Dr Ken Aldren
3143
Reposted by Damon de Clercq
Sascha Feldmann @feldmannlab.bsky.social · 19/02/2025
Check out our latest review on Chiral Light-Matter Interactions in Solution-Processable Semiconductors, now out in 𝙉𝙖𝙩𝙪𝙧𝙚 𝙍𝙚𝙫𝙞𝙚𝙬𝙨 𝘾𝙝𝙚𝙢𝙞𝙨𝙩𝙧𝙮! @natrevchem.bsky.social A huge team effort led by our @zacharyvanorman.bsky.social ! www.nature.com/articles/s41... Free access link: rdcu.be/eagsq
nature.com
Chiral light–matter interactions in solution-processable semiconductors - Nature Reviews Chemistry
Endowing chirality onto solution-processable semiconductors unlocks new bounds for their spin and optoelectronic properties. This Review discusses the synthesis, properties, characterization methods, ...
1255
Damon de Clercq @dmdeclercq.bsky.social · 07/02/2025
Enroute to NZ for #AMN11 and a post thesis submission holiday.
000
Damon de Clercq @dmdeclercq.bsky.social · 31/01/2025
PhD done!
010
Reposted by Damon de Clercq
UNSW School of Chemistry @unswchemistry.bsky.social · 31/12/2024
Sad to report that our esteemed colleague, Sir Fraser Stoddart, passed away yesterday in Melbourne, surrounded by family. His legacy is the 90+ academics he trained who continue to push the boundaries of human knowledge. Vale Fraser.
13510
Damon de Clercq @dmdeclercq.bsky.social · 23/12/2024
Thesis writing over the summer ain’t too bad in Sydney.
040
Reposted by Damon de Clercq
Nicholas Sloane @nicholassloane.bsky.social · 17/12/2024
Very excited to announce my first ever first author paper is out now in JPCC! We use Density Functional Theory to look at the interface between perovskite and rubrene to see what role surface termination plays pubs.acs.org/doi/10.1021/...
pubs.acs.org
Electronic Structure at the Perovskite/Rubrene Interface: The Effect of Surface Termination
Perovskite films have rapidly emerged as leading active materials in optoelectronic devices due to their strong optical absorption, high carrier mobility, and ease of fabrication. While proving to be ...
061
Damon de Clercq @dmdeclercq.bsky.social · 30/11/2024
Great to catch up with old friends and to make some new ones at #aucaos. Time to catch up on some sleep.
010
Reposted by Damon de Clercq
UNSW School of Chemistry @unswchemistry.bsky.social · 27/11/2024
Another great paper from @njrijs.bsky.social group. @oscarhlw.bsky.social shows off his drawing (and chemistry) skills! #chemsky
071
Reposted by Damon de Clercq
Marina Freitag @proffreitag.bsky.social · 26/11/2024
Exciting opportunity! Join our team @newcastleuni.bsky.social for a fully funded PhD in Indoor Photovoltaic Devices & Materials Integration for IoT Applications. Explore cutting-edge research at the intersection of energy & tech! 🌱⚡️ www.findaphd.com/phds/project... #PhD #IoT #IndoorSolar
findaphd.com
PhD studentship in Indoor Photovoltaic Devices and Materials Integration for IoT Applications at Newcastle University on FindAPhD.com
PhD Project - PhD studentship in Indoor Photovoltaic Devices and Materials Integration for IoT Applications at Newcastle University, listed on FindAPhD.com
0137
Damon de Clercq @dmdeclercq.bsky.social · 24/11/2024
Rare for me to be in the office on a Sunday but I had the opportunity to present our recent work on SF at Soochow University.
200
Damon de Clercq @dmdeclercq.bsky.social · 22/11/2024
Had a good time at @unswchemistry.bsky.social Christmas party last night. Hosted at the original site of the School! @schmidtim.bsky.social gave an excellent history lesson on over 100 years of chemistry at UNSW. The School began in 1879 and predates the establishment of Australia (1901).
052
Reposted by Damon de Clercq
Bryan Kudisch @bkudisch.bsky.social · 14/11/2024
Alright since a critical mass of photochemists officially joined it was about time to try and make a photochemistry/spectroscopy starter pack; hopefully this is a good start, feel free to reach out to be added! #chemsky go.bsky.app/Cyibs8f
244315
Damon de Clercq @dmdeclercq.bsky.social · 15/11/2024
Good day to join Bluesky! #fluoresencefriday
040