Linic Lab
@LinicLab
Research group of Prof. Suljo Linic (@linicsu) at @UMich. Research interests include thermal, electro, photoelectro and plasmonic catalysis. Student-run account
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2025 AIChE Annual Meeting (@ChEnected @aiche_cre) begins tomorrow in Boston, MA 🌇🏠! Make sure you check out the talks given by our awesome group members!
Spectacular dissertation defense by *Dr.* Han-Ting Chen! Han-Ting was a source of joy in the group and will be greatly missed. We wish you the best in your career!
Check out Chenggong's paper on the use of machine learning 🤖 and molecular dynamics ⚛️ to model the catalytic stability 🔥 of oxide-supported metal nanoparticles in @NatureCatalysis!
New paper (rdcu.be/eIEO3) in @NatureCatalysis used first-principles neural network MD and interpretable ML to uncover simple predictive models for the stability of metal nanoparticles on oxide supports. We used the model to identify sinter-resistant supports for Pt.
Reactive Chemical Environments Control Charge Carrier Selectivity and Photovoltage at Nanoparticle Electrocatalyst/Semiconductor Junctions in Solar Water Splitting | Journal of the American Chemical Society @UMichResearch @UMich @LinicLab @linicsu pubs.acs.org/doi/10.1021/ja…
Many desired reactions lack catalytic solutions. Co-optimizing membrane–catalyst functionalities at molecular level could improve performance. New article in @NatChemEng (@UMichChE) nature.com/articles/s4428… examine the integration strategies, focusing on shale-gas conversion.
Check out Ben's (@benjww) paper in @ACSCatalysis showcasing CatMiner 🐈: an LLM-based tool to extract and analyze data from heterogeneous catalysis literature!
New paper in @ACSCatalysis on the Use of Large Language Models for Extracting and Analyzing Data from Heterogeneous Catalysis Literature describing an approach to rapidly screen through a large body of literature with the aid of LLM (@UMichChE) pubs.acs.org/doi/full/10.10…
New paper with colleagues from @UMichChE on Distinctive Kinetic Signatures of Surface Segregation Processes in Bimetallic Nanoparticle Catalysis describing how kinetic features of a probe reaction change due to the reaction-induced segregation pubs.acs.org/doi/full/10.10…
We are headed ✈️ to Atlanta 🍑 for #NAM29! Seven of our group members will be giving oral presentations (see information below). Looking forward to a great conference! @NAM29NACS
Probing Spatial Energy Flow in Plasmonic Catalysts from Charge Excitation to Heating: Nonhomogeneous Energy Distribution as Fundamental Feature of Plasmonic Chemistry | JACS @LinicLab @linicsu @UMich #EnergyFlow #Plasmonic #ChargeExcitation #Catalysis pubs.acs.org/doi/10.1021/ja…
Latest from Suljo Linic @linicsu group Consequences of Annealing on Metal–Insulator–Semiconductor Water Splitting Photoelectrocatalysts | ACS Energy Letters pubs.acs.org/doi/10.1021/ac…
Big congratulations to *Dr. Aarti Mathur* for a successful full house thesis defense! 📔 Aarti has been instrumental during her time here and she will be deeply missed 🥲
Make sure to check out Aarti (@Aarti__Mathur) and Ahmet's (@theahmetsert) paper on the analysis of critical physical and chemical phenomena in photoelectochemical interfaces! 💧🎛️🔍
In a new paper in @ACSEnergyLett we discuss how electrocatalyst/semiconductor interface impacts the performance of solar water-splitting photo-electro-catalysts | ACS Energy Letters pubs.acs.org/doi/full/10.10…
Congratulations to first-year students Ben Walls, Jeanne Zhang, Jordana Mazer and Clare Martin for passing their Doctoral Candidacy Exams!
Congrats to Aarti for being awarded the prestigious Rackham Predoctoral Fellowship! 📚
In a new paper in @ACSEnergyLett we discuss how electrocatalyst/semiconductor interface impacts the performance of solar water-splitting photo-electro-catalysts | ACS Energy Letters pubs.acs.org/doi/full/10.10…
Make sure to check out Rawan and James's paper on overcoming limitations in propane dehydrogenation 🛢️ by a membrane/catalyst reactor 🛠️system! @ScienceMagazine @ACSCATLDivision @UMichChE
New paper on coupling propane dehydrogenation and hydrogen oxidation catalysis through a hydrogen-permeable membrane to exceed thermodynamic limits for propane dehydrogenation and generate heat to drive the endothermic dehydrogenation reaction. | Science science.org/doi/10.1126/sc…
New paper on coupling propane dehydrogenation and hydrogen oxidation catalysis through a hydrogen-permeable membrane to exceed thermodynamic limits for propane dehydrogenation and generate heat to drive the endothermic dehydrogenation reaction. | Science science.org/doi/10.1126/sc…
Wonderful defense by newly minted *Dr.* James Wortman! Thank you for your inspiring leadership in the group over the years. We're proud of you 🙌🏼
James is defending his thesis this Thursday at 10 am! Here is the Zoom link for alumni & friends who want to tune in: umich.zoom.us/j/98338449628 passcode: methane
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