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Tehshik Yoon

@tehshik.bsky.social
2.1K followers 461 following 118 posts

Professor of Chemistry, University of Wisconsin-Madison. Associate Editor, ACS Catalysis. Big ol nerd, all contexts. 🇺🇸🇰🇷🇨🇦🏳️‍🌈 (he/him/his)

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Reposted by Tehshik Yoon
Jake Yeston @jakeyeston.bsky.social · 09/04/2026
In @science.org for chemsky this week, @tehshik.bsky.social teams up with @chemguyeli.bsky.social to showcase the versatile advantages of pairing a pybox ligand with a carbazole chromophore in one molecular catalyst www.science.org/doi/10.1126/...
science.org
Modular enantioselective photocatalysts from privileged pybox scaffolds
Modern organic synthesis relies upon the availability of chiral catalysts to control the stereochemistry of bond-forming reactions. Several families of chiral catalysts have become recognized as “privileged” structures because of their notable generality ...
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Megan R. Hill @drmrhill.bsky.social · 10/11/2025
Very excited to share our recent article in JACS where we showed that we could capture mechanoradicals formed during polymer degradation and use them to grow polymers back to high MWs or prime them for depolymerization! pubs.acs.org/doi/10.1021/...
pubs.acs.org
Effective Recycling Pathways of Commodity Polymers Enabled by Mechanoradical Capture
Plastics pervade every aspect of modern life, yet effective mechanical recycling remains a major challenge. This is, in part, because of the mechanical forces that are involved in reprocessing, which break polymer chains and generate mechanoradicals, leading to a reduction in molecular weight and diminished material properties. This work introduces a robust strategy to capture and redirect these reactive intermediates, enabling value-preserving recycling pathways for widely used polymers polystyrene (PS) and poly(methyl methacrylate) (PMMA). By employing ball milling to induce chain scission, we demonstrate that mechanoradicals can be trapped by bis(butyl trithiocarbonate), yielding polymers with trithiocarbonate (TTC) end groups. Polymers degraded via ball milling showed significant reduction in molecular weight, ≈90% lower than the pristine polymers. These low molecular weight, TTC-functionalized polymers then served as macroinitiators for light-mediated controlled polymerization or, in the case of PMMA, as mediators for depolymerization under mild conditions. Chain extension of the degraded materials led to restored or increased molecular weight compared to the pristine polymers. Shear oscillatory rheology experiments revealed a recovery of entangled polymer properties, as evidenced by the reappearance of the rubbery plateau. We further showed that this “capture-and-repair” strategy is compatible with multiple cycles of degradation and chain extension, achieving repeated molecular weight recovery over three cycles. Additionally, we found that ball milling alone lowers the thermal depolymerization temperature of PMMA, enabling up to ≈44% depolymerization at 220 °C. Together, these findings highlight mechanoradical capture as a promising strategy to both enhance circularity and improve overall performance of mechanically recycled plastics.
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Nature Synthesis @natsynth.nature.com · 10/11/2025
Now online and open access: Article by Tehshik P. Yoon & co-workers @tehshik.bsky.social @uwyoongroup.bsky.social Oxygen migration into carbon–carbon single bonds by photochemical oxidation www.nature.com/articles/s44... #Chemsky
nature.com
Oxygen migration into carbon–carbon single bonds by photochemical oxidation - Nature Synthesis
Heteroatom insertions into chemically inert carbon–carbon single bonds are rare compared to their unsaturated analogues. Now, ligand-to-metal charge transfer offers a promising entry point for oxygen ...
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Tehshik Yoon @tehshik.bsky.social · 23/09/2025
Come be my newest colleague! jobs.wisc.edu/jobs/assista...
jobs.wisc.edu
Assistant Professor of Chemistry - Madison, Wisconsin, United States
Current Employees: If you are currently employed at any of the Universities of Wisconsin, log in to Workday to apply through the internal application process.Job Category:FacultyEmployment Type:Regula...
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Mark Histed @markhisted.org · 22/09/2025
The New York Times piece today about US science is terrible and wrong—in many ways. I could write a whole article about this, but as one example: “To close observers, the original crisis began well before any of this…” No. I’m a close observer of science, and this is incorrect.
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Jake Yeston @jakeyeston.bsky.social · 18/09/2025
In @science.org this week @zachwickens.bsky.social and collaborators find a way to do Z-selective elimination using thianthrenium chemistry in a versatile route to Z olefins. chemsky 🧪 www.science.org/doi/10.1126/...
science.org
Stereo-reversed E2 unlocks Z-selective C–H functionalization
The stereoselective functionalization of C–H bonds represents a central challenge in modern organic synthesis. Despite decades of innovation in C–H activation chemistry, methods for Z-selective functi...
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Tehshik Yoon @tehshik.bsky.social · 22/08/2025
Really proud of Riley's preprint on a new class of chiral Lewis acid photocatalysts. This project benefitted from a terrific collab with @chemguyeli.bsky.social chemrxiv.org/engage/chemr...
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Jeff Martell @jeffmartell.bsky.social · 14/08/2025
Excited to share our new preprint, which was years in the making! chemrxiv.org/engage/chemr... New reactions are typically developed by trial and error. How can we speed up this process? Read on to learn how we used DNA scaffolding to perform >500,000 parallel reactions on attomole scale. 1/n
chemrxiv.org
DNA-Scaffolded Ultrahigh-Throughput Reaction Screening
Discovering and optimizing reactions is central to synthetic chemistry. However, chemical reactions are traditionally screened using relatively low-throughput methods, prohibiting exploration of diver...
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Organic Division of the ACS @organicdivision.org · 25/06/2025
Last night, the 2025 Roger Adams Award recipient - Prof. Eric Jacobsen - delivered a fantastic lecture at the National Organic Symposium. Prof. John Wood provided a brilliant introduction. The award is sponsored by @OrgReactions and @OrgSynth Congratulations!
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Kramer Group at DTU @kramergroup.bsky.social · 18/05/2025
We have an open PhD position! The project involves enantioselective C-H functionalization with transition-metal catalysis +/- photocatalysis. Please share with relevant candidates or apply here: efzu.fa.em2.oraclecloud.com/hcmUI/Candid... Deadline: July 6 Link to our recent work in comments.
efzu.fa.em2.oraclecloud.com
PhD scholarship in Organic Chemistry and Enantioselective Homogeneous Catalysis - DTU Chemistry
A fully-funded 3-year PhD position in organic chemistry, C-H functionalization, and homogeneous enantioselective metal catalysis under the supervision of Associate Professor Søren Kramer is available ...
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Kjell Jorner @valencekjell.com · 13/05/2025
We are recruiting a PhD student in machine learning for photocatalysis! In this project, we will collaborate with the group of Frank Glorius @gloriusgroup.bsky.social to develop predictive tools for energy-transfer-catalyzed photocycloadditions. Reposts appreciated! jobs.ethz.ch/job/view/JOP...
jobs.ethz.ch
PhD position in machine learning for photocatalysis
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Chemistry Nomad @okanaganchemist.bsky.social · 12/05/2025
Spring 25' saw the kick-off of our first #MerckChemistry Symposium at UW-Madison. We were blessed with beautiful weather and an amazing day of science. Special thanks to our hosts @tehshik.bsky.social & Shannon Stahl, Scott and Emma as Merck organizers, and the entire UW Chem and ChemEng community!
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Cathleen Crudden @cathleencrudden.bsky.social · 27/04/2025
Some good news for a change–Queen's has set aside funds to assist any students who have lost their visa status in the US and are looking to continue their graduate studies. Please share widely. www.queensu.ca/grad-postdoc...
queensu.ca
Queen’s Special U.S. Doctoral Recruitment Initiative | School of Graduate Studies and Postdoctoral AffairsDown arrowDown arrowDown arrowDown arrowDown arrowDown arrowDown arrowDown arrowDown arrowDown...
Queen’s University is a globally engaged, research-intensive institution dedicated to attracting and supporting exceptional PhD students who will significantly advance our research mission.
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Hisham Zerriffi @hishamzerriffi.bsky.social · 07/04/2025
U.S. citizen interested in grad studies at the University of British Columbia in Vancouver (Canada)? Grad programs are re-opening applications of US programs for one week. With expedited decisions. U.S. Applicant Week: www.grad.ubc.ca/us-applicant... #AcademicChatter #Canada #GradSchool
grad.ubc.ca
US Applicant Week
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Bach Lab | TUM @bach-lab.bsky.social · 14/03/2025
Check out Audrey's work on ortho photocycloaddition reaction cascades published in JOC! #Photochemistry #WomeninSTEM 💡👩‍🔬 pubs.acs.org/doi/full/10....
pubs.acs.org
Intramolecular ortho Photocycloaddition of 4-Substituted 7-(4′-Alkenyloxy)-1-indanones and Ensuing Reaction Cascades
4-Substituted 7-(4′-alkenyloxy)-1-indanones were prepared from the respective substituted aryl propanoic acids and subjected to UV-A irradiation (λ = 350 or 366 nm). While the 4-chloro compound was directly converted at λ = 366 nm into a pentacyclic product (47% yield) by a three-photon cascade process, the oxygenated substrates reacted in trifluoroethanol at λ = 350 nm by a two-photon cascade, involving an ortho photocycloaddition, a thermal disrotatory ring opening, and a [4π] photocyclization (six examples, 67–82% yield). An ensuing photochemical di-π-methane rearrangement of the latter products was achieved by irradiation at λ = 350 nm in toluene (five examples, 36–70% yield). The diastereoselectivity of the reaction was probed employing a chiral 1-indanone with a stereogenic center at carbon atom C3. 1-Indanones with a 4-hexenyloxy side chain [(E)- or (Z)-configured] at carbon atom C7 served to interrogate the stereospecifity of the reaction.
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Eric Topol @erictopol.bsky.social · 28/02/2025
Insightful review @nature.com by @linseymarr.bsky.social www.nature.com/articles/d41...
nature.com
Researchers overlooked airborne diseases for centuries — then COVID-19 changed everything
A fascinating exploration of microbes that can travel through the air reveals how the pandemic marked a turning point for a crucial research field.
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Bach Lab | TUM @bach-lab.bsky.social · 25/02/2025
Interested in stereochemical editing by photochemically triggered hydrogen atom transfer? Check out our latest review by Maxi 💡🧪 pubs.acs.org/doi/10.1021/...
pubs.acs.org
Stereochemical Editing at sp3-Hybridized Carbon Centers by Reversible, Photochemically Triggered Hydrogen Atom Transfer
ConspectusMillions of chiral compounds contain a stereogenic sp3-hybridized carbon center with a hydrogen atom as one of the four different substituents. The stereogenic center can be edited in an increasing number of cases by selective hydrogen atom transfer (HAT) to and from a photocatalyst. This Account describes the development of photochemical deracemization reactions using chiral oxazole-annulated benzophenones with a bonding motif that allows them to recognize chiral lactam substrates by two-point hydrogen bonding. The backbone of the catalysts consists of a chiral azabicyclo[3.3.1]nonan-2-one with a U-shaped geometry, which enables substrate recognition to occur parallel to the benzoxazole part of the aromatic ketones. The photocatalysts facilitate a catalytic photochemical deracemization of several compound classes including hydantoins, N-carboxyanhydrides, oxindoles, 2,5-diketopiperazines, and 4,7-diaza-1-isoindolinones. In addition, if more than one stereogenic center is present, the editing delivers a distinct diastereoisomer upon the appropriate selection of the respective photocatalyst enantiomer. The chiral photocatalysts operate via the benzophenone triplet that selectively abstracts a properly positioned hydrogen atom in exclusively one of the two substrate enantiomers. The photochemical step creates a planar carbon-centered radical and erases the absolute configuration at this position. While returning HAT to the same position would likely recreate the stereogenic center with the same absolute configuration, spectroscopic and quantum chemical studies suggest that the hydrogen atom is delivered from the photocatalyst to a heteroatom that is in conjugation to the radical center. Two scenarios can be distinguished for the hydrogen atom shuttling process. For hydantoins, N-carboxyanhydrides, and 4,7-diaza-1-isoindolinones, the back HAT occurs to a carbonyl oxygen atom or an imine-type nitrogen atom which is not involved in binding to the catalyst. For oxindoles and 2,5-diketopiperazines, a single lactam carbonyl group in the substrate is available to accept the hydrogen atom. It is currently assumed that back HAT occurs to this group, although the carbonyl oxygen atom is involved in hydrogen bonding to the catalyst. In comparison to the former reaction pathway, the latter process appears to be less efficient and more prone to side reactions. For both cases, an achiral enol or enamine is formed, which delivers upon dissociation from the catalyst statistically either one of the two stereoisomers of the substrate. Since only one substrate enantiomer (or diastereoisomer) is processed, a high enantioselectivity (or diastereoselectivity) results. Even though the editing is a contra-thermodynamic process, the described decoupling of a photochemical and a thermal step allows the usage of a single catalyst in loadings that vary between 2.5 and 10 mol % depending on the specific mode of action.
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Lipshultz Group @lipshultzsbu.bsky.social · 19/02/2025
🚨 NEWS 🚨 Super excited to share that our first paper has been published in @angewandtechemie.bsky.social, describing our development of Vitamin B6-inspired amino acid photodecarboxylation! doi.org/10.1002/anie...
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Susannah Coote @suscoote.bsky.social · 15/02/2025
📢 Royal Society Newton International Fellowship applications open now, to host international postdocs in the UK! Are you interested in a fellowship in photochemistry, heterocycles and/or strained molecules? Email me with your CV & details of your research interests 👍 royalsociety.org/grants/newto...
royalsociety.org
Newton International Fellowships | Royal Society
This fellowship is for non-UK scientists who are at an early stage of their research career and wish to conduct research in the UK.
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Scott Bagley @bagphos.bsky.social · 23/01/2025
Really excited to see this amazing work out in ChemRxiv from our #ChemCollab between the @uwyoongroup.bsky.social @tehshik.bsky.social and #PfizerChemistry Photochem-mediated oxygen migration into sp3 bonds delivering small ring ethers as well as an OH - methylene transposition #ChemSky 1/
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Tehshik Yoon @tehshik.bsky.social · 22/01/2025
Friends, I'm pleased to draw your attention to two new preprints today describing complementary heteroatom insertion reactions into saturated carbocycles, one from our group and another from the Knowles laboratory. chemrxiv.org/engage/chemr... chemrxiv.org/engage/chemr...
oxygen and nitrogen insertion reactions into saturated carbocycles
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Yoon Group @uwyoongroup.bsky.social · 22/01/2025
Up today on the Rxiv! Cade, Caitlin, Matt, Felix, Desiree, and Scott utilize photochemical oxidation for oxygen migration into C–C single bonds chemrxiv.org/engage/chemr...
chemrxiv.org
Oxygen Migration into Carbon–Carbon Single Bonds by Photochemical Oxidation
The editing of organic molecules through single-atom modifications is an enabling capability for medicinal chemistry. While several examples of single-atom insertions into the carbon–carbon double bon...
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Tehshik Yoon @tehshik.bsky.social · 21/01/2025
What will really annoy chemists is the Texas carbon….
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Lisa McElwee-White @mcelweewhite.bsky.social · 14/01/2025
Hey Organic Asst Profs coming up for tenure (and your senior colleagues) — it is nomination season for the ACS DOC Young Academic Investigators Symposium. Deadline is Feb. 6, 2025. The website has last year’s date 😳 but the other info is right. #ChemSky www.organicdivision.org/meetingsuppo...
organicdivision.org
Academic Young Investigator's Symposium (YAS) - ACS Division of Organic Chemistry
The Academic Young Investigator's Symposium is for Asst. Prof.'s who are entering their 5th or 6th years and who have not yet been considered for tenure.
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Weix Group @weixgroup.bsky.social · 13/01/2025
Our work on Ni-Catalyzed Cross-Electrophile Coupling of Aryl Triflates with Alkyl Halides is now online at JACS @pubs.acs.org. Congrats to Seoyoung, Matt, Ben, and Daniel! doi.org/10.1021/jacs.4c14769
doi.org
Nickel-Catalyzed Cross-Electrophile Coupling of Aryl Triflates with Alkyl Halides: Mechanism-Informed Design of More General Conditions
Aryl triflates make up a class of aryl electrophiles that are available in a single step from the corresponding phenol. Despite the known reactivity of nickel complexes for aryl C–O bond activation of phenol derivatives, nickel-catalyzed cross-electrophile coupling using aryl triflates has proven challenging. Herein, we report a method to form C(sp2)–C(sp3) bonds by coupling aryl triflates with alkyl bromides and chlorides using phenanthroline (phen) or pyridine-2,6-bis(N-cyanocarboxamidine) (PyBCamCN)-ligated nickel catalysts. The scope of the reaction is demonstrated with 38 examples (61 ± 14% average yield). Mechanistic studies provide a rationale for the conditions used and a roadmap for further applications of cross-electrophile coupling. First, the rate of alkyl radical generation is controlled by maintaining the majority of alkyl halide as the alkyl chloride, which is unreactive, and utilizing a dynamic halide exchange process to adjust the concentration of reactive alkyl bromide or iodide. Second, the challenge of using electron-rich aryl triflates appears to be due to off-cycle transmetalation to form unproductive aryl zinc reagents. The optimal PyBCamCN ligand together with LiCl avoids this deleterious transmetalation step.
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Stu Cantrill @stuartcantrill.com · 20/12/2024
Another @natureportfolio.bsky.social Chief Editor opening; closing date Dec 31 👇
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Eli Marris @marriseli.bsky.social · 16/12/2024
My first publication from the Schomaker group is now out on JACS! Elucidating the Mechanism of Electrooxidative Allene Dioxygenation: Dual Role of Tetramethylpiperidine N-Oxyl (TEMPO). Congrats to Ken, Fede, and the rest of the team :) @uwmadscience.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Elucidating the Mechanism of Electrooxidative Allene Dioxygenation: Dual Role of Tetramethylpiperidine N-Oxyl (TEMPO)
The cumulated π system of a nonsymmetric allene contains three distinct unsaturated carbons that imbue it with unique reactivity toward radicals as compared to its alkene and alkyne counterparts. Desp...
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Weix Group @weixgroup.bsky.social · 12/12/2024
We're incredibly proud to say that our review of Cross-Electrophile Coupling: Principles, Methods, and Applications in Synthesis is now online and open access at Chem Rev! Congrats to the team for this labor of love (and data!) pubs.acs.org/doi/10.1021/...
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Scott Bagley @bagphos.bsky.social · 11/12/2024
4a/ #12DaysofPapers #ChemSky. This 2024 favorite is a #PfizerChemistry collab with the Weix (Wisconsin) and Sigman (Utah) labs towards computationally designed ligands for Ni-catalyzed cross electrophile coupling. Improvements in selectivity up to 300% #ChemCollabs
pubs.acs.org
Computational Methods Enable the Prediction of Improved Catalysts for Nickel-Catalyzed Cross-Electrophile Coupling
Cross-electrophile coupling has emerged as an attractive and efficient method for the synthesis of C(sp2)–C(sp3) bonds. These reactions are most often catalyzed by nickel complexes of nitrogenous liga...
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Tehshik Yoon @tehshik.bsky.social · 11/12/2024
My group would like you to know we're doing new lab photos.
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Yoon Group @uwyoongroup.bsky.social · 09/12/2024
Happy holidays from our lab to yours!
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Tehshik Yoon @tehshik.bsky.social · 04/12/2024
Is Chemistry Bumper Cars still a thing?
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Stache Lab @stache-lab.bsky.social · 25/11/2024
Wouldn’t it be great if we could recycle plastic waste using sunlight? Now we can! Check out our latest work on recycling post-consumer polystyrene plastic! pubs.acs.org/doi/epdf/10.... #chemsky #bluesci #Sustainability #plastic #pollution @acspublications.bsky.social @stache-lab.bsky.social
pubs.acs.org
Recycling of Post-Consumer Waste Polystyrene Using Commercial Plastic Additives
You have to enable JavaScript in your browser's settings in order to use the eReader.
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Tehshik Yoon @tehshik.bsky.social · 26/11/2024
Per usual, I apologize on behalf of my institution, which is the checkboxiest. Do please know that (1) you don't have to fill them out, and (2) we won't look at them if you do.
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Tehshik Yoon @tehshik.bsky.social · 21/11/2024
Wait, why is it “skeet” and not “bleat”?
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André K. Isaacs @drdre4000.bsky.social · 19/11/2024
I had dinner with chemistry legends last night 🥰
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Tehshik Yoon @tehshik.bsky.social · 19/11/2024
New paper: I love this project because it spans three dissertations (Sam, Steven, and Tahoe) and because it gives me the opportunity to remind folks that the di-pi-methane reaction should by all rights be called the Zimmerman rearrangement. pubs.acs.org/doi/10.1021/...
pubs.acs.org
Development of a Highly Enantioselective Catalytic Di-π-methane Rearrangement
The di-π-methane (DPM) rearrangement is an important organic photorearrangement that converts 1,4-diene-containing compounds to vinyl cyclopropanes, often resulting in extensive, synthetically valuabl...
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Jon Beves @jonbeves.bsky.social · 17/11/2024
RACI Organic24 kicks off in Adelaide with @tehshik.bsky.social taming the stereochem of photochemical reactions! #ozchem #chemsky
Prof Yoon
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Tehshik Yoon @tehshik.bsky.social · 07/11/2024
New paper! Ellie, Zoe, and Rodrigo have a chiral Brønsted acid catalyzed strain-releasing [2π+2σ] photocycloaddition up at JACS today. This project is the result of a collaboration with GSK and Corteva through UW's new SynCat center. pubs.acs.org/doi/10.1021/...
pubs.acs.org
Enantioselective [2π + 2σ] Photocycloaddition Enabled by Brønsted Acid Catalyzed Chromophore Activation
Bicyclo[2.1.1]hexanes have emerged as valuable scaffolds for the design of new pharmaceutical and agrochemical active ingredients. These structures can be efficiently synthesized via [2π + 2σ] photocy...
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Tehshik Yoon @tehshik.bsky.social · 05/11/2024
At what point do I stop pretending I am going to get anything at all done today?
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Tehshik Yoon @tehshik.bsky.social · 30/10/2024
I tried to vote early at the student union during my lunch break, but the line stretched down the hallway and was about an hour deep. These kids are all right.
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Tehshik Yoon @tehshik.bsky.social · 10/10/2024
대박! What a time for Korean culture! Congratulations to Han Kang, the second Korean Nobelist ever!
nytimes.com
Han Kang Is Awarded Nobel Prize in Literature
The South Korean author, best known for “The Vegetarian,” is the first writer from her country to receive the prestigious award.
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Jake Yeston @jakeyeston.bsky.social · 07/10/2024
Also in SCIENCE this week, Robert Phipps’ group epimerizes diols by pairing photoredox and chiral H-atom abstraction catalysts chemsky 🧪 www.science.org/doi/10.1126/...
science.org
A chiral hydrogen atom abstraction catalyst for the enantioselective epimerization of meso-diols
Hydrogen atom abstraction is an important elementary chemical process but is very difficult to carry out enantioselectively. We have developed catalysts, readily derived from the Cinchona alkaloid fam...
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Jake Yeston @jakeyeston.bsky.social · 07/10/2024
In SCIENCE this week, Yoonsu Park’s group uses photochemistry to replace O with N in heterocycles chemsky 🧪 www.science.org/doi/10.1126/...
science.org
Photocatalytic furan-to-pyrrole conversion
The identity of a heteroatom within an aromatic ring influences the chemical properties of that heterocyclic compound. Systematically evaluating the effect of a single atom, however, poses synthetic c...
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Tehshik Yoon @tehshik.bsky.social · 04/10/2024
Thank you Lisa. This is one of the few articles I've read on the study that doesn't pull its punches.
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Erica De Bruin @edebruin.bsky.social · 03/10/2024
NEW article: We conducted a randomized experiment our institution, a selective U.S. liberal arts college, to evaluate two interventions designed to reduce gender bias in qualitative student evaluation comments. Spoiler: neither worked! www.tandfonline.com/eprint/PNMQJ...
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Scott Bagley @bagphos.bsky.social · 16/09/2024
Save the Date!! Oct 17 @ 12 noon ET @ACSOrganic Virtual Symposium featuring Tianning Diao @diaogroupNYU @nyuchemistry & Shannon Stahl @Stahl_Lab @UWMadisonChem Watch for free at: YouTube: orgn.link/watch Zoom: orgn.link/vs-zoom Thank you to @BeyondCCHF for hosting #ChemSky
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Chemjobber @chemjobber.bsky.social · 14/09/2024
314 Action Fund is a PAC supporting scientists who are running for office. They are doing a "Scientists for Harris" Zoom call. RSVP here: 314action.org/rsvp-harris/
Photo of Kamala Harris looking up and facing left 

Text of invite:

SCIENTISTS FOR HARRIS

JOIN 314 ACTION & SPECIAL GUESTS GOV. TONY EVERS (WI), REP. LAUREN UNDERWOOD (IL-14), GEORGE WHITESIDES (CA-27), & DR. MICHAEL MANN DIRECTOR CENTER FOR SCIENCE, SUSTAINABILITY & THE MEDIA

WEDNESDAY, SEPTEMBER 18: 7 PM ET/4 PM PT RSVP HERE

Host Committee in Formation

Corey Goodman PhD & Marcia Barinaga PhD, Rothrock Family, Paul Milgrom PhD, Walter Gilbert PhD, Michael DeSimone & Susan Hughes M.D., Joel Clement, Tomas Torres, Gil Ommen M.D., Ben Feinberg PhD, Eric & Kris Brewer, Terry & Mary Kelly, Jeffrey Weiss PhD, Gary Molander PhD, David Shambroom PhD, Dave & Luann Abrahams, Janet Zwanziger M.D & Ron Zwanziger M.D., Pendred Noyce M.D. Chris Schaffer PhD, Tyler Ruggles PhD

All solicitations of funds in connection with this event are by 314 Action Fund and not by Gov. Tony Evers, George Whitesides, or Rep. Lauren Underwood.

PAID FOR BY 314 ACTION FUND, 314ACTION.ORG, NOT AUTHORIZED
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Celeste Labedz @celestelabedz.bsky.social · 29/08/2024
Lots of transitions in academia:
New Yorker cartoon showing a man at a desk speaking to a woman, captioned "At this point in your career, your only possible promotion is to management, where you will stop doing the work you love and use a skill set you don't have and we don't teach."
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Tehshik Yoon @tehshik.bsky.social · 23/08/2024
"Dr. Arcidiacono said the numbers were consistent with what he had predicted at trial would happen if race were taken out of the equation. He was surprised, he said, that M.I.T. had not taken steps to soften the blow, like changing the weight it gave to test scores."
nytimes.com
At M.I.T., Black and Latino Enrollment Drops Sharply After Affirmative Action Ban
Asian American students made up almost half of the 2028 class — the first admitted since the end of affirmative action.
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