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Oana Jurchescu

@oanajurchescu.bsky.social
224 followers 170 following 9 posts

Baker Professor of Physics at Wake Forest University jurchescu.physics.wfu.edu

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Reposted by Oana Jurchescu
Materials Research Society @materials-mrs.bsky.social · 01/12/2025
#F25MRS set your alarm early tomorrow! You don't want to miss the #MRSFellows Forum -- An inspiring look into the personal and scientific paths that have shaped the careers of the 2025 #FMRS class. View agenda and speakers 👉https://buff.ly/tUt1IyH
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Oana Jurchescu @oanajurchescu.bsky.social · 30/10/2025
👇👇👇👇👇
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Oana Jurchescu @oanajurchescu.bsky.social · 04/06/2025
We explored how noncovalent intramolecular interactions in thiophene-phenylene-thiophene polymers influence structure & performance, even inducing spontaneous chirality upon annealing. See how small changes lead to big differences in #OFETs! @manitwinkz.bsky.social pubs.acs.org/doi/full/10....
pubs.acs.org
Non-Covalent Interactions and Helical Packing in Thiophene-Phenylene Copolymers: Tuning Solid-State Ordering and Charge Transport for Organic Field-Effect Transistors
In this study, we introduce two thiophene-phenylene-thiophene (TPT) polymers designed to leverage noncovalent intramolecular interactions to regulate main-chain conformation and enhance solid-state ordering. By incorporating unsubstituted thiophene (T) or bithiophene (2T) units, we reveal striking divergence in the thermal, morphological, and optoelectronic properties of the resulting films, facilitated by these noncovalent interactions. Using a combination of computational and experimental approaches, we show that annealing yields remarkably different polymer conformations and, consequently, charge transport properties. TPT-T undergoes a significant structural transformation, adopting a more planar backbone conformation and a highly crystalline, edge-on molecular orientation. In contrast, the introduction of a single additional thiophene unit in TPT-2T leads to a more isotropic molecular orientation with a slight preference for face-on alignment, resulting in a heterogeneous film structure that hinders charge transport despite achieving tighter molecular packing. Remarkably, despite being composed of achiral components, TPT-2T develops chirality upon annealing, indicating the formation of a helical conformation. Organic field-effect transistor measurements reveal that the well-ordered alignment in annealed TPT-T films results in higher charge carrier mobility and a narrower distribution of mobility values than in TPT-2T. These findings provide critical insights into the structure–property relationships of conjugated polymers, offering guidance for optimizing molecular design and processing strategies for high-performance organic electronic materials.
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Oana Jurchescu @oanajurchescu.bsky.social · 24/04/2025
What a privilege to join President Wente, our inspiring first woman & scientist president, for a walk across the beautiful #WakeForest campus! We had a great conversation (and workout!). See if I kept up with her pace and her questions here: wakefo.rest/walkwithwente @wakeforest.bsky.social
wakefo.rest
Walk with Wente | Office of the President | Wake Forest University
To celebrate our community of inquiry, President Wente invites faculty members to share their contributions and insights with the Wake Forest community by joining her on a “Walk with Wente,” a new vid...
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Reposted by Oana Jurchescu
Fred @salsbblue.bsky.social · 22/04/2025
Starting Fall 2025, Wake Physics will offer transcripted concentrations for all majors (BA, BS, BSB). The Quantum Information Science concentration builds on PHY 343 and lets you go deeper with electives like Quantum Computing, Solid State, or Optics.
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Oana Jurchescu @oanajurchescu.bsky.social · 15/01/2025
Laser-printed perovskite films resilient to >200 Gy X-ray, blue laser, 90% RH, & 80°C for 300+ min. Stability attributed defect-tolerant microstructure. Work led by @hurriyetyuce.bsky.social, collaboration with @vaynzof.bsky.social and #WanyiNie doi.org/10.1002/aenm... @wakeforest.bsky.social
doi.org
Enabling Optoelectronics in Harsh Environments: Laser‐Printed Perovskite Films with Exceptional Stability Under Extreme Radiation, Thermal Stress, and Humidity
Laser printing enables low-cost, solvent-free fabrication of perovskite films with exceptional stability under X-ray radiation, blue laser illumination, high humidity, and thermal stress. The enhance...
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Oana Jurchescu @oanajurchescu.bsky.social · 04/12/2024
🎉 Huge congrats to Mani Makala for being a finalist for the Best Poster Award at the Fall #MRS meeting! Your hard work paid off! 👏 @wakeforest.bsky.social
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Oana Jurchescu @oanajurchescu.bsky.social · 03/12/2024
Happy #GivingTuesday! Let's spread some kindness to those who need it most. Please make a donation to The White Pig Sanctuary Farm in VA – your contribution helps provide food, shelter, and love to animals in need. Every little bit makes a difference! #compassion thewhitepig.org/get-involved
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Oana Jurchescu @oanajurchescu.bsky.social · 02/12/2024
Presentations from our group at 2024 Fall MRS: Oana Jurchescu - Dec 2, 2:00 PM Hynes 308, Stability in laser-printed perovskites Mani Makala - Dec 3, 8:00 PM Hynes Hall A, Bias stress in OTFTs Derek Dremann - Dec 4, 4:30 PM Hynes 308, Organic radiation dosimeters #MRS2024 #MRSFallMeeting
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Oana Jurchescu @oanajurchescu.bsky.social · 01/12/2024
Celebrating materials science research @WakeForest! Center for Functional Materials welcomed over 100 participants for its annual Research Day. #innovation #collaboration #ProHumanitate #materialsscience #WFU @wakeforest.bsky.social news.wfu.edu/2024/11/27/c...
news.wfu.edu
Center for Functional Materials Research Day celebrates innovation and collaboration | Wake Forest News
On a Friday afternoon, more than 100 scientists, across several disciplines, gathered to share ideas and innovations around their common interest—materials research. About 30 Wake Forest students and ...
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