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Daniel J Preston

@danpreston.bsky.social
140 followers 186 following 130 posts

Assistant professor, director of the PI Lab (pi.rice.edu) at Rice University; previously postdoc in Whitesides group at HarvardCCB, PhD at MIT MechE.

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Daniel J Preston @danpreston.bsky.social · 12/03/2026
Check out our work on electrification of heating with new high-performance carbon nanotube fiber (CNTF) heaters! This video features Applied Physics PhD candidate Monisha Vijay Kumar, lead author and member of the Wehmeyer lab in Rice Mechanical Engineering. www.youtube.com/watch?v=XrXQ...
youtube.com
Carbon Nanotube Fiber Heaters Could Transform Industrial Heating
YouTube video by Smalley-Curl Institute | Rice University
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Daniel J Preston @danpreston.bsky.social · 12/03/2026
Great job by Rick Fontenot leading our work on sheet-based polymeric heat exchangers! Check out the paper for really nice visuals - we're also excited about the real-world impact, reducing capital cost by 2-4x compared to the state of the art. doi.org/10.1002/advs...
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Daniel J Preston @danpreston.bsky.social · 26/02/2026
Glad this work is now published! We unlock new applications in the energy, food, and medical industries where management and repellency of hot liquids has been a longstanding challenge. Story and video: news.rice.edu/news/2026/he... Research paper: pubs.acs.org/doi/10.1021/...
pubs.acs.org
Scalable Hot-Water-Repellent Superhydrophobicity via Thermal Insulation
Superhydrophobic surfaces, which rely on a combination of surface texture and chemistry, often lose their repellent behavior when contacted by hot water (≳40 °C) because the impinging hot water replaces the requisite air layer within the surface texture via evaporation and recondensation. In contrast to previous approaches targeting this condensation-induced failure mode that rely on intricately tailored surface structures or complex chemical treatments, we present a scalable approach based on thermal design: the multilayered insulated superhydrophobic (MISH) coating mitigates condensation-induced failure by preventing heat transfer. Superhydrophobicity is retained at impinging water temperatures up to 90 °C, with durability demonstrated via long-term (>1 million impacts) droplet impingement experiments. We explain the mechanism for this approach with a detailed thermal model; the model reveals that the underlying physical behavior is self-similar across coating parameters and impinging fluid temperatures. The MISH coating accommodates curved geometries and large surfaces, and it is over 4 orders of magnitude less expensive than cleanroom-nanofabricated alternatives, indicating promise for practical use in the energy sector, chemical processing, and the food and medical industries.
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Daniel J Preston @danpreston.bsky.social · 21/07/2025
Check out our paper published in @aaas.org Science Advances! This work reveals the impact of curing on the strength of silicone elastomer devices, yielding soft robotic actuators with 50% higher curvature and 3D-printed parts with 200% better interlayer adhesion. www.science.org/doi/10.1126/...
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Daniel J Preston @danpreston.bsky.social · 18/07/2025
Congratulations Dr. Marquise Bell on defending your PhD thesis in @ricegradschool.bsky.social Mechanical Engineering today! Dr. Bell is the fourth PhD graduate from the PI Lab. He will move to the @upenn.edu this fall as a Provost's Postdoctoral Fellow working with Prof. Kevin Turner. Great job!
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Reposted by Daniel J Preston
Nature Portfolio @natureportfolio.nature.com · 09/03/2025
Haptic devices enable communication via touch, augmenting visual and auditory displays. A Review in Nature Reviews Bioengineering discusses multi-sensory wearable haptics, focusing on body-worn devices that convey multiple types of cutaneous haptic feedback. go.nature.com/3DoLRJo 🔒
This is figure 3, which shows applications of wearable haptic devices in various domains.
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Daniel J Preston @danpreston.bsky.social · 06/03/2025
Check out our article on multi-sensory haptic wearables in Nature Reviews Bioengineering! Led by @marcieomalley.bsky.social with @dlipomi.bsky.social and other collaborators. @riceneuro.bsky.social @ricegradschool.bsky.social www.nature.com/articles/s44...
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Daniel J Preston @danpreston.bsky.social · 18/02/2025
Excited to share our paper in @cp-cellrepphyssci.bsky.social! Building on a fundamental study of bond strength and bursting in textile-based devices, we programmed local failure in a fuse that enables selection and sequencing of tasks with one pressure input. news.rice.edu/news/2025/ha...
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Daniel J Preston @danpreston.bsky.social · 17/12/2024
New work from @ricePILab in collaboration with researchers at @EdinburghUni and the Wehmeyer lab here at @RiceEngineering shows mask-enabled topography contrast patterning with implications for phase change heat transfer and thermal rectification: doi.org/10.1021/acs.langmuir.4c03891
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Daniel J Preston @danpreston.bsky.social · 17/12/2024
New work led by Trevor Shimokusu in collaboration with researchers at the The University of Edinburgh and the Wehmeyer lab here at Rice shows mask-enabled topography contrast patterning with implications for phase change heat transfer and thermal rectification: doi.org/10.1021/acs....
doi.org
Mask-Enabled Topography Contrast on Aluminum Surfaces
Patterned solid surfaces with wettability contrast can enhance liquid transport for applications such as electronics thermal management, self-cleaning, and anti-icing. However, prior work has not explored easy and scalable blade-cut masking to impart topography patterned wettability contrast on aluminum (Al), even though Al surfaces are widely used for thermal applications. Here, we demonstrate mask-enabled topography contrast patterning and quantify the resulting accuracy of the topographic pattern resolution, spatial variations in surface roughness, wettability, drop size distribution during dropwise condensation, and thermal emissivity of patterned Al surfaces. The method uses blade-cut vinyl mask templates and a commercially available lacquer resin that serves as a polymer resist against etching. Programmable mask templates enable complex patterning of wettability and emissivity contrast with feature sizes down to ∼1.5 mm. As-fabricated patterned samples show a water contact angle (θ) contrast from <5° to 80° between etched and smooth zones, while patterned samples that are further coated with a hydrophobic promoter show θ contrast between 150° and 120° on etched and smooth zones, respectively. In addition to measuring this wettability contrast via contact angle goniometry, we use condensation visualization experiments to study the spatially controlled condensate morphologies and drop size distributions. These condensation studies demonstrate enhanced droplet shedding on the superhydrophobic regions of striped patterned surfaces compared to homogeneous superhydrophobic surfaces. Motivated by the role of thermal radiation in many phase change processes, we use infrared thermography to map topography-mediated thermal emissivity (ε) contrast between etched (ε ≈ 0.65) and smooth (ε ≈ 0.26) regions. Thus, our study provides a route for researchers to readily create complex and scalable topography-patterned Al surfaces for potential applications in vapor chamber thermal rectification, radiative cooling condensation heat transfer, and high-temperature Leidenfrost or film boiling processes.
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Daniel J Preston @danpreston.bsky.social · 05/12/2024
Great new perspective in Science Robotics out this week! Take a look at this article by @quisebell.bsky.social to learn more, and work toward making positive changes with intentionality.
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Daniel J Preston @danpreston.bsky.social · 19/08/2024
In new work from @ricePILab in @ACS_Langmuir, we go beyond the Washburn relationship: inverse design &amp; additive manufacturing produce wicking materials with atypical fluid propagation for low-cost diagnostics, thermal management, and more. pubs.acs.org/doi/full/10.1021/acs.l…...
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Daniel J Preston @danpreston.bsky.social · 16/08/2024
Two covers from @RiceMECH in the same issue of @Advintellsyst! Our work from @ricePILab on sheet-based fluidic diodes and collaborative work on multiscale haptics led by @MarcieOMalley's MAHI lab were both selected for covers in the July issue. engineering.rice.edu/news/rice-labs…...
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Daniel J Preston @danpreston.bsky.social · 07/08/2024
Great job by @Fayeyap25 defending her PhD thesis in @RiceMECH! Her work applied reaction kinetics to understand virus inactivation, elastomer curing, and manufacturing of soft robots, and she will start her own lab as a faculty member at @uhmanoa in January.
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Daniel J Preston @danpreston.bsky.social · 02/08/2024
Congrats to our @ricePILab members starting tenure-track faculty positions this year! @ranoop93 at @Tulane, @Zhen_Skyii at @UT_Dallas, and @Fayeyap25 at @uhmanoa - we took a photo in our uni t-shirts before our summer lab social. Looking forward to following their careers!
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Daniel J Preston @danpreston.bsky.social · 25/07/2024
Congratulations @Zhen_Skyii on successfully defending your PhD thesis in @RiceMECH today! One of the first three members of @ricePILab, Zhen's work has given us a new understanding of the impact of surface contamination, and also how to avoid it.
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Daniel J Preston @danpreston.bsky.social · 24/07/2024
Nice coverage from @RiceUNews today on our recent work deploying soft foams for fluidic sensing and computation! The paper, led by @ranoop93 with @Zhen_Skyii, @Fayeyap25, and @rasheed_rawand, is out now in Advanced Functional Materials @AdvSciNews. news.rice.edu/news/2024/foam-fluidi…...
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Daniel J Preston @danpreston.bsky.social · 11/07/2024
Happy to share our work led by @ranoop93 on fluidic resistors made from soft porous foams for embedded sensing and control in #softrobots and #wearables, out today in @WileyVCH Advanced Functional Materials: doi.org/10.1002/adfm.202403379
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Daniel J Preston @danpreston.bsky.social · 03/05/2024
Is it time to take another look at the osmotic heat pipe? Rick @thefontknows thinks so. Check out his review paper co-authored with our @AFResearchLab collaborators: doi.org/10.1016/j.applthermaleng.20…
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Daniel J Preston @danpreston.bsky.social · 02/05/2024
We show fluidic diodes made from lightweight flexible sheets, including #textiles, in a paper in @Advintellsyst published last week. Beyond simply enforcing one-way flow, they enable #logic, encoding, and rectification. doi.org/10.1002/aisy.202300785
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Daniel J Preston @danpreston.bsky.social · 25/04/2024
Nice job by @Fayeyap25 winning Best Poster at the MRS Spring Meeting #S24MRS in the Advances in Polymer-based Soft Matter for Additive Manufacturing symposium! She covered new unpublished work as well as our recent @CellRepPhysSci paper: doi.org/10.1016/j.xcrp.2024.101849
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Daniel J Preston @danpreston.bsky.social · 24/04/2024
Congrats @Zhen_Skyii on winning the @RiceMECH Research Excellence Award! Pictured here giving a special seminar to the department in recognition of the award.
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Daniel J Preston @danpreston.bsky.social · 12/04/2024
Congrats @irf_zob on your successful MS defense in @RiceMECH - the third from @ricePILab this spring!
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Daniel J Preston @danpreston.bsky.social · 03/04/2024
Another successful MS defense in @RiceMECH from a @ricePILab member this spring - congratulations, Evan!
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Daniel J Preston @danpreston.bsky.social · 25/03/2024
Nice job today by @ricePILab's Adam Broshkevitch defending his MS thesis in @RiceMECH today!
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Daniel J Preston @danpreston.bsky.social · 19/03/2024
Our work in @CellRepPhysSci, led by @Fayeyap25, shows that elastomer curing speed doubles with each 10 °C increase in temperature while retaining mechanical properties. Story by @RiceUNews: news.rice.edu/news/2024/rice-resear…
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Daniel J Preston @danpreston.bsky.social · 05/03/2024
Elastomer curing speed doubles with each 10 °C increase in temperature while retaining mechanical properties! To quantitatively understand how to speed up soft device/robot manufacturing, check out our work led by @Fayeyap25 in @CellRepPhysSci: doi.org/10.1016/j.xcrp.2024.101849
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Daniel J Preston @danpreston.bsky.social · 05/03/2024
The @RiceMECH NHTL and @ricePILab show Teflon AF–coated nanotextured aluminum surfaces for "jumping droplet" thermal rectification in our new paper published today: onlinelibrary.wiley.com/doi/10.1002…
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Daniel J Preston @danpreston.bsky.social · 08/02/2024
Congrats @rasheed_rawand on the publication of your paper on multiplexed inertial coalescence filters with @ricePILab! Rawand's company, Helix Earth Technologies (currently at @GreentownLabs in #Houston), is hiring for multiple engineering roles. doi.org/10.1080/02786826.2024.23058…
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Daniel J Preston @danpreston.bsky.social · 27/10/2023
Join our @RiceMECH department as faculty! We have a job posting here: apply.interfolio.com/135155
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Daniel J Preston @danpreston.bsky.social · 13/10/2023
The @ricePILab had a great time at @SocEngScience #SES2023! We had five talks and two posters featuring @Fayeyap25, Vi Vo, @quisebell, and @JUMETkinmecrazy.
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Daniel J Preston @danpreston.bsky.social · 08/10/2023
Our recent #NSFfunded collaborative work with @MarcieOMalley in @RiceMECH, published in @Device_CP, has been featured on @NSF Science Now! The lead author @JUMETkinmecrazy is presenting on this work Tuesday afternoon at @SocEngScience #SES2023. www.youtube.com/watch?v=4iZsEwRYjUM
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Daniel J Preston @danpreston.bsky.social · 06/10/2023
Projects by @Fayeyap25 and @quisebell of @ricePILab have been covered in back-to-back issues of @cenmag! Check out their talks at @SocEngScience #SES2023 next week, and meet them at the inaugural #SES2023 Future Faculty Symposium on Oct 10 organized by @KejieZhao and @nanshulu.
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Daniel J Preston @danpreston.bsky.social · 25/08/2023
Congrats @rasheed_rawand on defending your PhD in @RiceMECH today! Our first @ricePILab PhD graduate has been awarded a two-year @CRIstartup fellowship to continue to develop his company: www.helixearthtechnologies.com
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Daniel J Preston @danpreston.bsky.social · 15/08/2023
Glad to have gotten this nice recognition (and breakfast tacos!) this morning, thanks to @riceccd and the students who nominated me.
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Daniel J Preston @danpreston.bsky.social · 17/07/2023
Our lab's new paper led by @Zhen_Skyii is out now in @NanoLetters! We keep surfaces clean by storing them in hierarchically micro-nanotextured ultraclean containers, which act as a getter for contaminants. pubs.acs.org/doi/10.1021/acs.nanole…
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Daniel J Preston @danpreston.bsky.social · 14/04/2023
My co-organizer @VaibhavUnhelkar just kicked off the Texas Robotics Symposium #TEROS at @RiceUniversity - looking forward to a great day of presentations and discussion! teros-texas.github.io
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Daniel J Preston @danpreston.bsky.social · 07/04/2023
Had a great time speaking to hundreds of K-12 students for the keynote at this year's Alabama Robotics Competition organized by @jgrayatua and @alabama_cs. Lots of excitement about #robotics in the room! outreach.cs.ua.edu/robotics-contest
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Daniel J Preston @danpreston.bsky.social · 30/03/2023
Congrats @ricePILab undergraduate researchers @ColterDecker and Vi Vo on being awarded @NSF #GRFP fellowships! @RiceMECH @RiceEngineering
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Daniel J Preston @danpreston.bsky.social · 01/02/2023
Both @Fayeyap25 and @ranoop93 had their work featured in the most recent issue of @ASMEdotorg Mechanical Engineering magazine, with stories on each of their papers only separated by a few pages!
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Daniel J Preston @danpreston.bsky.social · 08/11/2022
Recently got the back cover of @AdvSciNews Advanced Science for our #necrobotics paper - congrats @Fayeyap25 and the @ricePILab team! onlinelibrary.wiley.com/doi/10.1002…
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Daniel J Preston @danpreston.bsky.social · 08/11/2022
Friends in the US: don’t forget to #vote today if you haven’t already!
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Daniel J Preston @danpreston.bsky.social · 01/11/2022
Had a great time visiting my alma mater, @UofAlabama, last week for the @UA_MechEngg departmental seminar! I talked about @ricePILab projects led by @Fayeyap25, Rachel, and @ranoop93.
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Daniel J Preston @danpreston.bsky.social · 13/10/2022
Congrats @Fayeyap25 on being selected for the Rising Stars in Mechanical Engineering workshop at @Stanford! Thanks @GuLabStanford and Allison Okamura for organizing! mech.rice.edu/news/rice-doctoral-st…
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Daniel J Preston @danpreston.bsky.social · 28/09/2022
Hybrid analog-digital fluidic control for #soft #robots is featured in this story by @RiceUNews along with a great video of @RiceMECH undergrad @ColterDecker explaining our work: news.rice.edu/news/2022/fluidic-cir…
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Daniel J Preston @danpreston.bsky.social · 27/09/2022
Combined analog and digital fluidic circuits simplify the control of #soft #robots without any electronics! Our paper in @PNASNews was led by @RiceMECH &amp; @ricePILab undergrad researcher @ColterDecker in collaboration with @HarvardCCB. www.pnas.org/doi/10.1073/pnas.22059…
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Daniel J Preston @danpreston.bsky.social · 27/09/2022
Our department @RiceMECH is hiring! Please share with anyone who may be interested - link below. #academicjobs #facultyjobs apply.interfolio.com/114276
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Daniel J Preston @danpreston.bsky.social · 25/08/2022
Now in @ScienceAdvances: our lightweight, wearable textile-based system harvests and stores pneumatic energy during walking to power assistive devices. @ricePILab @RiceEngineering #wearable #robotics www.science.org/doi/10.1126/sciadv.…
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Daniel J Preston @danpreston.bsky.social · 23/08/2022
Check out our work in @PNASNews on logic-enabled textiles: electronics-free garments with memory, decision-making, and comfortable human interaction! @ranoop93 @RiceEngineering #wearable #robotics www.pnas.org/doi/10.1073/pnas.22021…
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Daniel J Preston @danpreston.bsky.social · 10/08/2022
Nice start to the week for @Fayeyap25 and I talking about our #necrobotics work! onlinelibrary.wiley.com/doi/10.1002…
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