Jinhu Dou
@JinhuDou
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Assistant Professor of DMSE, Peking University
Peking University
Joined May 2017
On behalf of Amanda @amorri28 and myself @ShustovaLab - MOF-2026 in New Orleans🎷 #MOF2026🎷- save the dates! Please send us organization suggestions and cannot wait to see you again! Thank you @ZhaoGroupNUS @9thMOF2024 - it was great!😊 Repost is appreciated... 😊
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We'll need an even bigger table in New Orleans! #MOF2026
@DincaGroupMIT - nice to see new faces and catch up with established people!😊! Thank you, Mircea, for organizing such a great event, and @JinhuDou for the financial support and talk today! 😊@ParkLab_POSTECH @9thMOF2024
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Perfect talk by @NobuhiroYanai, fantastic @JPdaCheerleader, @gagliardi8, @OmarFarha5, @Eddaoudi_FMD3 @ChemAshlee, great event by @DincaGroupMIT, breakthroughs by @JinhuDou, @renhaodong, @UNISTMOON... phenomenal @jetsinglee and @victoriajrich... Thank you @9thMOF2024!💕
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The vast majority of metal-organic frameworks (MOFs) are insulators. Here We've created a comprehensive database of 224 conductive MOFs and applied machine learning to unveil new conductivity materials! By @JinhuDou et al. Read the paper 👉 https://t.co/NIxZghYvJG
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This is wonderful news!! Congratulations to both my mentors @GoldbergerGroup and @DincaGroupMIT on being elected as 2021 AAAS Fellows! https://t.co/c20zatBg1f
aaas.org
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Please check our latest results on MOF-based supercapacitor, GO Lamborghini🏁🏁🏁
Dual-Ion Intercalation and High Volumetric Capacitance in a Two-Dimensional Non-Porous Coordination Polymer (Dinca) @DincaGroupMIT @HarishBanda3 @JinhuDou @TianyangChen7 @ChemistryMIT
https://t.co/QMkH42A2Y1
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Mircea Dincă 2021 Blavatnik National Awards Laureate in Chemistry https://t.co/C4qtfN7Olc via @YouTube
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Excited to share our new supercapacitor work based on 2D coordination polymer. Not only absorbing N2, but also boosting N2🏎🏎🏁🏁🔥🔥
Coordination polymers behaving more like inorganic solids, and intercalating ions for enhanced capacitance. Good job @HarishBanda3 @JinhuDou @TianyangChen7!
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Coordination polymers behaving more like inorganic solids, and intercalating ions for enhanced capacitance. Good job @HarishBanda3 @JinhuDou @TianyangChen7!
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In our #NSynthCollection Published in @NatureMaterials by @DincaGroupMIT @chhendon Junliang Sun & co-authors 💠Electrically conducting 2D MOFs 🌟Controlled growth of crystals by altering the ligand structure ☄️Large single crystals of up to ~200 μm https://t.co/PPAeCdzPlj ($)
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After a wondeful journey @DincaGroupMIT, I am beyond thrilled to announce that I will be joining the DMSE, Peking University as a tenure-track Assistant Professor this fall! @PKU1898
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From among so many great finalists (and friends!), what are the chances? Looking forward to celebrate with all in NY! Thanks so much @BlavatnikAwards for rewarding curiosity-driven science!
Announcing the Laureates 🥇 🥇 🥇 of the 2021 Blavatnik National Awards! 🎉Congratulations 🎉 to Mircea Dincă @DincaGroupMIT @ChemistryMIT @MIT, Kay Tye @kaymtye @salkinstitute, Andrea Alù @andrea_alu @asrc_gc @GC_CUNY @GradCenterNews @CUNY
https://t.co/dViAYVSzTN
#blavatnik2021
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WOW!
A demonstration how does this patterning method works. Check it out on YouTube. Monolithic optical microlithography of high-density elastic circuits https://t.co/4JXQS8JgWB via @YouTube
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Nice work! Yuqing!
Excited to share our recent work of "Monolithic opitcal microlithography of high-density elastic circuits" on Science ( https://t.co/DKgWsdL8BC) and highlighted by Stanford News ( https://t.co/YcsrykuBSq). Many thanks to the support by @zhenanbao and all the collaborators!
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Excited to share our recent work of "Monolithic opitcal microlithography of high-density elastic circuits" on Science ( https://t.co/DKgWsdL8BC) and highlighted by Stanford News ( https://t.co/YcsrykuBSq). Many thanks to the support by @zhenanbao and all the collaborators!
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Using the same equipment designed to make solid silicon chips, Zhenan Bao and her team printed dense transistor arrays on skin-like materials to create stretchable circuits that flex with the body.
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