
Qianming Lin
@QianmingLin
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Assistant professor at School of Biomedical Engineering, Sun Yat-sen University. molecular engineer and ukulele amateur. All views are my own.
Shenzhen, China
Joined March 2016
cool wrinkling design!.
Our latest work in generating curved 2D sheets using the macrocycle side chain crowding effect. Now you don't need a curved molecule to create a curve sheet. Just wrinkle it. @J_A_C_S
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Congratulations, Chenfeng 🥳🥳🥳🫡🫡🫡 @ChenfengKe.
Great to have Prof. Chenfeng Ke (Washington University in St. Louis) at Kyoto Univ. as a Zen-ichi Yoshida Lectureship IOCF speaker. Thanks Chenfeng, super cool 3D-printing materials based on supramolecular chemistry!
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RT @enxu_liu: Happy to share this mini review published in @CCSChemistry which summarizes the work of cyclodextrins in the Stoddart group.….
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(3/3) (III) Our approach is simple, efficient, and scalable—we even built our own semiconductor cooling system to produce these sponges on a larger scale.
pubs.acs.org
Effective management of severe hemorrhage remains a critical clinical challenge, necessitating advanced hemostatic materials capable of rapid fluid absorption and enhanced coagulation. Here, we...
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(2/3) (II) By carefully tweaking surface chemistry and pore features, we uncovered how sponge-blood interactions work across different scales.
pubs.acs.org
Effective management of severe hemorrhage remains a critical clinical challenge, necessitating advanced hemostatic materials capable of rapid fluid absorption and enhanced coagulation. Here, we...
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(1/3) Happy to share our lab's first publication in @ChemMater @ACSPublications on hemostatic sponges made by ice-templating!.Here's what's cool about this work:.(I) We found something unexpected: sponges that absorb blood fast (~1s) stop bleeding quickly.
pubs.acs.org
Effective management of severe hemorrhage remains a critical clinical challenge, necessitating advanced hemostatic materials capable of rapid fluid absorption and enhanced coagulation. Here, we...
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RT @Hai_Qian: Thrilled to share our 1st paper in @angew_chem! We introduce a cyclic pulling geometry to tailor force transmission within a….
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a new method to generate HcOF materials! Congratulations, Chenfeng!.
Check out our latest research on using free radical polymerizations for HcOF synthesis. Explore the advantages and challenges of this new method: "Porous Organic Crystals Crosslinked by Free-Radical Reactions." in Chemical Communications
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Ke Group’s excited dynamic HcOFs. Congratulations, Chenfeng!.
We've advanced our record in creating ultradynamic HcOFs with isoreticular expansion @J_A_C_S. These porous crystals can expand threefold in just one minute! Read more:
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RT @kaiyangyin: A thorough guide for creating bioinspired hierachical materials through freezing, with @ugkw21 @h4n5h4n5 and Francisco Garc….
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RT @zhigangsuo: Watch Steve Jobs talking about how a great idea becomes a great product. I’m thinking, of course, about how a great idea b….
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RT @KangCaiChem: Just by replacing the benzene moiety of azocalix[4]arene with a naphthyl group, such a small change can elevate aqueous re….
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Great to have Prof. Dongsheng Guo.@Guo_Group to visit us at SYSU today! He gave a wonderful talk about biomedical supramolecular materials on our Guangming Medicine&Engineering Forum. Today we learned a lot about calixarene's host-guest chemistry for biomedical applications!
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This week I invited #dartmouthalumni @DartmouthChem old friends Dr. @shaobaqian and Dr. Sirun Yang to Shenzhen. Thanks for their warm visiting and wonderful talks at Sun Yat-sen University. So nice to talk to old friends and recall the memories back to the small town😂😂
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RT @ChenfengKe: Excited to share our collaboration with @niu_group & Schmidt-Rohr team! Presenting HcOF-50 in @angew_chem: Using ortho‐alk….
onlinelibrary.wiley.com
A single-crystalline ortho-alkoxy-benzamide directed hydrogen-bonded crosslinked organic framework (HCOF-50) has been synthesized for BF3 adsorption and demonstrates a record-high capacity of...
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