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Younan Xia
Researcher at The Wallace H. Coulter Department of Biomedical Engineering
Publications - 974
Citations - 192658
Younan Xia is an academic researcher from The Wallace H. Coulter Department of Biomedical Engineering. The author has contributed to research in topics: Nanocages & Catalysis. The author has an hindex of 216, co-authored 943 publications receiving 175757 citations. Previous affiliations of Younan Xia include Washington University in St. Louis & University of Texas at Dallas.
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Metal-Enhanced Near-Infrared Fluorescence by Micropatterned Gold Nanocages.
Andrea Camposeo,Luana Persano,Rita Manco,Yi Wang,Yi Wang,Pompilio Del Carro,Chao Zhang,Zhi-Yuan Li,Zhi-Yuan Li,Dario Pisignano,Younan Xia +10 more
TL;DR: NIR-MEF substrates based on Au nanocages micropatterned with a tight spatial control are demonstrated, demonstrating the dependence of the fluorescence enhancement on the distance between the nanocage and the radiating dipoles and the modified radiation and absorption rates of the emitting molecules.
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New insights into the growth mechanism and surface structure of palladium nanocrystals
Byungkwon Lim,Hirokazu Kobayashi,Pedro H. C. Camargo,Lawrence F. Allard,Jingyue Liu,Younan Xia +5 more
TL;DR: In this paper, a systematic study of the growth mechanism for Pd nanobars synthesized by reducing Na2PdCl4 with Lascorbic acid in an aqueous solution in the presence of bromide ions as a capping agent is presented.
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Facile synthesis of five-fold twinned, starfish-like rhodium nanocrystals by eliminating oxidative etching with a chloride-free precursor.
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Large‐Scale Synthesis of Uniform Silver Nanowires Through a Soft, Self‐Seeding, Polyol Process.
Yugang Sun,Younan Xia +1 more
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Generation of Electrospun Nanofibers with Controllable Degrees of Crimping Through a Simple, Plasticizer‐Based Treatment
Wenying Liu,Justin Lipner,Christine H. Moran,Liangzhu Feng,Xiyu Li,Stavros Thomopoulos,Younan Xia,Younan Xia +7 more
TL;DR: Electrospun nanofibers with controllable degrees of crimping are fabricated by simply exposing the samples to a plasticizer at preset shrinkage ratios to mechanically mimic native tendon tissue and better protect tendon fibroblasts under uniaxial strains.