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仓钰,同济大学航空航天与力学学院副教授,主要从事基于布里渊光谱的微纳材料结构与力学性能研究,相关学术成果以第一/通讯作者发表论文在Nature Communications、AdvancedMaterials、Advanced Functional Materials、NanoLetters等国内外著名学术期刊发表论文20余篇,主持国家自然科学基金青年项目、上海市浦江人才计划、上海市领军(海外)人才计划。
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支持扩展名:.rar .zip .doc .docx .pdf .jpg .png .jpeg1. Cang, Yu; Liu, Jiaqi; Ryu, Meguya; Graczykowski, Bartlomiej; Morikawa, Junko; Yang, Shu*; Fytas, George*; On the origin of elasticity and heat conduction anisotropy of liquid crystal elastomers at gigahertz frequencies; Nature communications,13(1),2022;
2. Cang,Yu;Lee, Jaejun; Wang, Zuyuan; Yan, Jiajun;Matyjaszewski, Krzysztof; Bockstaller,Michael R*; Fytas, George*; TransparentHybrid Opals with Unexpected Strong Resonance‐Enhanced Photothermal Energy Conversion; Advanced Materials,33(2),2004732,2021;
3. Cang,Yu#; Wang, Zuyuan#; Bishop, Camille; Yu, Lian; Ediger, Mark D*; Fytas, George*; Extreme elasticity anisotropy in molecular glasses, Advanced Functional Materials,30(23),2001481,2020;
4. Cang, Yu; Liu, Bohai; Das, Sudatta; Xu, Xiangfan; Xie, Jingli; Deng, Xu; Fytas, George*; Surface contacts strongly influence the elasticity and thermal conductivity of silica nanoparticle fibers; Physical Chemistry Chemical Physics,23(6) 3707-3715,2021;
5. Cang, Yu; Sainidou, Rebecca; Rembert, Pascal; Magnabosco, Giulia; Still, Tim; Vogel, Nicolas; Graczykowski, Bartlomiej; Fytas, George*; Origin of the AcousticBandgaps in Hypersonic Colloidal Phononics: The Role of the Elastic Impedance; The Journal of Physical Chemistry B,126(34),6575-6584,2022;
6. Cang, Yu*; Jin, Yabin; Djafari-Rouhani, Bahram; Fytas, George; Fundamentals, progress and perspectives on high-frequency phononic crystals,Journal of Physics D: Applied Physics,55, 193002, 2022;
7. Cang, Yu; Hu, Wenlong; Zhu, Dalei; Yang, Lulu; Hu, Chaojie; Yuan, Yiwen; Wang, Fangxin; Yang, Bin; In situ thermal ablation repair of delamination in carbon fiber-reinforced thermosetting composites, Energies,15,196927,2022;
8. Hu, Wenlong; Sun, Zijie; Yang, Lulu; Hu, Chaojie; Zhang, Shuzheng; Wang, Fangxin; Yang, Bin; Cang, Yu*; Interfacial Strengthening and Self-Monitoring in Carbon Fiber-ReinforcedComposites via Carbon Nanotube-Based Damage Sensors, Nanomaterials,12(21),3717,2022;
9. Hu,Wenlong; Sun, Zijie; Yang, Lulu; Zhang, Shuzheng; Wang, Fangxin; Yang, Bin; Cang, Yu*; Structural Health Monitoring of Repairsin Carbon-Fiber-Reinforced Polymer Composites by MWCNT-Based Multiscale Sensor;Energies,15(22),8348,2022;
10. Wang,Zuyuan#;Cang,Yu#; Kremer, Friedrich; Thomas, Edwin L;Fytas, George; Determination of the complete elasticity of Nephila pilipes spider silk; Biomacromolecules,21(3),1179-1185,2020.
11. Midya J#, Cang Y#, Egorov SA, Matyjaszewski K, Bockstaller MR, Nikoubashman A, Fytas G. Disentangling the Role of Chain Conformation on the Mechanics of Polymer Tethered Particle Materials. Nano Letters. 2019, 19(4), 2715-2722.
12. Cang Y, Reuss AN, Lee J, Yan J, Zhang J, Alonso-Redondo E, Sainidou R, Rembert P, Matyjaszewski K, BockstallerMR, Fytas G. Thermomechanical properties and glass dynamics of polymer-tethered colloidal particles and films.Macromolecules. 2017, 50(21), 8658-8669.
13. Ryu M, Cang Y, Wang Z, Fytas G, Morikawa J. Temperature-Dependent Thermoelastic Anisotropy of the PhenylPyrimidine Liquid Crystal. The Journal of Physical Chemistry C. 2019, 123(28), 17148-17154。
14. Kim H, Cang Y, Kang E, Graczykowski B, Secchi M, Montagna M, Priestley RD, Furst EM, Fytas G. Direct observation of polymer surface mobility via nanoparticle vibrations. Nature Communications. 2018, 9(1), 2918。
15. Singh, M.K., Hu, M., Cang, Y., Hsu, H.P., Therien-Aubin, H., Koynov, K., Fytas, G., Landfester, K. and Kremer, K., Glass Transition of Disentangled and Entangled Polymer Melts Single-Chain-Nanoparticles Approach. Macromolecules, 2020, 53(17), 7312-7321.
16. Schechtel E, Yan Y, Xu X, Cang Y, Tremel W, Wang Z, Li B, Fytas G. Elastic Modulus and Thermal Conductivity ofThiolene/TiO2 Nanocomposites. The Journal of Physical Chemistry C. 2017, 121(45), 25568-25575.

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