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zhen_li [2016/05/04 15:42]
zl25 [Publications:]
zhen_li [2016/09/20 14:42]
zl25 [Publications:]
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 ====== Publications:​ ====== ====== Publications:​ ======
-  - X.J. Li, **Z. Li**, X. Bian, M.G. Deng, C. Kim, Y.H. Tang, AYazdani ​and G.E. Karniadakis. ​Dissipative Particle Dynamics, Overview. In book: Encyclopedia ​of Nanotechnology,​ EditorsB.Bhushan, Publisher: Springer, 2016. [[http://​dx.doi.org/​10.1007/978-94-007-6178-0_100954-1 | DOI: 10.1007/978-94-007-6178-0_100954-1]]+  - **Z. Li**, X. Bian, XYang and G.E. Karniadakis. ​A comparative study of coarse-graining methods for polymeric fluidsMori-Zwanzig vsiterative Boltzmann inversion vs. stochastic parametric optimization. The Journal of Chemical Physics, 2016, 145(4): 044102. [[http://​dx.doi.org/​10.1063/1.4959121 ​| DOI: 10.1063/1.4959121]]
   - Y.H. Tang, **Z. Li**, X.J. Li, M.G. Deng and G.E. Karniadakis. Non-equilibrium dynamics of vesicles and micelles by self-assembly of block copolymers with double thermoresponsivity. Macromolecules,​ 2016, 49(7): 2895-2903. [[http://​dx.doi.org/​10.1021/​acs.macromol.6b00365 | DOI: 10.1021/​acs.macromol.6b00365]]   - Y.H. Tang, **Z. Li**, X.J. Li, M.G. Deng and G.E. Karniadakis. Non-equilibrium dynamics of vesicles and micelles by self-assembly of block copolymers with double thermoresponsivity. Macromolecules,​ 2016, 49(7): 2895-2903. [[http://​dx.doi.org/​10.1021/​acs.macromol.6b00365 | DOI: 10.1021/​acs.macromol.6b00365]]
   - **Z. Li**, X. Bian, X.T. Li and G.E. Karniadakis. Incorporation of memory effects in coarse-grained modeling via the Mori-Zwanzig formalism. The Journal of Chemical Physics, 2015, 143(24): 243128. [[http://​dx.doi.org/​10.1063/​1.4935490 | DOI: 10.1063/​1.4935490]]   - **Z. Li**, X. Bian, X.T. Li and G.E. Karniadakis. Incorporation of memory effects in coarse-grained modeling via the Mori-Zwanzig formalism. The Journal of Chemical Physics, 2015, 143(24): 243128. [[http://​dx.doi.org/​10.1063/​1.4935490 | DOI: 10.1063/​1.4935490]]
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   - **Z. Li**, G.H. Hu and Z.W Zhou. Floquet instability of a large density ratio liquid-gas coaxial jet with periodic fluctuation. Applied Mathematics and Mechanics. 2008, 29(8):​975-984. [[http://​dx.doi.org/​10.1007/​s10483-008-0801-y | DOI: 10.1007/​s10483-008-0801-y]]   - **Z. Li**, G.H. Hu and Z.W Zhou. Floquet instability of a large density ratio liquid-gas coaxial jet with periodic fluctuation. Applied Mathematics and Mechanics. 2008, 29(8):​975-984. [[http://​dx.doi.org/​10.1007/​s10483-008-0801-y | DOI: 10.1007/​s10483-008-0801-y]]
 ====== Book/​Chapters:​ ====== ====== Book/​Chapters:​ ======
-  - X.J. Li, **Z. Li**, X. Bian, M. G. Deng, C. H. Kim, Y.-H. Tang, A. Yazdaniand G. E. Karniadakis. Dissipative ​particle dynamics: overviewEssay in Encyclopedia of Nanotechnology. Springer, ​2015, to appear.+  - X.J. Li, **Z. Li**, X. Bian, M.G. Deng, C. Kim, Y.H. Tang, A. Yazdani and G.E. Karniadakis. Dissipative ​Particle Dynamics, OverviewIn book: Encyclopedia of Nanotechnology, Editor: B.Bhushan, Publisher: ​Springer, ​2016[[http://​dx.doi.org/​10.1007/​978-94-007-6178-0_100954-1 | DOI: 10.1007/​978-94-007-6178-0_100954-1]]
   - **Z. Li**, G.H. Hu and Z.W Zhou. Dissipative Particle Dynamics for Complex Fluid. Mechanics and Engineering,​ SJTU Press, 2009, 385-397.   - **Z. Li**, G.H. Hu and Z.W Zhou. Dissipative Particle Dynamics for Complex Fluid. Mechanics and Engineering,​ SJTU Press, 2009, 385-397.
 ====== Conferences and Symposia: ====== ====== Conferences and Symposia: ======
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   * RSC Advances   * RSC Advances
   * The Journal of Chemical Physics   * The Journal of Chemical Physics
 +  * Soft Matter
 +  * Langmuir
   * International Journal of Thermal Sciences   * International Journal of Thermal Sciences
 +  * International Journal of Heat and Mass Transfer
   * Molecular Simulation   * Molecular Simulation
   * IEEE Transactions on Nanotechnology   * IEEE Transactions on Nanotechnology
   * Applied Mathematics and Mechanics   * Applied Mathematics and Mechanics
   * Colloids and Surfaces A: Physicochemical and Engineering Aspects   * Colloids and Surfaces A: Physicochemical and Engineering Aspects

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