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* Ville Jansson, Andreas Kyritsakis, Simon Vigonski, Ekaterina Baibuz, Vahur Zadin, Alvo Aabloo, Flyura Djurabekova (2020) [https://doi.org/10.1088/1361-651X/ab7151 <nowiki>Tungsten migration energy barriers for surface diffusion: a parameterization for KMC simulations</nowiki>], ''Modelling and Simulation in Materials Science and Engineering''. [https://doi.org/10.1088/1361-651X/ab7151 https://doi.org/10.1088/1361-651X/ab7151]
* Ville Jansson, Andreas Kyritsakis, Simon Vigonski, Ekaterina Baibuz, Vahur Zadin, Alvo Aabloo, Flyura Djurabekova (2020) [https://doi.org/10.1088/1361-651X/ab7151 <nowiki>Tungsten migration energy barriers for surface diffusion: a parameterization for KMC simulations</nowiki>], ''Modelling and Simulation in Materials Science and Engineering''. [https://doi.org/10.1088/1361-651X/ab7151 https://doi.org/10.1088/1361-651X/ab7151]
* Davide Grazioli, Vahur Zadin, Daniel Brandell, Angelo Simone (2019) [https://doi.org/10.1016/j.electacta.2018.07.146 <nowiki>Electrochemical-mechanical modeling of solid polymer electrolytes: Stress development and non-uniform electric current density in trench geometry microbatteries</nowiki>], ''Electrochimica Acta''. [https://doi.org/10.1016/j.electacta.2018.07.146 https://doi.org/10.1016/j.electacta.2018.07.146]
* Davide Grazioli, Osvalds Verners, Vahur Zadin, Daniel Brandell, Angelo Simone (2019) [https://doi.org/10.1016/j.electacta.2018.07.234 <nowiki>Electrochemical-mechanical modeling of solid polymer electrolytes: Impact of mechanical stresses on Li-ion battery performance</nowiki>], ''Electrochimica Acta''. [https://doi.org/10.1016/j.electacta.2018.07.234 https://doi.org/10.1016/j.electacta.2018.07.234]
* Davide Grazioli, Osvalds Verners, Vahur Zadin, Daniel Brandell, Angelo Simone (2019) [https://doi.org/10.1016/j.electacta.2018.07.234 <nowiki>Electrochemical-mechanical modeling of solid polymer electrolytes: Impact of mechanical stresses on Li-ion battery performance</nowiki>], ''Electrochimica Acta''. [https://doi.org/10.1016/j.electacta.2018.07.234 https://doi.org/10.1016/j.electacta.2018.07.234]
* Davide Grazioli, Vahur Zadin, Daniel Brandell, Angelo Simone (2019) [https://doi.org/10.1016/j.electacta.2018.07.146 <nowiki>Electrochemical-mechanical modeling of solid polymer electrolytes: Stress development and non-uniform electric current density in trench geometry microbatteries</nowiki>], ''Electrochimica Acta''. [https://doi.org/10.1016/j.electacta.2018.07.146 https://doi.org/10.1016/j.electacta.2018.07.146]
* Simon Vigonski, Ville Jansson, Sergei Vlassov, Boris Polyakov, Ekaterina Baibuz, Sven Oras, Alvo Aabloo, Flyura Djurabekova, Vahur Zadin (2018) [https://doi.org/10.1088/1361-6528/aa9a1b <nowiki>Au nanowire junction breakup through surface atom diffusion</nowiki>], ''Nanotechnology''. [https://doi.org/10.1088/1361-6528/aa9a1b https://doi.org/10.1088/1361-6528/aa9a1b]
* Simon Vigonski, Ville Jansson, Sergei Vlassov, Boris Polyakov, Ekaterina Baibuz, Sven Oras, Alvo Aabloo, Flyura Djurabekova, Vahur Zadin (2018) [https://doi.org/10.1088/1361-6528/aa9a1b <nowiki>Au nanowire junction breakup through surface atom diffusion</nowiki>], ''Nanotechnology''. [https://doi.org/10.1088/1361-6528/aa9a1b https://doi.org/10.1088/1361-6528/aa9a1b]
* V Zadin, M Veske, S Vigonski, V Jansson, J Muszinsky, S Parviainen, A Aabloo, F Djurabekova (2018) [https://doi.org/10.1088/1361-651X/aaa928 <nowiki>Simulations of surface stress effects in nanoscale single crystals</nowiki>], ''Modelling and Simulation in Materials Science and Engineering''. [https://doi.org/10.1088/1361-651X/aaa928 https://doi.org/10.1088/1361-651X/aaa928]
* V Zadin, M Veske, S Vigonski, V Jansson, J Muszinsky, S Parviainen, A Aabloo, F Djurabekova (2018) [https://doi.org/10.1088/1361-651X/aaa928 <nowiki>Simulations of surface stress effects in nanoscale single crystals</nowiki>], ''Modelling and Simulation in Materials Science and Engineering''. [https://doi.org/10.1088/1361-651X/aaa928 https://doi.org/10.1088/1361-651X/aaa928]
* Priimägi, P., Kasemägi, H., Aabloo, A., Brandell, D., Zadin, V. (2017) [http://doi.org/10.1016/j.electacta.2017.05.055 <nowiki>Thermal Simulations of Polymer Electrolyte 3D Li-Microbatteries</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2017.05.055 http://doi.org/10.1016/j.electacta.2017.05.055]
* Priimägi, P., Kasemägi, H., Aabloo, A., Brandell, D., Zadin, V. (2017) [http://doi.org/10.1016/j.electacta.2017.05.055 <nowiki>Thermal Simulations of Polymer Electrolyte 3D Li-Microbatteries</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2017.05.055 http://doi.org/10.1016/j.electacta.2017.05.055]
* Priimägi, P., Brandell, D., Srivastav, S., Aabloo, A., Kasemägi, H., Zadin, V. (2016) [http://doi.org/10.1016/j.electacta.2016.05.047 <nowiki>Optimizing the design of 3D-pillar microbatteries using finite element modelling</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2016.05.047 http://doi.org/10.1016/j.electacta.2016.05.047]
* Mets, M., Antsov, M., Zadin, V., Dorogin, L.M., Aabloo, A., Polyakov, B., Lõhmus, R., Vlassov, S. (2016) [http://doi.org/10.1088/0031-8949/91/11/115701 <nowiki>Structural factor in bending testing of fivefold twinned nanowires revealed by finite element analysis</nowiki>], ''Physica Scripta''. [http://doi.org/10.1088/0031-8949/91/11/115701 http://doi.org/10.1088/0031-8949/91/11/115701]
* Mets, M., Antsov, M., Zadin, V., Dorogin, L.M., Aabloo, A., Polyakov, B., Lõhmus, R., Vlassov, S. (2016) [http://doi.org/10.1088/0031-8949/91/11/115701 <nowiki>Structural factor in bending testing of fivefold twinned nanowires revealed by finite element analysis</nowiki>], ''Physica Scripta''. [http://doi.org/10.1088/0031-8949/91/11/115701 http://doi.org/10.1088/0031-8949/91/11/115701]
* Priimägi, P., Brandell, D., Srivastav, S., Aabloo, A., Kasemägi, H., Zadin, V. (2016) [http://doi.org/10.1016/j.electacta.2016.05.047 <nowiki>Optimizing the design of 3D-pillar microbatteries using finite element modelling</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2016.05.047 http://doi.org/10.1016/j.electacta.2016.05.047]
* Veske, M., Parviainen, S., Zadin, V., Aabloo, A., Djurabekova, F. (2016) [http://doi.org/10.1088/0022-3727/49/21/215301 <nowiki>Electrodynamics - Molecular dynamics simulations of the stability of Cu nanotips under high electric field</nowiki>], ''Journal of Physics D: Applied Physics''. [http://doi.org/10.1088/0022-3727/49/21/215301 http://doi.org/10.1088/0022-3727/49/21/215301]
* Veske, M., Parviainen, S., Zadin, V., Aabloo, A., Djurabekova, F. (2016) [http://doi.org/10.1088/0022-3727/49/21/215301 <nowiki>Electrodynamics - Molecular dynamics simulations of the stability of Cu nanotips under high electric field</nowiki>], ''Journal of Physics D: Applied Physics''. [http://doi.org/10.1088/0022-3727/49/21/215301 http://doi.org/10.1088/0022-3727/49/21/215301]
* Eimre, K., Parviainen, S., Aabloo, A., Djurabekova, F., Zadin, V. (2015) [http://doi.org/10.1063/1.4926490 <nowiki>Application of the general thermal field model to simulate the behaviour of nanoscale Cu field emitters</nowiki>], ''Journal of Applied Physics''. [http://doi.org/10.1063/1.4926490 http://doi.org/10.1063/1.4926490]
* Vigonski, S., Djurabekova, F., Veske, M., Aabloo, A., Zadin, V. (2015) [http://doi.org/10.1088/0965-0393/23/2/025009 <nowiki>Molecular dynamics simulations of near-surface Fe precipitates in Cu under high electric fields</nowiki>], ''Modelling and Simulation in Materials Science and Engineering''. [http://doi.org/10.1088/0965-0393/23/2/025009 http://doi.org/10.1088/0965-0393/23/2/025009]
* Zadin, V., Krasheninnikov, A.V., Djurabekova, F., Nordlund, K. (2015) [http://doi.org/10.1002/pssb.201400140 <nowiki>Simulations of electromechanical shape transformations of Au nanoparticles</nowiki>], ''Physica Status Solidi (B) Basic Research''. [http://doi.org/10.1002/pssb.201400140 http://doi.org/10.1002/pssb.201400140]
* Zadin, V., Kasemägi, H., Valdna, V., Vigonski, S., Veske, M., Aabloo, A. (2015) [http://doi.org/10.1016/j.amc.2015.01.104 <nowiki>Application of multiphysics and multiscale simulations to optimize industrial wood drying kilns</nowiki>], ''Applied Mathematics and Computation''. [http://doi.org/10.1016/j.amc.2015.01.104 http://doi.org/10.1016/j.amc.2015.01.104]
* Zadin, V., Kasemägi, H., Valdna, V., Vigonski, S., Veske, M., Aabloo, A. (2015) [http://doi.org/10.1016/j.amc.2015.01.104 <nowiki>Application of multiphysics and multiscale simulations to optimize industrial wood drying kilns</nowiki>], ''Applied Mathematics and Computation''. [http://doi.org/10.1016/j.amc.2015.01.104 http://doi.org/10.1016/j.amc.2015.01.104]
* Vigonski, S., Veske, M., Aabloo, A., Djurabekova, F., Zadin, V. (2015) [http://doi.org/10.1016/j.amc.2015.01.102 <nowiki>Verification of a multiscale surface stress model near voids in copper under the load induced by external high electric field</nowiki>], ''Applied Mathematics and Computation''. [http://doi.org/10.1016/j.amc.2015.01.102 http://doi.org/10.1016/j.amc.2015.01.102]
* Vigonski, S., Veske, M., Aabloo, A., Djurabekova, F., Zadin, V. (2015) [http://doi.org/10.1016/j.amc.2015.01.102 <nowiki>Verification of a multiscale surface stress model near voids in copper under the load induced by external high electric field</nowiki>], ''Applied Mathematics and Computation''. [http://doi.org/10.1016/j.amc.2015.01.102 http://doi.org/10.1016/j.amc.2015.01.102]
* Vigonski, S., Djurabekova, F., Veske, M., Aabloo, A., Zadin, V. (2015) [http://doi.org/10.1088/0965-0393/23/2/025009 <nowiki>Molecular dynamics simulations of near-surface Fe precipitates in Cu under high electric fields</nowiki>], ''Modelling and Simulation in Materials Science and Engineering''. [http://doi.org/10.1088/0965-0393/23/2/025009 http://doi.org/10.1088/0965-0393/23/2/025009]
* Zadin, V., Krasheninnikov, A.V., Djurabekova, F., Nordlund, K. (2015) [http://doi.org/10.1002/pssb.201400140 <nowiki>Simulations of electromechanical shape transformations of Au nanoparticles</nowiki>], ''Physica Status Solidi (B) Basic Research''. [http://doi.org/10.1002/pssb.201400140 http://doi.org/10.1002/pssb.201400140]
* Eimre, K., Parviainen, S., Aabloo, A., Djurabekova, F., Zadin, V. (2015) [http://doi.org/10.1063/1.4926490 <nowiki>Application of the general thermal field model to simulate the behaviour of nanoscale Cu field emitters</nowiki>], ''Journal of Applied Physics''. [http://doi.org/10.1063/1.4926490 http://doi.org/10.1063/1.4926490]
* Zadin, V., Pohjonen, A., Aabloo, A., Nordlund, K., Djurabekova, F. (2014) [http://doi.org/10.1103/PhysRevSTAB.17.103501 <nowiki>Electrostatic-elastoplastic simulations of copper surface under high electric fields</nowiki>], ''Physical Review Special Topics - Accelerators and Beams''. [http://doi.org/10.1103/PhysRevSTAB.17.103501 http://doi.org/10.1103/PhysRevSTAB.17.103501]
* Zadin, V., Pohjonen, A., Aabloo, A., Nordlund, K., Djurabekova, F. (2014) [http://doi.org/10.1103/PhysRevSTAB.17.103501 <nowiki>Electrostatic-elastoplastic simulations of copper surface under high electric fields</nowiki>], ''Physical Review Special Topics - Accelerators and Beams''. [http://doi.org/10.1103/PhysRevSTAB.17.103501 http://doi.org/10.1103/PhysRevSTAB.17.103501]
* Zadin, V., Brandell, D., Kasemägi, H., Lellep, J., Aabloo, A. (2013) [http://doi.org/10.1016/j.jpowsour.2012.12.004 <nowiki>Designing the 3D-microbattery geometry using the level-set method</nowiki>], ''Journal of Power Sources''. [http://doi.org/10.1016/j.jpowsour.2012.12.004 http://doi.org/10.1016/j.jpowsour.2012.12.004]
* Zadin, V., Brandell, D., Kasemägi, H., Lellep, J., Aabloo, A. (2013) [http://doi.org/10.1016/j.jpowsour.2012.12.004 <nowiki>Designing the 3D-microbattery geometry using the level-set method</nowiki>], ''Journal of Power Sources''. [http://doi.org/10.1016/j.jpowsour.2012.12.004 http://doi.org/10.1016/j.jpowsour.2012.12.004]
* Zadin, V., Danilov, D., Brandell, D., Notten, P.H.L., Aabloo, A. (2012) [http://doi.org/10.1016/j.electacta.2012.01.039 <nowiki>Finite element simulations of 3D ionic transportation properties in Li-ion electrolytes</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2012.01.039 http://doi.org/10.1016/j.electacta.2012.01.039]
* Zadin, V., Danilov, D., Brandell, D., Notten, P.H.L., Aabloo, A. (2012) [http://doi.org/10.1016/j.electacta.2012.01.039 <nowiki>Finite element simulations of 3D ionic transportation properties in Li-ion electrolytes</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2012.01.039 http://doi.org/10.1016/j.electacta.2012.01.039]
* Zadin, V., Brandell, D. (2011) [http://doi.org/10.1016/j.electacta.2011.03.026 <nowiki>Modelling polymer electrolytes for 3D-microbatteries using finite element analysis</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2011.03.026 http://doi.org/10.1016/j.electacta.2011.03.026]
* Zadin, V., Brandell, D., Kasemägi, H., Aabloo, A., Thomas, J.O. (2011) [http://doi.org/10.1016/j.ssi.2010.02.007 <nowiki>Finite element modelling of ion transport in the electrolyte of a 3D-microbattery</nowiki>], ''Solid State Ionics''. [http://doi.org/10.1016/j.ssi.2010.02.007 http://doi.org/10.1016/j.ssi.2010.02.007]
* Zadin, V., Brandell, D., Kasemägi, H., Aabloo, A., Thomas, J.O. (2011) [http://doi.org/10.1016/j.ssi.2010.02.007 <nowiki>Finite element modelling of ion transport in the electrolyte of a 3D-microbattery</nowiki>], ''Solid State Ionics''. [http://doi.org/10.1016/j.ssi.2010.02.007 http://doi.org/10.1016/j.ssi.2010.02.007]
* Zadin, V., Brandell, D. (2011) [http://doi.org/10.1016/j.electacta.2011.03.026 <nowiki>Modelling polymer electrolytes for 3D-microbatteries using finite element analysis</nowiki>], ''Electrochimica Acta''. [http://doi.org/10.1016/j.electacta.2011.03.026 http://doi.org/10.1016/j.electacta.2011.03.026]
* Zadin, V., Kasemägi, H., Aabloo, A., Brandell, D. (2010) [http://doi.org/10.1016/j.jpowsour.2010.02.056 <nowiki>Modelling electrode material utilization in the trench model 3D-microbattery by finite element analysis</nowiki>], ''Journal of Power Sources''. [http://doi.org/10.1016/j.jpowsour.2010.02.056 http://doi.org/10.1016/j.jpowsour.2010.02.056]
* Zadin, V., Kasemägi, H., Aabloo, A., Brandell, D. (2010) [http://doi.org/10.1016/j.jpowsour.2010.02.056 <nowiki>Modelling electrode material utilization in the trench model 3D-microbattery by finite element analysis</nowiki>], ''Journal of Power Sources''. [http://doi.org/10.1016/j.jpowsour.2010.02.056 http://doi.org/10.1016/j.jpowsour.2010.02.056]



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