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28. How to quantify and avoid finite size effects in computational studies of crystal nucleation: The case of homogeneous crystal nucleation. J. Chem. Phys. 2022, 156: 054503.
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27. Role of nanoscale interfacial proximity in contact freezing in water. J. Am. Chem. Soc.. 2021, 143: 2272–2284.
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26. How to quantify and avoid finite size effects in computational studies of crystal nucleation: The case of heterogeneous ice nucleation. J. Chem. Phys. 2021, 154: 014108.
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25. Induced Charge Anisotropy: A Hidden Variable Affecting Ion Transport through Membranes. Matter 2020, 2: 735-750.
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24. Studying rare events using forward-flux sampling: Recent breakthroughs and future outlook. J. Chem. Phys. 2020, 152: 060901.
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23. Single crystal texture by directed molecular self-assembly along dual axes. Nature Materials 2019, 18: 1235-1243.
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22. Thermodynamically Driven Assemblies and Liquid-liquid Phase Separations in Biology. Soft Matter 2019, 15: 1135, [Invited , Special Issue Soft Matter Emerging Investigators].
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21. Forward-flux sampling with jumpy order parameters. JCP 2018, 149: 072303, [Invited Article, Special Topic on Enhanced Sampling for Molecular Systems ].
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20. Hybrid Monte Carlo with LAMMPS. J. Theor. Comput. Chem. 2018, 17: 1840002.
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19. Comment on “The putative liquid-liquid transition is a liquid-solid transition in atomistic models of water” [I and II: JCP 135, 134503 (2011); JCP 138, 214504 (2013)]. JCP 2018, 148: 137101.
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18. Forward flux sampling calculation of homogeneous nucleation rates from aqueous NaCl solutions. J. Chem. Phys. 2018, 148: 044505.
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17. Perspective: Surface freezing in water: A nexus of experiments and simulations. J. Chem. Phys. 2017, 147: 060901. [Invited]
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