Kunlin Wang
Affiliations: | 2015-2020 | Pharmaceutics | University of Minnesota, Twin Cities, Minneapolis, MN |
Google:
"Kunlin Wang"Mean distance: (not calculated yet)
BETA: Related publications
See more...
Publications
You can help our author matching system! If you notice any publications incorrectly attributed to this author, please sign in and mark matches as correct or incorrect. |
Chen H, Paul S, Xu H, et al. (2020) Reduction of Punch-Sticking Propensity of Celecoxib by Spherical Crystallization via Polymer Assisted Quasi-Emulsion Solvent Diffusion. Molecular Pharmaceutics |
Paul S, Wang C, Wang K, et al. (2019) Reduced punch sticking propensity of acesulfame by salt formation - Role of crystal mechanical property and surface chemistry. Molecular Pharmaceutics |
Wang K, Mishra MK, Sun CC. (2019) Exceptionally Elastic Single-Component Pharmaceutical Crystals Chemistry of Materials. 31: 1794-1799 |
Wang K, Sun CC. (2019) Correction to Crystal Growth of Celecoxib from Amorphous State: Polymorphism, Growth Mechanism, and Kinetics Crystal Growth & Design. 19: 4894-4894 |
Wang K, Sun CC. (2019) Crystal Growth of Celecoxib from Amorphous State: Polymorphism, Growth Mechanism, and Kinetics Crystal Growth & Design. 19: 3592-3600 |
Paul S, Chang SY, Dun J, et al. (2018) Comparative analyses of flow and compaction properties of diverse mannitol and lactose grades. International Journal of Pharmaceutics |
Wang K, Wang C, Young V, et al. (2018) Reversible single crystal-to-single crystal phase transition with low-temperature induced twinning of diphenhydramine citrate salt Acta Crystallographica Section a Foundations and Advances. 74: a257-a257 |
Paul S, Wang K, Taylor LJ, et al. (2017) Dependence of punch sticking on compaction pressure - roles of particle deformability and tablet tensile strength. Journal of Pharmaceutical Sciences |
Wang C, Paul S, Wang K, et al. (2017) Relationships among Crystal Structures, Mechanical Properties, and Tableting Performance Probed Using Four Salts of Diphenhydramine Crystal Growth & Design. 17: 6030-6040 |