کوکریستال (Persian Wikipedia)

Analysis of information sources in references of the Wikipedia article "کوکریستال" in Persian language version.

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  • Aitipamula, Srinivasulu (2012). "Polymorphs, Salts, and Cocrystals: What's in a Name?". Crystal Growth & Design. 12 (5): 2147–2152. doi:10.1021/cg3002948.
  • Tilborg, Anaëlle (2014). "How Cocrystallization Affects Solid-State Tautomerism: Stanozolol Case Study". Crystal Growth & Design. 14 (7): 3408–3422. doi:10.1021/cg500358h.
  • Tilborg, Anaëlle (2014). "Pharmaceutical salts and cocrystals involving amino acids: A brief structural overview of the state-of-art". European Journal of Medicinal Chemistry. 74: 411–426. doi:10.1016/j.ejmech.2013.11.045. PMID 24487190.
  • Stahly, G. P. (2009). "A Survey of Cocrystals Reported Prior to 2000". Crystal Growth & Design. 9 (10): 4212–4229. doi:10.1021/cg900873t.
  • Scott L Childs (2009). Childs, Scott L; Zaworotko, Michael J (eds.). "The Reemergence of Cocrystals: The Crystal Clear Writing is on the Wall Introduction to Virtual Special Issue on Pharmaceutical Cocrystals". Crystal Growth & Design. 9 (10): 4208–4211. doi:10.1021/cg901002y.
  • Ter Horst, J. H.; Deij, M. A.; Cains, P. W. (2009). "Discovering New Co-Crystals". Crystal Growth & Design. 9 (3): 1531. doi:10.1021/cg801200h.
  • Bond, A. D. (2007). "What is a co-crystal?". CrystEngComm. 9 (9): 833–834. doi:10.1039/b708112j.
  • Stahly, G. P. (2007). "Diversity in Single- and Multiple-Component Crystals. The Search for and Prevalence of Polymorphs and Cocrystals". Crystal Growth & Design. 7 (6): 1007–1026. doi:10.1021/cg060838j.
  • Taylor, Christopher R.; Day, Graeme M. (2018). "Evaluating the Energetic Driving Force for Cocrystal Formation". Crystal Growth & Design. 18 (2): 892–904. doi:10.1021/acs.cgd.7b01375. PMC 5806084. PMID 29445316.
  • Vishweshwar, P.; McMahon, J. A.; Bis, J. A.; Zaworotko, M. J. (2006). "Pharmaceutical co-crystals". Journal of Pharmaceutical Sciences. 95 (3): 499–516. doi:10.1002/jps.20578. PMID 16444755.
  • Blagden, N.; Berry, D. J.; Parkin, A.; Javed, H.; Ibrahim, A.; Gavan, P. T.; De Matos, L. L.; Seaton, C. C. (2008). "Current directions in co-crystal growth". New Journal of Chemistry. 32 (10): 1659. doi:10.1039/b803866j.
  • Friščić, T.; Jones, W. (2009). "Recent Advances in Understanding the Mechanism of Cocrystal Formation via Grinding". Crystal Growth & Design. 9 (3): 1621. doi:10.1021/cg800764n.
  • Padrela, L.; Rodrigues, M.A.; Velaga, S.P.; Matos, H.A.; Azevedo, E.G. (2009). "Formation of indomethacin–saccharin cocrystals using supercritical fluid technology". European Journal of Pharmaceutical Sciences. 38 (1): 9–17. doi:10.1016/j.ejps.2009.05.010. PMID 19477273.
  • Padrela, L.; Rodrigues, M.A.; Velaga, S.P.; Matos, H.A.; Azevedo, E.G. (2010). "Screening for pharmaceutical cocrystals using the supercritical fluid enhanced atomization process". Journal of Supercritical Fluids. 53 (1–3): 156–164. doi:10.1016/j.supflu.2010.01.010.
  • Hawkins, Paul C. D.; Skillman, A. Geoffrey; Nicholls, Anthony (22 March 2006). "Comparison of Shape-Matching and Docking as Virtual Screening Tools". Journal of Medicinal Chemistry (به انگلیسی). 50 (1): 74–82. CiteSeerX 10.1.1.476.1517. doi:10.1021/jm0603365. ISSN 0022-2623. PMID 17201411.
  • Cheney, M. L.; Weyna, D. R.; Shan, N.; Hanna, M.; Wojtas, L.; Zaworotko, M. J. (2010). "Supramolecular Architectures of Meloxicam Carboxylic Acid Cocrystals, a Crystal Engineering Case Study". Crystal Growth & Design. 10 (10): 4401. doi:10.1021/cg100514g.

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