Viedma ripening (English Wikipedia)

Analysis of information sources in references of the Wikipedia article "Viedma ripening" in English language version.

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arxiv.org

  • Viedma, Cristobal (17 February 2005). "Chiral Symmetry Breaking During Crystallization: Complete Chiral Purity Induced by Nonlinear Autocatalysis and Recycling". Physical Review Letters. 94 (6): 065504. arXiv:cond-mat/0407479. Bibcode:2005PhRvL..94f5504V. doi:10.1103/PhysRevLett.94.065504. PMID 15783745. S2CID 118964653.

doi.org

  • Viedma, Cristobal (17 February 2005). "Chiral Symmetry Breaking During Crystallization: Complete Chiral Purity Induced by Nonlinear Autocatalysis and Recycling". Physical Review Letters. 94 (6): 065504. arXiv:cond-mat/0407479. Bibcode:2005PhRvL..94f5504V. doi:10.1103/PhysRevLett.94.065504. PMID 15783745. S2CID 118964653.
  • Sögütoglu, Leyla-Cann; Steendam, René R. E.; Meekes, Hugo; Vlieg, Elias; Rutjes, Floris P. J. T. (21 September 2015). "Viedma ripening: a reliable crystallisation method to reach single chirality". Chemical Society Reviews. 44 (19): 6723–6732. doi:10.1039/C5CS00196J. hdl:2066/149815. PMID 26165858.
  • Noorduin, Wim L.; van Enckevort, Willem J. P.; Meekes, Hugo; Kaptein, Bernard; Kellogg, Richard M.; Tully, John C.; McBride, J. Michael; Vlieg, Elias (2010). "The Driving Mechanism Behind Attrition-Enhanced Deracemization" (PDF). Angewandte Chemie International Edition. 49 (45): 8435–8438. doi:10.1002/anie.201002036. PMID 20859973. S2CID 5596199.
  • Uwaha, Makio; Katsuno, Hiroyasu (10 February 2009). "Mechanism of Chirality Conversion by Grinding Crystals: Ostwald Ripening vs Crystallization of Chiral Clusters". Journal of the Physical Society of Japan. 78 (2): 023601. Bibcode:2009JPSJ...78b3601U. doi:10.1143/JPSJ.78.023601.
  • Xiouras, Christos; Fytopoulos, Antonios A.; Ter Horst, Joop H.; Boudouvis, Andreas G.; Van Gerven, Tom; Stefanidis, Georgios D. (2 May 2018). "Particle Breakage Kinetics and Mechanisms in Attrition-Enhanced Deracemization" (PDF). Crystal Growth & Design. 18 (5): 3051–3061. doi:10.1021/acs.cgd.8b00201.
  • Iggland, Martin; Mazzotti, Marco (5 October 2011). "A Population Balance Model for Chiral Resolution via Viedma Ripening". Crystal Growth & Design. 11 (10): 4611–4622. doi:10.1021/cg2008599.
  • Viedma, Cristobal; Ortiz, José E.; Torres, Trinidad de; Izumi, Toshiko; Blackmond, Donna G. (19 November 2008). "Evolution of Solid Phase Homochirality for a Proteinogenic Amino Acid" (PDF). Journal of the American Chemical Society. 130 (46): 15274–15275. doi:10.1021/ja8074506. PMID 18954052.
  • Ribó, Josep M.; Hochberg, David; Crusats, Joaquim; El-Hachemi, Zoubir; Moyano, Albert (31 December 2017). "Spontaneous mirror symmetry breaking and origin of biological homochirality". Journal of the Royal Society Interface. 14 (137): 20170699. doi:10.1098/rsif.2017.0699. PMC 5746574. PMID 29237824.
  • McBride, J. Michael; Tully, John C. (March 2008). "Did life grind to a start?". Nature. 452 (7184): 161–162. doi:10.1038/452161a. PMID 18337809. S2CID 205036438.
  • Blackmond, Donna G. (2010). "The Origin of Biological Homochirality". Cold Spring Harbor Perspectives in Biology. 2 (5): a002147. doi:10.1101/cshperspect.a002147. PMC 2857173. PMID 20452962.

handle.net

hdl.handle.net

harvard.edu

ui.adsabs.harvard.edu

  • Viedma, Cristobal (17 February 2005). "Chiral Symmetry Breaking During Crystallization: Complete Chiral Purity Induced by Nonlinear Autocatalysis and Recycling". Physical Review Letters. 94 (6): 065504. arXiv:cond-mat/0407479. Bibcode:2005PhRvL..94f5504V. doi:10.1103/PhysRevLett.94.065504. PMID 15783745. S2CID 118964653.
  • Uwaha, Makio; Katsuno, Hiroyasu (10 February 2009). "Mechanism of Chirality Conversion by Grinding Crystals: Ostwald Ripening vs Crystallization of Chiral Clusters". Journal of the Physical Society of Japan. 78 (2): 023601. Bibcode:2009JPSJ...78b3601U. doi:10.1143/JPSJ.78.023601.

nih.gov

pubmed.ncbi.nlm.nih.gov

  • Viedma, Cristobal (17 February 2005). "Chiral Symmetry Breaking During Crystallization: Complete Chiral Purity Induced by Nonlinear Autocatalysis and Recycling". Physical Review Letters. 94 (6): 065504. arXiv:cond-mat/0407479. Bibcode:2005PhRvL..94f5504V. doi:10.1103/PhysRevLett.94.065504. PMID 15783745. S2CID 118964653.
  • Sögütoglu, Leyla-Cann; Steendam, René R. E.; Meekes, Hugo; Vlieg, Elias; Rutjes, Floris P. J. T. (21 September 2015). "Viedma ripening: a reliable crystallisation method to reach single chirality". Chemical Society Reviews. 44 (19): 6723–6732. doi:10.1039/C5CS00196J. hdl:2066/149815. PMID 26165858.
  • Noorduin, Wim L.; van Enckevort, Willem J. P.; Meekes, Hugo; Kaptein, Bernard; Kellogg, Richard M.; Tully, John C.; McBride, J. Michael; Vlieg, Elias (2010). "The Driving Mechanism Behind Attrition-Enhanced Deracemization" (PDF). Angewandte Chemie International Edition. 49 (45): 8435–8438. doi:10.1002/anie.201002036. PMID 20859973. S2CID 5596199.
  • Viedma, Cristobal; Ortiz, José E.; Torres, Trinidad de; Izumi, Toshiko; Blackmond, Donna G. (19 November 2008). "Evolution of Solid Phase Homochirality for a Proteinogenic Amino Acid" (PDF). Journal of the American Chemical Society. 130 (46): 15274–15275. doi:10.1021/ja8074506. PMID 18954052.
  • Ribó, Josep M.; Hochberg, David; Crusats, Joaquim; El-Hachemi, Zoubir; Moyano, Albert (31 December 2017). "Spontaneous mirror symmetry breaking and origin of biological homochirality". Journal of the Royal Society Interface. 14 (137): 20170699. doi:10.1098/rsif.2017.0699. PMC 5746574. PMID 29237824.
  • McBride, J. Michael; Tully, John C. (March 2008). "Did life grind to a start?". Nature. 452 (7184): 161–162. doi:10.1038/452161a. PMID 18337809. S2CID 205036438.
  • Blackmond, Donna G. (2010). "The Origin of Biological Homochirality". Cold Spring Harbor Perspectives in Biology. 2 (5): a002147. doi:10.1101/cshperspect.a002147. PMC 2857173. PMID 20452962.

ncbi.nlm.nih.gov

rug.nl

pure.rug.nl

semanticscholar.org

api.semanticscholar.org

  • Viedma, Cristobal (17 February 2005). "Chiral Symmetry Breaking During Crystallization: Complete Chiral Purity Induced by Nonlinear Autocatalysis and Recycling". Physical Review Letters. 94 (6): 065504. arXiv:cond-mat/0407479. Bibcode:2005PhRvL..94f5504V. doi:10.1103/PhysRevLett.94.065504. PMID 15783745. S2CID 118964653.
  • Noorduin, Wim L.; van Enckevort, Willem J. P.; Meekes, Hugo; Kaptein, Bernard; Kellogg, Richard M.; Tully, John C.; McBride, J. Michael; Vlieg, Elias (2010). "The Driving Mechanism Behind Attrition-Enhanced Deracemization" (PDF). Angewandte Chemie International Edition. 49 (45): 8435–8438. doi:10.1002/anie.201002036. PMID 20859973. S2CID 5596199.
  • McBride, J. Michael; Tully, John C. (March 2008). "Did life grind to a start?". Nature. 452 (7184): 161–162. doi:10.1038/452161a. PMID 18337809. S2CID 205036438.

strath.ac.uk

strathprints.strath.ac.uk

ucm.es

eprints.ucm.es