Acidic peptides acting as growth modifiers of calcite crystals
Volkmer D, Fricke M, Huber T, Sewald N (2004)
CHEMICAL COMMUNICATIONS (16): 1872-1873.
Zeitschriftenaufsatz
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Autor*in
Volkmer, D;
Fricke, M;
Huber, T;
Sewald, NorbertUniBi
Einrichtung
Abstract / Bemerkung
Small acidic peptides comprising a repeating Phe-Asp sequence motif exert control, in vitro, on the morphology of calcite crystals similar to natural proteins from calcified tissues.
Erscheinungsjahr
2004
Zeitschriftentitel
CHEMICAL COMMUNICATIONS
Ausgabe
16
Seite(n)
1872-1873
ISSN
1359-7345
eISSN
1364-548X
Page URI
https://pub.uni-bielefeld.de/record/1607072
Zitieren
Volkmer D, Fricke M, Huber T, Sewald N. Acidic peptides acting as growth modifiers of calcite crystals. CHEMICAL COMMUNICATIONS. 2004;(16):1872-1873.
Volkmer, D., Fricke, M., Huber, T., & Sewald, N. (2004). Acidic peptides acting as growth modifiers of calcite crystals. CHEMICAL COMMUNICATIONS(16), 1872-1873. https://doi.org/10.1039/b405613b
Volkmer, D, Fricke, M, Huber, T, and Sewald, Norbert. 2004. “Acidic peptides acting as growth modifiers of calcite crystals”. CHEMICAL COMMUNICATIONS, no. 16: 1872-1873.
Volkmer, D., Fricke, M., Huber, T., and Sewald, N. (2004). Acidic peptides acting as growth modifiers of calcite crystals. CHEMICAL COMMUNICATIONS, 1872-1873.
Volkmer, D., et al., 2004. Acidic peptides acting as growth modifiers of calcite crystals. CHEMICAL COMMUNICATIONS, (16), p 1872-1873.
D. Volkmer, et al., “Acidic peptides acting as growth modifiers of calcite crystals”, CHEMICAL COMMUNICATIONS, 2004, pp. 1872-1873.
Volkmer, D., Fricke, M., Huber, T., Sewald, N.: Acidic peptides acting as growth modifiers of calcite crystals. CHEMICAL COMMUNICATIONS. 1872-1873 (2004).
Volkmer, D, Fricke, M, Huber, T, and Sewald, Norbert. “Acidic peptides acting as growth modifiers of calcite crystals”. CHEMICAL COMMUNICATIONS 16 (2004): 1872-1873.
Daten bereitgestellt von European Bioinformatics Institute (EBI)
7 Zitationen in Europe PMC
Daten bereitgestellt von Europe PubMed Central.
Tuning calcite morphology and growth acceleration by a rational design of highly stable protein-mimetics.
Chen CL, Qi J, Tao J, Zuckermann RN, DeYoreo JJ., Sci Rep 4(), 2014
PMID: 25189418
Chen CL, Qi J, Tao J, Zuckermann RN, DeYoreo JJ., Sci Rep 4(), 2014
PMID: 25189418
Calcium carbonate crystal growth beneath Langmuir monolayers of acidic β-hairpin peptides.
Gong H, Yang Y, Pluntke M, Marti O, Majer Z, Sewald N, Volkmer D., Dalton Trans 43(44), 2014
PMID: 25292256
Gong H, Yang Y, Pluntke M, Marti O, Majer Z, Sewald N, Volkmer D., Dalton Trans 43(44), 2014
PMID: 25292256
Biopolymer colloids for controlling and templating inorganic synthesis.
Preiss LC, Landfester K, Muñoz-Espí R., Beilstein J Nanotechnol 5(), 2014
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Preiss LC, Landfester K, Muñoz-Espí R., Beilstein J Nanotechnol 5(), 2014
PMID: 25551041
Peptide-based methods for the preparation of nanostructured inorganic materials.
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Chen CL, Rosi NL., Angew Chem Int Ed Engl 49(11), 2010
PMID: 20183835
Lysozyme mediated calcium carbonate mineralization.
Wang X, Sun H, Xia Y, Chen C, Xu H, Shan H, Lu JR., J Colloid Interface Sci 332(1), 2009
PMID: 19167007
Wang X, Sun H, Xia Y, Chen C, Xu H, Shan H, Lu JR., J Colloid Interface Sci 332(1), 2009
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Metadynamics simulations of ice nucleation and growth.
Quigley D, Rodger PM., J Chem Phys 128(15), 2008
PMID: 18433246
Quigley D, Rodger PM., J Chem Phys 128(15), 2008
PMID: 18433246
Biomimetic model systems for investigating the amorphous precursor pathway and its role in biomineralization.
Gower LB., Chem Rev 108(11), 2008
PMID: 19006398
Gower LB., Chem Rev 108(11), 2008
PMID: 19006398
References
Daten bereitgestellt von Europe PubMed Central.
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