A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation

Schmelz J, Karg M, Hellweg T, Schmalz H (2011)
ACS Nano 5(12): 9523-9534.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Schmelz, Joachim; Karg, Matthias; Hellweg, ThomasUniBi ; Schmalz, Holger
Erscheinungsjahr
2011
Zeitschriftentitel
ACS Nano
Band
5
Ausgabe
12
Seite(n)
9523-9534
ISSN
1936-0851
eISSN
1936-086X
Page URI
https://pub.uni-bielefeld.de/record/2422770

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Schmelz J, Karg M, Hellweg T, Schmalz H. A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation. ACS Nano. 2011;5(12):9523-9534.
Schmelz, J., Karg, M., Hellweg, T., & Schmalz, H. (2011). A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation. ACS Nano, 5(12), 9523-9534. https://doi.org/10.1021/nn202638t
Schmelz, Joachim, Karg, Matthias, Hellweg, Thomas, and Schmalz, Holger. 2011. “A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation”. ACS Nano 5 (12): 9523-9534.
Schmelz, J., Karg, M., Hellweg, T., and Schmalz, H. (2011). A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation. ACS Nano 5, 9523-9534.
Schmelz, J., et al., 2011. A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation. ACS Nano, 5(12), p 9523-9534.
J. Schmelz, et al., “A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation”, ACS Nano, vol. 5, 2011, pp. 9523-9534.
Schmelz, J., Karg, M., Hellweg, T., Schmalz, H.: A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation. ACS Nano. 5, 9523-9534 (2011).
Schmelz, Joachim, Karg, Matthias, Hellweg, Thomas, and Schmalz, Holger. “A General Pathway toward Crystalline-Core Micelles with Tunable Morphology and Corona Segregation”. ACS Nano 5.12 (2011): 9523-9534.

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Gould OEC, Box SJ, Boott CE, Ward AD, Winnik MA, Miles MJ, Manners I., ACS Nano 13(4), 2019
PMID: 30794379
One-pot universal initiation-growth methods from a liquid crystalline block copolymer.
Jin B, Sano K, Aya S, Ishida Y, Gianneschi N, Luo Y, Li X., Nat Commun 10(1), 2019
PMID: 31160633
Block Copolymer Self-Assembly in Solution-Quo Vadis?
Brendel JC, Schacher FH., Chem Asian J 13(3), 2018
PMID: 29226585
Strategies for the selective loading of patchy worm-like micelles with functional nanoparticles.
Schöbel J, Hils C, Weckwerth A, Schlenk M, Bojer C, Stuart MCA, Breu J, Förster S, Greiner A, Karg M, Schmalz H., Nanoscale 10(38), 2018
PMID: 30238948
Bottom-Up Meets Top-Down: Patchy Hybrid Nonwovens as an Efficient Catalysis Platform.
Schöbel J, Burgard M, Hils C, Dersch R, Dulle M, Volk K, Karg M, Greiner A, Schmalz H., Angew Chem Int Ed Engl 56(1), 2017
PMID: 27921346
Two-dimensional assemblies from crystallizable homopolymers with charged termini.
He X, Hsiao MS, Boott CE, Harniman RL, Nazemi A, Li X, Winnik MA, Manners I., Nat Mater 16(4), 2017
PMID: 28068313
Enabling Heterogeneous Gold Catalysis with Patchy Micelles.
Finnegan JR, Gwyther J, Manners I., Angew Chem Int Ed Engl 56(11), 2017
PMID: 28185364
Core functionalization of semi-crystalline polymeric cylindrical nanoparticles using photo-initiated thiol-ene radical reactions.
Sun L, Pitto-Barry A, Thomas AW, Inam M, Doncom K, Dove AP, O'Reilly RK., Polym Chem 7(13), 2016
PMID: 27478513
ABC triblock copolymer micelles: spherical versus worm-like micelles depending on the preparation method.
Ghasdian N, Buzza DM, Fletcher PD, Georgiou TK., Macromol Rapid Commun 36(6), 2015
PMID: 25619193
Crystallisation-driven self-assembly of poly(2-isopropyl-2-oxazoline)-block-poly(2-methyl-2-oxazoline) above the LCST.
Legros C, De Pauw-Gillet MC, Tam KC, Taton D, Lecommandoux S., Soft Matter 11(17), 2015
PMID: 25793873
Self-assembly concepts for multicompartment nanostructures.
Gröschel AH, Müller AH., Nanoscale 7(28), 2015
PMID: 26123217
"Raft" formation by two-dimensional self-assembly of block copolymer rod micelles in aqueous solution.
Rizis G, van de Ven TG, Eisenberg A., Angew Chem Int Ed Engl 53(34), 2014
PMID: 24990629
Bamboo leaf-like micro-nano sheets self-assembled by block copolymers as wafers for cells.
Zhu W, Peng B, Wang J, Zhang K, Liu L, Chen Y., Macromol Biosci 14(12), 2014
PMID: 25205068
Structural reorganization of cylindrical nanoparticles triggered by polylactide stereocomplexation.
Sun L, Pitto-Barry A, Kirby N, Schiller TL, Sanchez AM, Dyson MA, Sloan J, Wilson NR, O'Reilly RK, Dove AP., Nat Commun 5(), 2014
PMID: 25517544
Poly(2-vinylpyridine)-block -Poly(ϵ-caprolactone) single crystals in micellar solution.
Su M, Huang H, Ma X, Wang Q, Su Z., Macromol Rapid Commun 34(13), 2013
PMID: 23661408
Dimensional control of block copolymer nanofibers with a π-conjugated core: crystallization-driven solution self-assembly of amphiphilic poly(3-hexylthiophene)-b-poly(2-vinylpyridine).
Gwyther J, Gilroy JB, Rupar PA, Lunn DJ, Kynaston E, Patra SK, Whittell GR, Winnik MA, Manners I., Chemistry 19(28), 2013
PMID: 23733316
Achieving micelle control through core crystallinity.
Glavas L, Olsén P, Odelius K, Albertsson AC., Biomacromolecules 14(11), 2013
PMID: 24066701
Precise hierarchical self-assembly of multicompartment micelles.
Gröschel AH, Schacher FH, Schmalz H, Borisov OV, Zhulina EB, Walther A, Müller AH., Nat Commun 3(), 2012
PMID: 22426231
Non-centrosymmetric cylindrical micelles by unidirectional growth.
Rupar PA, Chabanne L, Winnik MA, Manners I., Science 337(6094), 2012
PMID: 22859484
Patchy worm-like micelles: solution structure studied by small-angle neutron scattering.
Rosenfeldt S, Lüdel F, Schulreich C, Hellweg T, Radulescu A, Schmelz J, Schmalz H, Harnau L., Phys Chem Chem Phys 14(37), 2012
PMID: 22880203
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