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Items: 1 to 20 of 949

1.

Chemistry of aqueous silica nanoparticle surfaces and the mechanism of selective peptide adsorption.

Patwardhan SV, Emami FS, Berry RJ, Jones SE, Naik RR, Deschaume O, Heinz H, Perry CC.

J Am Chem Soc. 2012 Apr 11;134(14):6244-56. doi: 10.1021/ja211307u. Epub 2012 Apr 3.

PMID:
22435500
2.

Peptide adsorption on silica nanoparticles: evidence of hydrophobic interactions.

Puddu V, Perry CC.

ACS Nano. 2012 Jul 24;6(7):6356-63. doi: 10.1021/nn301866q. Epub 2012 Jul 3.

PMID:
22725630
3.

Peptide interactions with metal and oxide surfaces.

Vallee A, Humblot V, Pradier CM.

Acc Chem Res. 2010 Oct 19;43(10):1297-306. doi: 10.1021/ar100017n.

PMID:
20672797
4.

Interactions at the silica-peptide interface: the influence of particle size and surface functionality.

Puddu V, Perry CC.

Langmuir. 2014 Jan 14;30(1):227-33. doi: 10.1021/la403242f. Epub 2013 Dec 20.

PMID:
24328428
5.

Nature of molecular interactions of peptides with gold, palladium, and Pd-Au bimetal surfaces in aqueous solution.

Heinz H, Farmer BL, Pandey RB, Slocik JM, Patnaik SS, Pachter R, Naik RR.

J Am Chem Soc. 2009 Jul 22;131(28):9704-14. doi: 10.1021/ja900531f.

PMID:
19552440
6.

Influence of the shape of nanostructured metal surfaces on adsorption of single peptide molecules in aqueous solution.

Feng J, Slocik JM, Sarikaya M, Naik RR, Farmer BL, Heinz H.

Small. 2012 Apr 10;8(7):1049-59. doi: 10.1002/smll.201102066. Epub 2012 Feb 10.

PMID:
22323430
7.

Biomimetic particles: optimization of phospholipid bilayer coverage on silica and colloid stabilization.

Moura SP, Carmona-Ribeiro AM.

Langmuir. 2005 Oct 25;21(22):10160-4.

PMID:
16229540
8.

Molecular hydrophobic attraction and ion-specific effects studied by molecular dynamics.

Horinek D, Serr A, Bonthuis DJ, Boström M, Kunz W, Netz RR.

Langmuir. 2008 Feb 19;24(4):1271-83. doi: 10.1021/la702485r. Epub 2008 Jan 26.

PMID:
18220430
9.

Formation of silica nanoparticles in microemulsions.

Finnie KS, Bartlett JR, Barbé CJ, Kong L.

Langmuir. 2007 Mar 13;23(6):3017-24. Epub 2007 Feb 15.

PMID:
17300209
10.

Silica nanoparticles at interfaces modulated by amphiphilic polymer and surfactant.

Alves de Rezende C, Lee LT, Galembeck F.

Langmuir. 2008 Jul 15;24(14):7346-53. doi: 10.1021/la8004807. Epub 2008 Jun 12.

PMID:
18547078
11.

Cooperative effects at water-crystalline silica interfaces strengthen surface silanol hydrogen bonding. An ab initio molecular dynamics study.

Musso F, Mignon P, Ugliengo P, Sodupe M.

Phys Chem Chem Phys. 2012 Aug 14;14(30):10507-14. doi: 10.1039/c2cp40756f. Epub 2012 May 24.

PMID:
22622867
13.
14.

A physico-chemical investigation of poly(ethylene oxide)-block-poly(L-lysine) copolymer adsorption onto silica nanoparticles.

Louguet S, Kumar AC, Sigaud G, Duguet E, Lecommandoux S, Schatz C.

J Colloid Interface Sci. 2011 Jul 15;359(2):413-22. doi: 10.1016/j.jcis.2011.03.093. Epub 2011 Apr 1.

PMID:
21524420
15.

Spontaneous membrane-translocating peptide adsorption at silica surfaces: a molecular dynamics study.

Kubiak-Ossowska K, Burley G, Patwardhan SV, Mulheran PA.

J Phys Chem B. 2013 Nov 27;117(47):14666-75. doi: 10.1021/jp409130s. Epub 2013 Nov 15.

16.

Synthesis of hierarchical hollow silica microspheres containing surface nanoparticles employing the quasi-hard template of poly(4-vinylpyridine) microspheres.

Su Y, Yan R, Dan M, Xu J, Wang D, Zhang W, Liu S.

Langmuir. 2011 Jul 19;27(14):8983-9. doi: 10.1021/la2014573. Epub 2011 Jun 23.

PMID:
21671559
17.

Interplay of sequence, conformation, and binding at the Peptide-titania interface as mediated by water.

Skelton AA, Liang T, Walsh TR.

ACS Appl Mater Interfaces. 2009 Jul;1(7):1482-91. doi: 10.1021/am9001666.

PMID:
20355952
18.

Effect of cation size and charge on the interaction between silica surfaces in 1:1, 2:1, and 3:1 aqueous electrolytes.

Dishon M, Zohar O, Sivan U.

Langmuir. 2011 Nov 1;27(21):12977-84. doi: 10.1021/la202533s. Epub 2011 Sep 23.

PMID:
21877732
19.
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