Abstract
The first successful surface modification of finely dispersed NaCl particles was achieved during their synthesis in situ in the presence of CuCl2 and polyvinylpyrrolidone. Obtained layered structure is stable to washing with polar organic solvents and to environmental moisture.
References
1.
2.
Love J.C., Estroff L.A., Kriebel J.K., Nuzzo R.G., Whitesides G.M.
Chemical Reviews,
2005
3.
Ermakova A.M., Morozova J.E., Shalaeva Y.V., Syakaev V.V., Nizameev I.R., Kadirov M.K., Antipin I.S., Konovalov A.I.
Mendeleev Communications,
2017
4.
Ogawa T., Furudate M., Oshima Y.
European Journal of Inorganic Chemistry,
2009
5.
Costenaro D., Carniato F., Gatti G., Marchese L., Bisio C.
New Journal of Chemistry,
2014
6.
Microwave-assisted synthesis of magnetic iron oxide nanoparticles in oleylamine–oleic acid solutions
Lastovina T.A., Budnyk A.P., Soldatov M.A., Rusalev Y.V., Guda A.A., Bogdan A.S., Soldatov A.V.
Mendeleev Communications,
2017
7.
Bagwe R.P., Hilliard L.R., Tan W.
Langmuir,
2006
8.
Liberman A., Mendez N., Trogler W.C., Kummel A.C.
Surface Science Reports,
2014
9.
Murray C.B., Norris D.J., Bawendi M.G.
Journal of the American Chemical Society,
1993
10.
Ehrlich H., Shcherba T., Zhilenko M., Lisichkin G.
Materials Letters,
2011
11.
Kochev S.Y., Bubnov Y.N., Abramchuk S.S., Antonova O.Y., Valetsky P.M., Kabachii Y.A.
Mendeleev Communications,
2017
12.
Safronikhin A., Ehrlich H., Lisichkin G.
Applied Surface Science,
2014
13.
Annen T., Epple M.
Dalton Transactions,
2009
14.
Kiel S., Grinberg O., Perkas N., Charmet J., Kepner H., Gedanken A.
Beilstein Journal of Nanotechnology,
2012
15.
Zábori J., Matisāns M., Krejci R., Nilsson E.D., Ström J.
Atmospheric Chemistry and Physics,
2012
16.
Alshawa A., Dopfer O., Harmon C.W., Nizkorodov S.A., Underwood J.S.
Journal of Physical Chemistry A,
2009
17.
Miñambres L., Méndez E., Sánchez M.N., Castaño F., Basterretxea F.J.
Atmospheric Chemistry and Physics,
2014
18.
Finlayson-Pitts B.J.
Physical Chemistry Chemical Physics,
2009
19.
Ehrlich H.V., Kudryavtseva A.D., Lisichkin G.V., Mironova T.V., Savranskii V.V., Tcherniega N.V., Zemskov K.I., Zhilenko M.P.
Journal of Russian Laser Research,
2016
20.
Wilt B.A., Burns L.D., Wei Ho E.T., Ghosh K.K., Mukamel E.A., Schnitzer M.J.
Annual Review of Neuroscience,
2009
21.
Hillerkuss D., Schmogrow R., Schellinger T., Jordan M., Winter M., Huber G., Vallaitis T., Bonk R., Kleinow P., Frey F., Roeger M., Koenig S., Ludwig A., Marculescu A., Li J., et. al.
Nature Photonics,
2011
22.
Telle H.R., Steinmeyer G., Dunlop A.E., Stenger J., Sutter D.H., Keller U.
Applied Physics B: Lasers and Optics,
1999
23.
Zhilenko M.P., Muravieva G.P., Ehrlich H.V., Lisichkin G.V.
Russian Journal of Applied Chemistry,
2016
24.
Moeller T.
The Journal of Physical Chemistry,
1944
25.
Hao C., Zhao Y., Zhou Y., Zhou L., Xu Y., Wang D., Xu D.
Journal of Polymer Science, Part B: Polymer Physics,
2007
26.
Díaz E., Valenciano R.B., Katime I.A.
Journal of Applied Polymer Science,
2004
27.
De Amorim A.M., Franzoi A.C., Oliveira P.N., Pires A.T., Spinelli A., Bertolino J.R.
Journal of Polymer Science, Part B: Polymer Physics,
2009
28.
Koczkur K.M., Mourdikoudis S., Polavarapu L., Skrabalak S.E.
Dalton Transactions,
2015
29.
Hao C., Zhao Y., Dong X., Zhou Y., Xu Y., Wang D., Lai G., Jiang J.
Polymer International,
2009