-
T. A. Kravchenko, E. A. Sakardina, A. I. Kalinichev, E. V. Zolotukhina, Russ. J. Phys. Chem, 89:9 (2015), 1648
-
T. A. Kuchmenko, R. U. Umarkhanov, S. S. Grazhulene, S. V. Zaglyadova, V. M. Shkinev, J. Synch. Investig, 8:2 (2014), 312
-
Yu. N. Morozov, A. Yu. Utekhina, V. P. Shabatin, V. V. Chernyshev, G. B. Sergeev, Russ J Gen Chem, 84:5 (2014), 1010
-
V. V. Tomaev, Yu. V. Petrov, Glass Phys Chem, 40:6 (2014), 617
-
Cheng Peng, Yanli Liu, Appl. Phys. A, 111:4 (2013), 1151
-
G.B. Sergeev, K.J. Klabunde, Nanochemistry, 2013, 235
-
Dachi Yang, Luis Valentín, Jennifer Carpena, Wilfredo Otaño, Oscar Resto, Luis F. Fonseca, Small, 2012, n/a
-
V. Babayan, N.E. Kazantseva, I. Sapurina, R. Moučka, J. Vilčáková, J. Stejskal, Applied Surface Science, 2012
-
Donato N., Neri G., Nanosci. Nanotechnol. Lett., 4:3, SI (2012), 211–227
-
David B. Wallace, Inkjet Technology for Digital Fabrication, 2012, 141
-
David Wallace, Advanced Micro and Nanosystems, Inkjet‐Based Micromanufacturing, 2012, 1
-
Tseng Sh.-Ch., Chen H.-L., Yu Ch.-Ch., Lai Yu.-Sh., Liu H.-W., Energy Environ. Sci., 4:12 (2011), 5020–5027
-
Utekhina A.Yu., Sergeev G.B., Russ. Chem. Rev., 80:3 (2011), 219–233
-
Sandeep P. Ravindranath, Kristene L. Henne, Dorothea K. Thompson, Joseph Irudayaraj, Wei-Chun Chin, PLoS ONE, 6:2 (2011), e16634
-
V. E. Bochenkov, G. B. Sergeev, Catal. Ind, 2:1 (2010), 1
-
Yu. A. Zolotov, J Anal Chem, 65:12 (2010), 1207
-
Badamshina E.R., Gafurova M.P., Estrin Ya.I., Russ. Chem. Rev., 79:11 (2010), 945–979
-
Sapurina I.Yu. Stejskal J., Russ. Chem. Rev., 79:12 (2010), 1123–1143
-
Tien N.A., Almjasheva O.V., Mittova I.Ya., Stognei O.V., Soldatenko S.A., Inorg. Mater., 45:11 (2009), 1304–1308
-
Mukhin M.S., Zagorskii V.V., Bochenkov V.E., Sergeev G.B., Russ. J. Phys. Chem. A, 83:7 (2009), 1165–1169