Preparation of reagent indicator papers with silver triangular nanoplates for chemical analysis
Tóm tắt
An impregnation method to prepare reagent indicator papers with silver triangular nanoplates (TNPs) is developed. The conditions for obtaining modified papers (type of paper, method for applying TNPs, and drying conditions) allowing for an acceptably uniform distribution of the TNPs are chosen. The spectral characteristics of the prepared materials are studied. The presence of an intense TNP surface plasmon resonance band in the diffuse reflectance spectra of the modified papers, which is linearly related to the content of the TNPs in the samples, as well as the lability of its position and shape in the presence of some substances, gives rise to the prospects of using the prepared materials as test-tools in chemical analysis.
Tài liệu tham khảo
Gorbunova, M.O., Kononova, A.Yu., and Vtulkina, V.E., Voda: Khim. Ekol., 2014, no. 3, p. 84.
Gorbunova, M.O., Kononova, A.Yu., and Vtulkina, V.E., Voda: Khim. Ekol., 2014, no. 12, p. 83.
Gorbunova, M.O. and Abakumova, Yu.V., Voda: Khim. Ekol., 2012, no. 3, p. 95.
Reshetnyak, E.A., Shevchenko, V.N., Ostrovskaya, V.M., Bondarenko, Ya.A., and Bryleva, E.Yu., Voda: Khim. Ekol., 2015, no. 2, p. 65.
Ostrovskaya, V.M., Sereda, V.V., Prokopenko, O.A., Buryak, A.K., Sergeev, S.M., and Stolyarov, I.P., Chem. Technol. Fuels Oils, 2013, vol. 49, no. 5, p. 444.
Apyari, V.V., Arkhipova, V.V., Dmitrienko, S.G., and Zolotov, Yu.A., J. Anal. Chem., 2014, vol. 69, no. 1, p. 1.
Arkhipova, V.V., Apyari, V.V., and Dmitrienko, S.G., Moscow Univ. Chem. Bull. (Engl. Transl.), 2015, vol. 70, no. 1, p. 28.
Teerasong, S., Sani, M., Numsawat, P., Martchoo, R., Chompoosor, A., and Nacapricha, D., J. Exp. Nanosci., 2015, vol. 10, p. 1327.
Gavrilenko, N., Saranchina, N., and Gavrilenko, M., Adv. Mater. Res., 2014, vol. 1040, p. 923.
Dykman, L.A., Bogatyrev, V.A., Shchegolev, S.Yu., and Khlebtsov, N.G., Zolotye nanochastitsy. Sintez, svoistva, biomeditsinskoe primenenie (Gold Nanoparticles: Synthesis, Properties, Biomedical Application), Moscow, 2008.
Wang, Z. and Lina, M., Coord. Chem. Rev., 2009, vol. 253, p. 1607.
Ghosh, S.K. and Pal, T., Chem. Rev., 2007, vol. 107, p. 4797.
Terenteva, E.A., Apyari, V.V., Dmitrienko, S.G., and Zolotov, Yu.A., Spectrochim. Acta, Part A, 2015, vol. 151, p. 89.
Arkhipova, V.V., Apyari, V.V., and Dmitrienko, S.G., Spectrochim. Acta, Part A, 2015, vol. 139, p. 335.
Giannoulis, K.M., Giokas, D.L., Tsogas, G.Z., and Vlessidis, A.G., Talanta, 2014, vol. 119, p. 276.
Jinnarak, A. and Teerasong, S., Sens. Actuators, B, 2016, vol. 229, p. 315.
Artemyeva, A.A., Samarina, T.O., Sharov, A.V., Abramchuk, S.S., Ovcharenko, E.O., Dityuk, A.I., Efimov, K.M., and Beklemishev, M.K., Microchim. Acta, 2015, vol. 182, p. 965.
Kappi, F.A., Tsogas, G.Z., Giokas, D.L., Christodouleas, D.C., and Vlessidis, A.G., Microchim. Acta, 2014, vol. 181, p. 623.
Slocik, J.M., Zabinski, J.SJr., Phillips, D.M., and Naik, R.R., Small, 2008, vol. 4, no. 5, p. 548.
Bi, N., Chen, Y., Qi, H., Zheng, X., Chen, Y., Liao, X., Zhang, H., and Tian, Y., Spectrochim. Acta, Part A, 2012, vol. 95, p. 276.
Kado, S., Furui, A., Akiyama, Y., Nakahara, Y., and Kimura, K., Anal. Sci., 2009, vol. 25, no. 5, p. 261.
Zhang, F.X., Han, L., Israel, L.B., Daras, J.G., Maye, M.M., Ly, N.K., and Zhong, C.-J., Analyst, 2002, vol. 127, p. 462.
Tashkhourian, J., Hormozi-Nezhad, M.R., and Fotovat, M., Spectrosc. Lett., 2013, vol. 46, p. 73.
Jiang, X.C. and Yu, A.B., Langmuir, 2008, vol. 24, p. 4300.
Heider, E.C., Trieu, K., Moore, A.F.T., and Campiglia, A.D., Talanta, 2012, vol. 99, p. 180.
Cai, H.-H., Lin, D., Wang, J., Yang, P.-H., and Cai, J., Sens. Actuators, B, 2014, vol. 196, p. 252.
Yang, X.-H., Ling, J., Peng, J., Cao, Q.-E., Ding, Z.-T., and Bian, L.-C., Anal. Chim. Acta, 2013, vol. 798, p. 74.
Apyari, V.V., Dmitrienko, S.G., and Zolotov, Yu.A., Sens. Actuators, B, 2013, vol. 188, p. 1109.
Apyari, V.V., Dmitrienko, S.G., Batov, I.V., and Zolotov, Yu.A., J. Anal. Chem., 2011, vol. 66, no. 2, p. 144.
Marchenko, D.Yu., Petrov, S.I., Sandzhieva, D.A., and Dedov, A.G., Theor. Found. Chem. Eng., 2016, vol. 50, no. 4, p. 648.
Metraux, G.S. and Mirkin, C.A., Adv. Mater., 2005, vol. 17, p. 412.
Millstone, J.E., Hurst, S.J., Metraux, G.S., Cutler, J.I., and Mirkin, C.A., Small, 2009, vol. 5, p. 646.