Open Access

Synthesis and electrical properties of silver nanoplates for electronic applications


Cite

[1] SUN Y., XIA Y., Adv. Mater., 15 (9) (2003), 695.10.1002/adma.200304652Search in Google Scholar

[2] CHEN S., CARROLL D., J. Phys. Chem. B, 108 (2004), 5500.10.1021/jp031077nSearch in Google Scholar

[3] WILEY B.J., WANG Z., WEI J., YIN Y., COBDEN D.H., XIA Y., Nano Lett., 6 (10) (2006), 2273.10.1021/nl061705n17034096Search in Google Scholar

[4] JIN R., CAO Y., MIRKIN C.A., KELLY K.L., SCHATZ G.C., ZHENG J.G., Science, 294 (2001), 1901.10.1126/science.106654111729310Search in Google Scholar

[5] KELLY K.L., CORONADO E., ZHAO L.L., SCHATZ G.C., J. Phys. Chem. B, 107 (3) (2003), 668.10.1021/jp026731ySearch in Google Scholar

[6] ZHANG J., LI S., WU J., SCHATZ G.C., MIRKIN C.A., Angew. Chem. Int. Edit., 48 (42) (2009), 7787.10.1002/anie.200903380354763219760687Search in Google Scholar

[7] BANHOLZER M.J., OSBERG K.D., LI S., MANGELSON B.F., SCHATZ G.C., MIRKIN C.A., ACS Nano, 284 (9) (2010), 5446.10.1021/nn101231u20687607Search in Google Scholar

[8] TANG B., XU S., HOU X., LI J., SUN L., XU W., WANG X., ACS Appl. Mater. Inter., 5 (3) (2013), 646.10.1021/am302072u23298387Search in Google Scholar

[9] KIM Y.K., MIN D.H., RSC Adv., 4 (14) (2014), 6950.10.1039/c3ra44280bSearch in Google Scholar

[10] YANG Y., ZHONG X.L., ZHANG Q., BLACKSTAD L.G., FU Z.W., LI Z.Y., QIN D., Small, 10 (7) (2014), 1430.10.1002/smll.20130287724339345Search in Google Scholar

[11] LI Z., MENG G., LIANG T., ZHANG Z., ZHU X., Appl. Surf. Sci., 264 (2013), 383.10.1016/j.apsusc.2012.10.031Search in Google Scholar

[12] ZHANG R.W., MOON K.S., LIN W., WONG C.P., J. Mater. Chem., 20 (2010), 2018.10.1039/b921072eSearch in Google Scholar

[13] ZHANG Z.X., CHEN X.Y., XIAO F., Polym. Advan. Technol., 25 (2011), 1465.10.1163/016942410X549924Search in Google Scholar

[14] LAI Y., PAN W., ZHANG D., ZHAN J., Nanoscale, 3 (5) (2011), 2134.10.1039/c0nr01030h21451843Search in Google Scholar

[15] ZENG J., TAO J., LI W., GRANT J., WANG P., ZHU Y., XIA Y., Chem.-Asian J., 6 (2) (2011), 376.10.1002/asia.20100072821254414Search in Google Scholar

[16] CAO Z.W., FU H.B., KANG L., HUANG L.W., ZHAI T.Y., MA Y., YAO J.N., FU H.B., J. Mater. Chem., 18 (23) (2006), 2673.10.1039/b800691aSearch in Google Scholar

[17] XIONG Y., SIEKKINEN A.R., WANG J., J. Mater. Chem., 17 (25) (2007), 2600.10.1039/b705253gSearch in Google Scholar

[18] WASHIO Y., XIONG Y., YIN Y., XIA Y., Adv. Mater., 18 (2006), 1745.10.1002/adma.200600675Search in Google Scholar

[19] WANG Y.H., ZHANG Q., WANG T., ZHOU J., Chinese J. Inorg. Chem., 26 (3) (2010), 365.Search in Google Scholar

[20] LI N., ZHANG Q., QUINLIVAN S., GOEBL J., GAN Y., YIN Y., ChemPhysChem, 13 (2012), 2526.10.1002/cphc.20110101822298378Search in Google Scholar

[21] PARK J., YOON D.-Y., KIM Y., Korean J. Chem. Eng., 26 (1) (2009), 258.10.1007/s11814-009-0043-8Search in Google Scholar

[22] ROH J., PARK E.-J., PARK K., YI J., KIM Y., J. Chem. Eng., 27 (6) (2010), 1897.10.1007/s11814-010-0299-zSearch in Google Scholar

[23] CHEN D., QIAO X., QIU X., CHEN J., JIANG R., J. Mater. Sci.-Mater. El., 22 (2011), 6.10.1007/s10854-010-0074-2Search in Google Scholar

[24] ZHANG W.C., WU X.L., CHEN H.T., GAO Y.J., ZHU J., HUANG G.S., CHU P.K., Acta Mater, 56 (1) (2008), 2508.10.1016/j.actamat.2008.01.043Search in Google Scholar

[25] ZENG J., XIA X., RYCNEGA M., HENNEGHAN P., XIA Y., Angew. Chem. Int. Edit., 50 (1) (2011), 244.10.1002/anie.20100554921038402Search in Google Scholar

[26] CHEN D., ZHU X., ZHU G., QIAO X., CHEN J., J. Mater. Sci.-Mater. El., 23 (2012), 625.10.1007/s10854-011-0455-1Search in Google Scholar

[27] IM S.H., LEE Y.T., WILEY B., XIA Y., Angew. Chem. Int. Edit., 44 (2005), 2154.10.1002/anie.20046220815739241Search in Google Scholar

[28] WANG H., ZHANG Q., WANG T., ZHOU J., Int. Mater. Rev., 22 (3) (2008), 144.Search in Google Scholar

[29] WANG Y.H., WANG T., ZHOU J., Chinese J. Inorg. Chem., 23 (8) (2007), 1485.Search in Google Scholar

[30] LI Y., MOON K.S., WONG C.P., J. Electron. Mater., 99 (2006), 1573.Search in Google Scholar

[31] CUI H.W., LI D.S., FAN Q., Electron. Mater. Lett., 9 (2013), 299.10.1007/s13391-013-2243-ySearch in Google Scholar

[32] LU D.D., LI Y.G., WONG C.P., J. Adhes. Sci. Technol., 22 (2008), 815.10.1163/156856108X305471Search in Google Scholar

[33] JIN R.C., CAO Y.C., HAO E.C., METRAUX G.S., SCHATZ G.C., MIRKIN C.A., Nature, 425 92003), 487.10.1038/nature0202014523440Search in Google Scholar

[34] SHERRY L.J., JIN R.C.,MIRKIN C.A., SCHATZ G.C., VAN DUYNE R.P., Nano Lett., 6 (9) (2006), 2060.10.1021/nl061286u16968025Search in Google Scholar

[35] HAO E., SCHATZ G., HUPP J., J. Fluoresc., 14 (4) (2004), 331.10.1023/B:JOFL.0000031815.71450.74Search in Google Scholar

[36] PASTORIZA-SANTOS I., LIZ-MARZ´A N L.M., Nano Lett., 2 (2002), 903.10.1021/nl025638iSearch in Google Scholar

eISSN:
2083-134X
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Materials Sciences, other, Nanomaterials, Functional and Smart Materials, Materials Characterization and Properties