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Nanoelectronic Materials
Where are we heading in terms of nanomaterial synthesis? Two stages will be followed as nanotechnology develops: the “nanobulk” stage and the “nanoworld” stage.
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1.
go back to reference Prasad, P.N.: Introduction to Biophotonics. Wiley-Interscience, New York (2003) CrossRef Prasad, P.N.: Introduction to Biophotonics. Wiley-Interscience, New York (2003)
CrossRef
2.
go back to reference Homola, J., Yee, S.S., Gauglitz, G.: Sens. Actuators B 54, 3–15 (1999) CrossRef Homola, J., Yee, S.S., Gauglitz, G.: Sens. Actuators B
54, 3–15 (1999)
CrossRef
3.
go back to reference Hoa, X.D., Kirk, A.G., Tabrizian, M.: Biosens. Bioelectron. 23, 151–160 (2007) CrossRef Hoa, X.D., Kirk, A.G., Tabrizian, M.: Biosens. Bioelectron.
23, 151–160 (2007)
CrossRef
4.
go back to reference Shalabney, A., Abdulhalim, I.: Laser Photon. Rev. 5, 571–606 (2011) Shalabney, A., Abdulhalim, I.: Laser Photon. Rev.
5, 571–606 (2011)
5.
go back to reference Bedford, E.E., Spadavecchia, J., Pradier, C.M., Gu, F.X.: Macromol. Biosci. 12, 724–739 (2012) CrossRef Bedford, E.E., Spadavecchia, J., Pradier, C.M., Gu, F.X.: Macromol. Biosci.
12, 724–739 (2012)
CrossRef
6.
go back to reference Situ, C., Buijs, J., Mooney, M.H., Elliott, C.T.: Trac-Trends Anal. Chem. 29, 1305–1315 (2010) CrossRef Situ, C., Buijs, J., Mooney, M.H., Elliott, C.T.: Trac-Trends Anal. Chem.
29, 1305–1315 (2010)
CrossRef
7.
go back to reference Szunerits, S., Maalouli, N., Wijaya, E., Vilcot, J.P., Boukherroub, R.: Anal. Bioanal. Chem. 405, 1435–1443 (2013) CrossRef Szunerits, S., Maalouli, N., Wijaya, E., Vilcot, J.P., Boukherroub, R.: Anal. Bioanal. Chem.
405, 1435–1443 (2013)
CrossRef
8.
go back to reference Raether, H.: Surface Plasmons on Smooth and Rough Surfaces and on Gratings. Springer, Berlin (1988) CrossRef Raether, H.: Surface Plasmons on Smooth and Rough Surfaces and on Gratings. Springer, Berlin (1988)
CrossRef
9.
go back to reference Ho, H.P., Lam, W.W.: Sens. Actuators, B 96, 554–559 (2003) CrossRef Ho, H.P., Lam, W.W.: Sens. Actuators, B
96, 554–559 (2003)
CrossRef
10.
go back to reference Ho, H.P., Law, W.C., Wu, S.Y., Liu, X.H., Wong, S.P., Lin, C.L., Kong, S.K.: Sens. Actuators, B 114, 80–84 (2006) CrossRef Ho, H.P., Law, W.C., Wu, S.Y., Liu, X.H., Wong, S.P., Lin, C.L., Kong, S.K.: Sens. Actuators, B
114, 80–84 (2006)
CrossRef
11.
go back to reference Stewart, M.E., Anderton, C.R., Thompson, L.B., Maria, J., Gray, S.K., Rogers, J.A., Nuzzo, R.G.: Chem. Rev. 108, 494–521 (2008) CrossRef Stewart, M.E., Anderton, C.R., Thompson, L.B., Maria, J., Gray, S.K., Rogers, J.A., Nuzzo, R.G.: Chem. Rev.
108, 494–521 (2008)
CrossRef
12.
go back to reference Zeng, S.W., Yu, X., Law, W.C., Zhang, Y., Hu, R., Dinh, X.Q., Ho, H.P., Yong, K.T.: Sens. Actuators, B 176, 1128–1133 (2013) CrossRef Zeng, S.W., Yu, X., Law, W.C., Zhang, Y., Hu, R., Dinh, X.Q., Ho, H.P., Yong, K.T.: Sens. Actuators, B
176, 1128–1133 (2013)
CrossRef
13.
go back to reference Zeng, S.W., Yong, K.T., Roy, I., Dinh, X.Q., Yu, X., Luan, F.: Plasmonics 6, 491–506 (2011) CrossRef Zeng, S.W., Yong, K.T., Roy, I., Dinh, X.Q., Yu, X., Luan, F.: Plasmonics
6, 491–506 (2011)
CrossRef
14.
go back to reference Kabashin, A.V., Evans, P., Pastkovsky, S., Hendren, W., Wurtz, G.A., Atkinson, R., Pollard, R., Podolskiy, V.A., Zayats, A.V.: Nat. Mater. 8, 867–871 (2009) CrossRef Kabashin, A.V., Evans, P., Pastkovsky, S., Hendren, W., Wurtz, G.A., Atkinson, R., Pollard, R., Podolskiy, V.A., Zayats, A.V.: Nat. Mater.
8, 867–871 (2009)
CrossRef
15.
go back to reference Law, W.C., Markowicz, P., Yong, K.T., Roy, I., Baev, A., Patskovsky, S., Kabashin, A.V., Ho, H.P., Prasad, P.N.: Biosens. Bioelectron. 23, 627–632 (2007) CrossRef Law, W.C., Markowicz, P., Yong, K.T., Roy, I., Baev, A., Patskovsky, S., Kabashin, A.V., Ho, H.P., Prasad, P.N.: Biosens. Bioelectron.
23, 627–632 (2007)
CrossRef
16.
go back to reference Lee, K.S., Lee, M., Byun, K.M., Lee, I.S.: J. Mater. Chem. 21, 5156–5162 (2011) CrossRef Lee, K.S., Lee, M., Byun, K.M., Lee, I.S.: J. Mater. Chem.
21, 5156–5162 (2011)
CrossRef
17.
go back to reference Wu, L., Chu, H.S., Koh, W.S., Li, E.P.: Opt. Express 18, 14395–14400 (2010) CrossRef Wu, L., Chu, H.S., Koh, W.S., Li, E.P.: Opt. Express
18, 14395–14400 (2010)
CrossRef
18.
go back to reference Severs, A.H., Schasfoort, R.B.M.: Biosens. Bioelectron. 8, 365–370 (1993) CrossRef Severs, A.H., Schasfoort, R.B.M.: Biosens. Bioelectron.
8, 365–370 (1993)
CrossRef
19.
go back to reference Wink, T., van Zuilen, S.J., Bult, A., van Bennekom, W.P.: Anal. Chem. 70, 827–832 (1998) CrossRef Wink, T., van Zuilen, S.J., Bult, A., van Bennekom, W.P.: Anal. Chem.
70, 827–832 (1998)
CrossRef
20.
go back to reference Liu, Q.T., Boyd, B.J.: Analyst 138, 391–409 (2013) CrossRef Liu, Q.T., Boyd, B.J.: Analyst
138, 391–409 (2013)
CrossRef
21.
go back to reference Han, D., Hwang, H., Park, J.K.: Appl. Phys. Lett. 102, 054105 (2013) CrossRef Han, D., Hwang, H., Park, J.K.: Appl. Phys. Lett.
102, 054105 (2013)
CrossRef
22.
go back to reference Zhang, N., Yu, X., Hu, J., Xue, F., Ding, E.: RSC Adv. 3, 13740–13747 (2013) CrossRef Zhang, N., Yu, X., Hu, J., Xue, F., Ding, E.: RSC Adv.
3, 13740–13747 (2013)
CrossRef
23.
go back to reference Rasch, M.R., Rossinyol, E., Hueso, J.L., Goodfellow, B.W., Arbiol, J., Korgel, B.A.: Nano Lett. 10, 3733–3739 (2010) CrossRef Rasch, M.R., Rossinyol, E., Hueso, J.L., Goodfellow, B.W., Arbiol, J., Korgel, B.A.: Nano Lett.
10, 3733–3739 (2010)
CrossRef
24.
go back to reference Zeng, S., Baillargeat, D., Ho, H.P., Yong, K.T.: Nanomaterials enhanced surface plasmon resonance for biological and chemical sensing applications. Chem. Soc. Rev. 43, 3426–3452 (2014) CrossRef Zeng, S., Baillargeat, D., Ho, H.P., Yong, K.T.: Nanomaterials enhanced surface plasmon resonance for biological and chemical sensing applications. Chem. Soc. Rev.
43, 3426–3452 (2014)
CrossRef
25.
go back to reference Wang, J.L., Munir, A., Zhu, Z.Z., Zhou, H.S.: Anal. Chem. 82, 6782–6789 (2010) CrossRef Wang, J.L., Munir, A., Zhu, Z.Z., Zhou, H.S.: Anal. Chem.
82, 6782–6789 (2010)
CrossRef
26.
go back to reference Wang, J.A., Sun, Y., Wang, L.Y., Zhu, X.N., Zhang, H.Q., Song, D.Q.: Colloids Surf. B 81, 600–606 (2010) CrossRef Wang, J.A., Sun, Y., Wang, L.Y., Zhu, X.N., Zhang, H.Q., Song, D.Q.: Colloids Surf. B
81, 600–606 (2010)
CrossRef
27.
go back to reference Wang, J.L., Zhu, Z.Z., Munir, A., Zhou, H.S.: Talanta 84, 783–788 (2011) CrossRef Wang, J.L., Zhu, Z.Z., Munir, A., Zhou, H.S.: Talanta
84, 783–788 (2011)
CrossRef
28.
go back to reference Wang, L.Y., Sun, Y., Wang, J., Wang, J.A., Yu, A.M., Zhang, H.Q., Song, D.Q.: Colloids Surf. B 84, 484–490 (2011) CrossRef Wang, L.Y., Sun, Y., Wang, J., Wang, J.A., Yu, A.M., Zhang, H.Q., Song, D.Q.: Colloids Surf. B
84, 484–490 (2011)
CrossRef
29.
go back to reference Yu, F., Persson, B., Lofas, S., Knoll, W.: J. Am. Chem. Soc. 126, 8902–8903 (2004) CrossRef Yu, F., Persson, B., Lofas, S., Knoll, W.: J. Am. Chem. Soc.
126, 8902–8903 (2004)
CrossRef
30.
go back to reference Fan, X.D., White, I.M., Shopova, S.I., Zhu, H.Y., Suter, J.D., Sun, Y.Z.: Anal. Chim. Acta 620, 8–26 (2008) CrossRef Fan, X.D., White, I.M., Shopova, S.I., Zhu, H.Y., Suter, J.D., Sun, Y.Z.: Anal. Chim. Acta
620, 8–26 (2008)
CrossRef
31.
go back to reference Granqvist, N., Hanning, A., Eng, L., Tuppurainen, J., Viitala, T.: Sensors 13, 15348–15363 (2013) CrossRef Granqvist, N., Hanning, A., Eng, L., Tuppurainen, J., Viitala, T.: Sensors
13, 15348–15363 (2013)
CrossRef
32.
go back to reference Xia, L.P., Yin, S.Y., Gao, H.T., Deng, Q.L., Du, C.L.: Plasmonics 6, 245–250 (2011) CrossRef Xia, L.P., Yin, S.Y., Gao, H.T., Deng, Q.L., Du, C.L.: Plasmonics
6, 245–250 (2011)
CrossRef
33.
go back to reference Salihoglu, O., Balci, S., Kocabas, C.: Appl. Phys. Lett. 100, 213110 (2012) CrossRef Salihoglu, O., Balci, S., Kocabas, C.: Appl. Phys. Lett.
100, 213110 (2012)
CrossRef
34.
go back to reference Wang, L., Zhu, C.Z., Han, L., Jin, L.H., Zhou, M., Dong, S.J.: Chem. Commun. 47, 7794–7796 (2011) CrossRef Wang, L., Zhu, C.Z., Han, L., Jin, L.H., Zhou, M., Dong, S.J.: Chem. Commun.
47, 7794–7796 (2011)
CrossRef
35.
go back to reference Garnett, E.C., Brongersma, M.L., Cui, Y., McGehee, M.D.: Nanowire solar cells. Annu. Rev. Mater. Res. 41, 269–295 (2011) CrossRef Garnett, E.C., Brongersma, M.L., Cui, Y., McGehee, M.D.: Nanowire solar cells. Annu. Rev. Mater. Res.
41, 269–295 (2011)
CrossRef
36.
go back to reference Hecht, E.: Optics, p. 698. Pearson, San Francisco (2002) Hecht, E.: Optics, p. 698. Pearson, San Francisco (2002)
37.
go back to reference Green, M.A.: Solar Cells: Operating Principles, Technology and System Applications, 274 pp. University New South Wales, Kensington, NSW, Australia (1982) Green, M.A.: Solar Cells: Operating Principles, Technology and System Applications, 274 pp. University New South Wales, Kensington, NSW, Australia (1982)
38.
go back to reference Zhu, J., Yu, Z., Burkhard, G.F., Hsu, C., Connor, S.T., et al.: Optical absorption enhancement in amorphous silicon nanowire and nanocone arrays. Nano Lett. 9(1), 279–282 (2009) CrossRef Zhu, J., Yu, Z., Burkhard, G.F., Hsu, C., Connor, S.T., et al.: Optical absorption enhancement in amorphous silicon nanowire and nanocone arrays. Nano Lett.
9(1), 279–282 (2009)
CrossRef
39.
go back to reference Cao, L., Park, J., Fan, P., Clemens, B., Brongersma, M.L.: Resonant germanium nanoantenna photodetectors. Nano Lett. 10(4), 1229–1233 (2010) CrossRef Cao, L., Park, J., Fan, P., Clemens, B., Brongersma, M.L.: Resonant germanium nanoantenna photodetectors. Nano Lett.
10(4), 1229–1233 (2010)
CrossRef
40.
go back to reference Cao, L., White, J.S., Park, J., Schuller, J.A., Clemens, B.M., Brongersma, M.L.: Engineering light absorption in semiconductor nanowire devices. Nat. Mater. 8(8), 643–647 (2009) CrossRef Cao, L., White, J.S., Park, J., Schuller, J.A., Clemens, B.M., Brongersma, M.L.: Engineering light absorption in semiconductor nanowire devices. Nat. Mater.
8(8), 643–647 (2009)
CrossRef
41.
go back to reference Cao, L., Fan, P., Vasudev, A.P., White, J.S., Yu, Z., et al.: Semiconductor nanowire optical antenna solar absorbers. Nano Lett. 10(2), 439–445 (2010) CrossRef Cao, L., Fan, P., Vasudev, A.P., White, J.S., Yu, Z., et al.: Semiconductor nanowire optical antenna solar absorbers. Nano Lett.
10(2), 439–445 (2010)
CrossRef
42.
go back to reference Cao, L., Fan, P., Barnard, E.S., Brown, A.M., Brongersma, M.L.: Tuning the color of silicon nanostructures. Nano Lett. 10(7), 2649–2654 (2010) CrossRef Cao, L., Fan, P., Barnard, E.S., Brown, A.M., Brongersma, M.L.: Tuning the color of silicon nanostructures. Nano Lett.
10(7), 2649–2654 (2010)
CrossRef
43.
go back to reference Peters, C.H., Guichard, A.R., Hryciw, A.C., Brongersma, M.L., McGehee, M.D.: Energy transfer in nanowire solar cells with photon-harvesting shells. J. Appl. Phys. 105(12), 124509 (2009) CrossRef Peters, C.H., Guichard, A.R., Hryciw, A.C., Brongersma, M.L., McGehee, M.D.: Energy transfer in nanowire solar cells with photon-harvesting shells. J. Appl. Phys.
105(12), 124509 (2009)
CrossRef
44.
go back to reference Ginley, D., Green, M., Collins, R.: Solar energy conversion toward 1 terawatt. MRS Bull. 33(355), 373 (2008) Ginley, D., Green, M., Collins, R.: Solar energy conversion toward 1 terawatt. MRS Bull.
33(355), 373 (2008)
45.
go back to reference Kuykendall, T., Ulrich, P., Aloni, S., Yang, P.: Complete composition tunability of InGaN nanowires using a combinatorial approach. Nat. Mater. 6(12), 951–956 (2007) CrossRef Kuykendall, T., Ulrich, P., Aloni, S., Yang, P.: Complete composition tunability of InGaN nanowires using a combinatorial approach. Nat. Mater.
6(12), 951–956 (2007)
CrossRef
46.
go back to reference Wu, Z., Neaton, J.B., Grossman, J.C.: Quantum confinement and electronic properties of tapered silicon nanowires. Phys. Rev. Lett. 100, 246804 (2008) CrossRef Wu, Z., Neaton, J.B., Grossman, J.C.: Quantum confinement and electronic properties of tapered silicon nanowires. Phys. Rev. Lett.
100, 246804 (2008)
CrossRef
47.
go back to reference Kayes, B.M., Atwater, H.A., Lewis, N.S.: Comparison of the device physics principles of planar and radial p-n junction nanorod solar cells. J. Appl. Phys. 97(11), 114302 (2005) CrossRef Kayes, B.M., Atwater, H.A., Lewis, N.S.: Comparison of the device physics principles of planar and radial
p-n junction nanorod solar cells. J. Appl. Phys.
97(11), 114302 (2005)
CrossRef
48.
go back to reference Law, M., Greene, L.E., Johnson, J.C., Saykally, R., Yang, P.: Nanowire dye-sensitized solar cells. Nat. Mater. 4(6), 455–459 (2005) CrossRef Law, M., Greene, L.E., Johnson, J.C., Saykally, R., Yang, P.: Nanowire dye-sensitized solar cells. Nat. Mater.
4(6), 455–459 (2005)
CrossRef
49.
go back to reference Takanezawa, K., Tajima, K., Hashimoto, K.: Efficiency enhancement of polymer photovoltaic devices hybridized with ZnO nanorod arrays by the introduction of a vanadium oxide buffer layer. Appl. Phys. Lett. 93(6), 063308 (2008) CrossRef Takanezawa, K., Tajima, K., Hashimoto, K.: Efficiency enhancement of polymer photovoltaic devices hybridized with ZnO nanorod arrays by the introduction of a vanadium oxide buffer layer. Appl. Phys. Lett.
93(6), 063308 (2008)
CrossRef
50.
go back to reference Takanezawa, K., Hirota, K., Wei, Q., Tajima, K., Hashimoto, K.: Efficient charge collection with ZnO nanorod array in hybrid photovoltaic devices. J. Phys. Chem. C 111(19), 7218–7223 (2007) CrossRef Takanezawa, K., Hirota, K., Wei, Q., Tajima, K., Hashimoto, K.: Efficient charge collection with ZnO nanorod array in hybrid photovoltaic devices. J. Phys. Chem. C
111(19), 7218–7223 (2007)
CrossRef
51.
go back to reference Tian, B., Zheng, X., Kempa, T.J., Fang, Y., Yu, N., et al.: Coaxial silicon nanowires as solar cells and nanoelectronic power sources. Nature 449(7164), 885–889 (2007) CrossRef Tian, B., Zheng, X., Kempa, T.J., Fang, Y., Yu, N., et al.: Coaxial silicon nanowires as solar cells and nanoelectronic power sources. Nature
449(7164), 885–889 (2007)
CrossRef
52.
go back to reference Kempa, T.J., Tian, B., Kim, D.R., Hu, J., Zheng, X., Lieber, C.M.: Single and tandem axial p- i- n nanowire photovoltaic devices. Nano Lett. 8(10), 3456–3460 (2008) CrossRef Kempa, T.J., Tian, B., Kim, D.R., Hu, J., Zheng, X., Lieber, C.M.: Single and tandem axial
p-
i-
n nanowire photovoltaic devices. Nano Lett.
8(10), 3456–3460 (2008)
CrossRef
53.
go back to reference Fan, Z., Razavi, H., Do, J., Moriwaki, A., Ergen, O., et al.: Three-dimensional nanopillar-array photovoltaics on low-cost and flexible substrates. Nat. Mater. 8(8), 648–653 (2009) CrossRef Fan, Z., Razavi, H., Do, J., Moriwaki, A., Ergen, O., et al.: Three-dimensional nanopillar-array photovoltaics on low-cost and flexible substrates. Nat. Mater.
8(8), 648–653 (2009)
CrossRef
54.
go back to reference Dong, Y., Tian, B., Kempa, T.J., Lieber, C.M.: Coaxial group III-nitride nanowire photovoltaics. Nano Lett. 9(5), 2183–2187 (2009) CrossRef Dong, Y., Tian, B., Kempa, T.J., Lieber, C.M.: Coaxial group III-nitride nanowire photovoltaics. Nano Lett.
9(5), 2183–2187 (2009)
CrossRef
55.
go back to reference Fan, Z., Kapadia, R., Leu, P.W., Zhang, X., Chueh, Y., et al.: Ordered arrays of dual-diameter nanopillars for maximized optical absorption. Nano Lett. 10(10), 3823–3827 (2010) CrossRef Fan, Z., Kapadia, R., Leu, P.W., Zhang, X., Chueh, Y., et al.: Ordered arrays of dual-diameter nanopillars for maximized optical absorption. Nano Lett.
10(10), 3823–3827 (2010)
CrossRef
56.
go back to reference Chan, C.K., Peng, H., Liu, G., McIlwrath, K., Zhang, X.F., et al.: High-performance lithium battery anodes using silicon nanowires. Nat. Nanotechnol. 3(1), 31–35 (2008) CrossRef Chan, C.K., Peng, H., Liu, G., McIlwrath, K., Zhang, X.F., et al.: High-performance lithium battery anodes using silicon nanowires. Nat. Nanotechnol.
3(1), 31–35 (2008)
CrossRef
57.
go back to reference Wu, X.: High-efficiency polycrystalline CdTe thin-film solar cells. Sol. Energy 77(6), 803–814 (2004) CrossRef Wu, X.: High-efficiency polycrystalline CdTe thin-film solar cells. Sol. Energy
77(6), 803–814 (2004)
CrossRef
58.
go back to reference Ramanathan, K., Contreras, M.A., Perkins, C.L., Asher, S., Hasoon, F.S., et al.: Properties of 19.2% efficiency ZnO/CdS/CuInGaSe2 thin-film solar cells. Prog. Photovolt. Res. Appl. 11(4), 225–230 (2003) CrossRef Ramanathan, K., Contreras, M.A., Perkins, C.L., Asher, S., Hasoon, F.S., et al.: Properties of 19.2% efficiency ZnO/CdS/CuInGaSe2 thin-film solar cells. Prog. Photovolt. Res. Appl.
11(4), 225–230 (2003)
CrossRef
59.
go back to reference Hibberd, C.J., Chassaing, E., Liu, W., Mitzi, D.B., Lincot, D., Tiwari, A.N.: Non-vacuum methods for formation of Cu(In, Ga)(Se, S)2 thin film photovoltaic absorbers. Prog. Photovolt. Res. Appl. 18(6), 434–452 (2009) CrossRef Hibberd, C.J., Chassaing, E., Liu, W., Mitzi, D.B., Lincot, D., Tiwari, A.N.: Non-vacuum methods for formation of Cu(In, Ga)(Se, S)2 thin film photovoltaic absorbers. Prog. Photovolt. Res. Appl.
18(6), 434–452 (2009)
CrossRef
60.
go back to reference Green, M., Basore, P., Chang, N., Clugston, D., Egan, R., et al.: Crystalline silicon on glass (CSG) thin-film solar cell modules. Sol. Energy 77(6), 857–863 (2004) CrossRef Green, M., Basore, P., Chang, N., Clugston, D., Egan, R., et al.: Crystalline silicon on glass (CSG) thin-film solar cell modules. Sol. Energy
77(6), 857–863 (2004)
CrossRef
- Title
- Benefits of Nanomaterials and Nanowire Geometry
- DOI
- https://doi.org/10.1007/978-3-030-21621-4_4
- Author:
-
Loutfy H. Madkour
- Publisher
- Springer International Publishing
- Sequence number
- 4
- Chapter number
- 4