13 Creation of Organic-Metal Hybridized Nanocrystals …
267
18. Oikawa, H.: Hybridized organic nanocrystals for optically functional materials. Bull. Chem.
Soc. Jpn 84, 233–250 (2011)
19. Onodera, T., Oikawa, H., Masuhara, A., Kasai, H., Sekiguchi, T., Nakanishi, H.: Silverdeposited polydiacetylene nanocrystals produced by visible-light-driven photocatalytic reduction. Jpn. J. Appl. Phys. 46, L336–L338 (2007)
20. Onodera, T., Ujita, J., Ishikawa, D., Masuhara, A., Kasai, H., Oikawa, H.: Hybridization of
polydiacetylene core and metal shell. ECS Trans. 16, 1–12 (2009)
21. Yokoyama, T., Masuhara, A., Onodera, T., Kasai, H., Oikawa, H.: Development of fabrication
process for Ag/polydiacethylene (core/shell) hybridized nanocrystals. Synth. Met. 159, 897–
899 (2009)
22. Iimori, Y., Onodera, T., Kasai, H., Mitsuishi, M., Miyashita, T., Oikawa, H.: Fabrication of
pseudo single crystalline thin films composed of polydiacetylene nanofibers and their optical
properties. Opt. Mater. Exp. 7, 2218–2223 (2017)
23. Naiki, H., Masuhara, A., Masuo, S., Onodera, T., Kasai, H., Oikawa, H.: Highly controlled plasmonic emission enhancement from metal-semiconductor quantum dot complex nanostructures.
J. Phys. Chem. C 117, 2455–2459 (2013)
24. Wang, X.D., Shen, Z.X., Sang, T., Cheng, X.B., Li, M.-F., Chen, L.-Y., Wang, Z.-S.: Preparation of spherical silica particles by Stöber process with high concentration of tetra-ethylorthosilicate. J. Colloid Interface Sci. 341, 23–29 (2010)
25. Lakowicz, J.R.: Radiative decay engineering 1: Biophysical and biomedical applications. Anal.
Biochem. 298, 1–24 (2001)
26. Lakowicz, J.R., Shen, Y., D’Auria, S., Malicka, J., Fang, J., Gryczynski, Z., Gryczynski, I.:
Radiative decay engineering 2. Effects of silver island films on fluorescence intensity, lifetimes,
and resonance energy transfer. Anal. Biochem. 301, 261–277 (2002)
27. Li, F., Li, G.Z., Wang, H.Q., Xue, Q.J.: Studies on cetyltrimethylammonium bromide (CTAB)
micellar solution and CTAB reversed microemulsion by ESR and 2 H NMR. Colloids Surfaces
A Physicochem. Eng. Aspects 127, 89–96 (1997)
28. Jin, R.C., Cao, Y.W., Mirkin, C.A., Kelly, K.L., Schatz, G.C., Zheng, J.G.: Photoinduced
conversion of silver nanospheres to nanoprisms. Science 294, 1901–1903 (2001)
29. Murphy, C.J., Jana, N.R.: Controlling the aspect ratio of inorganic nanorods and nanowires.
Adv. Mater. 14, 80–82 (2002)
30. Chen, S.H., Wang, Z.L., Ballato, J., Foulger, S.H., Carroll, D.L.: Monopod, bipod, tripod, and
tetrapod gold nanocrystals. J. Am. Chem. Soc. 125, 16186–16187 (2003)
31. Sakamoto, N., Onodera, T., Dezawa, T., Shibata, Y., Oikawa, H.: Highly enhanced emission of
visible light from core-dual-shell type hybridized nanoparticles. Part. Part. Syst. Charact. 34,
1700258-1–1700258-8 (2017)
32. Neeves, A.E., Birnboim, M.H.: Composite structures for the enhancement of nonlinear-optical
susceptibility. J. Opt. Soc. Am. B 6, 787–796 (1989)
33. Nghiem, T.H.L., Le, T.N., Do, T.H., Vu, T.T.D., Do, Q.H., Tran, H.N.: Preparation and
characterization of silica-gold core-shell nanoparticles. J. Nanopart. Res. 15, 2091-1–2091-9
(2013)
34. Liang, Z.S., Liu, Y., Ng, S.S., Li, X.Y., Lai, L.H., Liu, S.Y.: The effect of pH value on the
formation of gold nanoshells. J. Nanopart. Res. 13, 3301–3311 (2011)
35. Shi, W.L., Sahoo, Y., Swihart, M.T., Prasad, P.N.: Gold nanoshells on polystyrene cores for
control of surface plasmon resonance. Langmuir 21, 1610–1617 (2005)
36. Sato, R., Momida, H., Ohnuma, M., Sasase, M., Ohno, T., Kishimoto, N., Takeda, Y.: Experimental dispersion of the third-order optical susceptibility of Ag nanoparticles. J. Opt. Soc. Am.
B 29, 2410–2413 (2012)
37. Sato, R., Ohnuma, M., Oyoshi, K., Takeda, Y.: Experimental investigation of nonlinear optical
properties of Ag nanoparticles: effects of size quantization. Phys. Rev. B 90, 1254171-1–
1254171-6 (2014)
38. Sato, R., Ohnuma, M., Oyoshi, K., Takeda, Y.: Spectral investigation of nonlinear local field
effects in Ag nanoparticles. J. Appl. Phys. 117, 113101-1–113101-6 (2015)
267
18. Oikawa, H.: Hybridized organic nanocrystals for optically functional materials. Bull. Chem.
Soc. Jpn 84, 233–250 (2011)
19. Onodera, T., Oikawa, H., Masuhara, A., Kasai, H., Sekiguchi, T., Nakanishi, H.: Silverdeposited polydiacetylene nanocrystals produced by visible-light-driven photocatalytic reduction. Jpn. J. Appl. Phys. 46, L336–L338 (2007)
20. Onodera, T., Ujita, J., Ishikawa, D., Masuhara, A., Kasai, H., Oikawa, H.: Hybridization of
polydiacetylene core and metal shell. ECS Trans. 16, 1–12 (2009)
21. Yokoyama, T., Masuhara, A., Onodera, T., Kasai, H., Oikawa, H.: Development of fabrication
process for Ag/polydiacethylene (core/shell) hybridized nanocrystals. Synth. Met. 159, 897–
899 (2009)
22. Iimori, Y., Onodera, T., Kasai, H., Mitsuishi, M., Miyashita, T., Oikawa, H.: Fabrication of
pseudo single crystalline thin films composed of polydiacetylene nanofibers and their optical
properties. Opt. Mater. Exp. 7, 2218–2223 (2017)
23. Naiki, H., Masuhara, A., Masuo, S., Onodera, T., Kasai, H., Oikawa, H.: Highly controlled plasmonic emission enhancement from metal-semiconductor quantum dot complex nanostructures.
J. Phys. Chem. C 117, 2455–2459 (2013)
24. Wang, X.D., Shen, Z.X., Sang, T., Cheng, X.B., Li, M.-F., Chen, L.-Y., Wang, Z.-S.: Preparation of spherical silica particles by Stöber process with high concentration of tetra-ethylorthosilicate. J. Colloid Interface Sci. 341, 23–29 (2010)
25. Lakowicz, J.R.: Radiative decay engineering 1: Biophysical and biomedical applications. Anal.
Biochem. 298, 1–24 (2001)
26. Lakowicz, J.R., Shen, Y., D’Auria, S., Malicka, J., Fang, J., Gryczynski, Z., Gryczynski, I.:
Radiative decay engineering 2. Effects of silver island films on fluorescence intensity, lifetimes,
and resonance energy transfer. Anal. Biochem. 301, 261–277 (2002)
27. Li, F., Li, G.Z., Wang, H.Q., Xue, Q.J.: Studies on cetyltrimethylammonium bromide (CTAB)
micellar solution and CTAB reversed microemulsion by ESR and 2 H NMR. Colloids Surfaces
A Physicochem. Eng. Aspects 127, 89–96 (1997)
28. Jin, R.C., Cao, Y.W., Mirkin, C.A., Kelly, K.L., Schatz, G.C., Zheng, J.G.: Photoinduced
conversion of silver nanospheres to nanoprisms. Science 294, 1901–1903 (2001)
29. Murphy, C.J., Jana, N.R.: Controlling the aspect ratio of inorganic nanorods and nanowires.
Adv. Mater. 14, 80–82 (2002)
30. Chen, S.H., Wang, Z.L., Ballato, J., Foulger, S.H., Carroll, D.L.: Monopod, bipod, tripod, and
tetrapod gold nanocrystals. J. Am. Chem. Soc. 125, 16186–16187 (2003)
31. Sakamoto, N., Onodera, T., Dezawa, T., Shibata, Y., Oikawa, H.: Highly enhanced emission of
visible light from core-dual-shell type hybridized nanoparticles. Part. Part. Syst. Charact. 34,
1700258-1–1700258-8 (2017)
32. Neeves, A.E., Birnboim, M.H.: Composite structures for the enhancement of nonlinear-optical
susceptibility. J. Opt. Soc. Am. B 6, 787–796 (1989)
33. Nghiem, T.H.L., Le, T.N., Do, T.H., Vu, T.T.D., Do, Q.H., Tran, H.N.: Preparation and
characterization of silica-gold core-shell nanoparticles. J. Nanopart. Res. 15, 2091-1–2091-9
(2013)
34. Liang, Z.S., Liu, Y., Ng, S.S., Li, X.Y., Lai, L.H., Liu, S.Y.: The effect of pH value on the
formation of gold nanoshells. J. Nanopart. Res. 13, 3301–3311 (2011)
35. Shi, W.L., Sahoo, Y., Swihart, M.T., Prasad, P.N.: Gold nanoshells on polystyrene cores for
control of surface plasmon resonance. Langmuir 21, 1610–1617 (2005)
36. Sato, R., Momida, H., Ohnuma, M., Sasase, M., Ohno, T., Kishimoto, N., Takeda, Y.: Experimental dispersion of the third-order optical susceptibility of Ag nanoparticles. J. Opt. Soc. Am.
B 29, 2410–2413 (2012)
37. Sato, R., Ohnuma, M., Oyoshi, K., Takeda, Y.: Experimental investigation of nonlinear optical
properties of Ag nanoparticles: effects of size quantization. Phys. Rev. B 90, 1254171-1–
1254171-6 (2014)
38. Sato, R., Ohnuma, M., Oyoshi, K., Takeda, Y.: Spectral investigation of nonlinear local field
effects in Ag nanoparticles. J. Appl. Phys. 117, 113101-1–113101-6 (2015)
