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1
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84929467478
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Brus, L. IEEE J. Quantum Electron. 1986, QE-22, (9), 1909-1914 and papers therein.
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IEEE J. Quantum Electron.
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Brus, L.1
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3
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0005765912
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(b) Yang, J.; Meldrum, F. C.; Fendler, J. H. J. Phys. Chem. 1995, 99, 5500-5504.
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Yang, J.1
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Wang, Y.; Suna, A.; Mahler, W.; Kasowski, R. J. Chem. Phys. 1987, 87, 7315-7322.
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Wang, Y.1
Suna, A.2
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Kasowski, R.4
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7
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0000939999
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Murray, C. B.; Norris, D. J.; Bawendi, M. G. J. Am. Chem. Soc. 1993, 115, 8706-8715.
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J. Am. Chem. Soc.
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Murray, C.B.1
Norris, D.J.2
Bawendi, M.G.3
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12
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0000540387
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(b) Lindblom, G.; Larsson, K.; Johansson, L.; Fontell, K.; Forsen, S. J. Am. Chem. Soc. 1979, 101, 5465.
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Lindblom, G.1
Larsson, K.2
Johansson, L.3
Fontell, K.4
Forsen, S.5
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16
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0028768968
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Puvvada, S.; Baral, S.; Chow, G. M.; Qadri, S. B.; Ratna, B. R. J. Am. Chem. Soc. 1994, 116, 2135-2136.
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Puvvada, S.1
Baral, S.2
Chow, G.M.3
Qadri, S.B.4
Ratna, B.R.5
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17
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85033048312
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BCP is optically isotropic because of its cubic symmetry and therefore appears dark between crossed polarizers. On the other hand, the lamellar and hexagonal phases which exist on either side of BCP in the phase diagram (see Figure 3) are highly birefringent
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BCP is optically isotropic because of its cubic symmetry and therefore appears dark between crossed polarizers. On the other hand, the lamellar and hexagonal phases which exist on either side of BCP in the phase diagram (see Figure 3) are highly birefringent.
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18
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85033056569
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The particle does not appear to change during isolation and thiol capping. The thio-capped particles are stable and can be redispersed in organic solvents
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The particle does not appear to change during isolation and thiol capping. The thio-capped particles are stable and can be redispersed in organic solvents.
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22
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85033055193
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The unit cell size of 68.0 Å, calculated using the diffraction spots from {211} and {220} planes, agrees with the earlier reported value of 69.0 Å for AOT/water ratio of 75/25 wt %.
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The unit cell size of 68.0 Å, calculated using the diffraction spots from {211} and {220} planes, agrees with the earlier reported value of 69.0 Å for AOT/water ratio of 75/25 wt %.
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23
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0024754623
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(a) Gallardo, S.; Gutierrez, M.; Henglein, A; Janata, E. Ber BunsenGes. Phys. Chem. 1989, 93, 1080-1090.
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Ber BunsenGes. Phys. Chem.
, vol.93
, pp. 1080-1090
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Gallardo, S.1
Gutierrez, M.2
Henglein, A.3
Janata, E.4
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24
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33751552762
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(b) Nenadovic, M. T.; Comor, M. I.; Vasic, V.; Micic, O. I. J. Phys. Chem. 1990, 94, 6390-6396.
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J. Phys. Chem.
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Nenadovic, M.T.1
Comor, M.I.2
Vasic, V.3
Micic, O.I.4
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25
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85033064075
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Two other peaks in the absorption spectra (Figure 6a of ref 19b) observed around 300 and 400 nm are due to poly(vinyl alcohol)
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Two other peaks in the absorption spectra (Figure 6a of ref 19b) observed around 300 and 400 nm are due to poly(vinyl alcohol).
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26
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85033068886
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Reference 15, p 102
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Reference 15, p 102.
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27
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85033054412
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(220) = 2.1 Å nm
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(220) = 2.1 Å nm.
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28
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0029221901
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Gacoin, T.; Boilot, J. P.; Gandais, M.; Ricolleau, C.; Chamarro, M. Mater. Res. Soc. Symp. Proc. 1995, 358, 247-252.
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(1995)
Mater. Res. Soc. Symp. Proc.
, vol.358
, pp. 247-252
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Gacoin, T.1
Boilot, J.P.2
Gandais, M.3
Ricolleau, C.4
Chamarro, M.5
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