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1
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84890981261
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Haley, M. M, Tykwinski, R. R, eds, Wiley-VCH, Weinheim, and references therein
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Meier, H. in Carbon-Rich Compounds, From Molecules to Materials, Haley, M. M.; Tykwinski, R. R., eds, Wiley-VCH, Weinheim, 2006, pp 476-528 and references therein.
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(2006)
Carbon-Rich Compounds, From Molecules to Materials
, pp. 476-528
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Meier, H.1
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2
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44349095155
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See for example
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See for example: Laschat, S.; Baro, A.; Steinke, N.; Giesselmann, F.; Hägele, C.; Scalia, G.; Judele, R.; Kapatsina, E.; Sauer, S.; Schreivogel, A.; Tosoni, M. Angew. Chem. 2007, 199, 4916;
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(2007)
Angew. Chem
, vol.199
, pp. 4916
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Laschat, S.1
Baro, A.2
Steinke, N.3
Giesselmann, F.4
Hägele, C.5
Scalia, G.6
Judele, R.7
Kapatsina, E.8
Sauer, S.9
Schreivogel, A.10
Tosoni, M.11
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8
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1642453588
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Lehmann, M.; Fischbach, I.; Spiess, H. W.; Meier, H. J. Am. Chem. Soc. 2004, 126, 772.
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(2004)
J. Am. Chem. Soc
, vol.126
, pp. 772
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Lehmann, M.1
Fischbach, I.2
Spiess, H.W.3
Meier, H.4
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9
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0034600892
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Meier, H.; Lehmann, M.; Kolb, U. Chem. Eur. J. 2000, 1, 2462.
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(2000)
Chem. Eur. J
, vol.1
, pp. 2462
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Meier, H.1
Lehmann, M.2
Kolb, U.3
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10
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0141617474
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See also
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See also: Meier, H.; Karpouk, E.; Lehmann, M.; Schollmeyer, D.; Enkelmann, V. Z. Naturforsch. B 2003, 58, 775.
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(2003)
Z. Naturforsch. B
, vol.58
, pp. 775
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Meier, H.1
Karpouk, E.2
Lehmann, M.3
Schollmeyer, D.4
Enkelmann, V.5
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11
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10044265552
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Attias, A.-J.; Cavalli, C.; Donnio, B.; Guillon, D.; Hapiot, P.; Malthête, J. Mol. Cryst. Liq. Cryst. 2004, 415, 169.
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(2004)
Mol. Cryst. Liq. Cryst
, vol.415
, pp. 169
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Attias, A.-J.1
Cavalli, C.2
Donnio, B.3
Guillon, D.4
Hapiot, P.5
Malthête, J.6
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12
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3142682175
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Holst, H. C.; Pakula, T.; Meier, H. Tetrahedron 2004, 60, 6765.
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(2004)
Tetrahedron
, vol.60
, pp. 6765
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Holst, H.C.1
Pakula, T.2
Meier, H.3
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16
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84944298854
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Meier, H.; Prass, E.; Zerban, G.; Kosteyn, F. Z. Naturforsch. B 1988, 43, 889.
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(1988)
Z. Naturforsch. B
, vol.43
, pp. 889
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Meier, H.1
Prass, E.2
Zerban, G.3
Kosteyn, F.4
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17
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44349090634
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The reaction can be performed without solvent when the generated water is removed by working at 2.1 kPa. The yields of the products are then almost quantitative: 7a (95%), 7b (97%), 7c (98%).
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The reaction can be performed without solvent when the generated water is removed by working at 2.1 kPa. The yields of the products are then almost quantitative: 7a (95%), 7b (97%), 7c (98%).
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19
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0000562771
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See
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See: Meier, H. Angew. Chem. 1992, 104, 1425;
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(1992)
Angew. Chem
, vol.104
, pp. 1425
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Meier, H.1
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44349096580
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-1, respectively. An LC phase of 2c within a small temperature interval above 0°C could not be completely excluded by DSC, but such a possible phase would have no applications in materials science.
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-1, respectively. An LC phase of 2c within a small temperature interval above 0°C could not be completely excluded by DSC, but such a possible phase would have no applications in materials science.
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22
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44349179418
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Extension of the reaction time to 6 h enhances somewhat the yield of the crude product, but makes the purification more difficult
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Extension of the reaction time to 6 h enhances somewhat the yield of the crude product, but makes the purification more difficult.
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