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15
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0.4-MPGN-Zn(II) due to electrostatic effects, as in metallomicelles; see: Bunton, C. A.; Scrimin, P.; Tecilla, P. J. Chem. Soc., Perkin Trans. 2 1996, 419-213.
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0.4-MPGN-Zn(II) due to electrostatic effects, as in metallomicelles; see: Bunton, C. A.; Scrimin, P.; Tecilla, P. J. Chem. Soc., Perkin Trans. 2 1996, 419-213.
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16
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17
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56749089175
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6.5 at 25°C (data from ref 5), which ensures more than 90% complex formation.
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6.5 at 25°C (data from ref 5), which ensures more than 90% complex formation.
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19
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0037199885
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Ichikawa, K.; Tarnai, M.; Uddin, M. K.; Nakata, K.; Sato, S. J. Inorg. Biochem. 2002, 91, 437-450.
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10744224847
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Arca, M.; Bencini, A.; Berni, E.; Caltagirone, C.; Devillanova, F. A.; Isaia, F.; Garau, A.; Giorgi, C.; Lippolis, V.; Perra, A.; Tei, L.; Valtancoli, B. Inorg. Chem. 2003, 42, 6929-6939.
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22
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56749126680
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Precipitation of the nanoparticles in the presence of an excess of the lipophilic BNP was observed with 10.4-MPGN
-
0.4-MPGN.
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23
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0037699582
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For cooperation in substrate binding and catalysis by functional units arranged on a surface see: a
-
For cooperation in substrate binding and catalysis by functional units arranged on a surface see: (a) Major, R. C.; Zhu, X.-Y. J. Am. Chem. Soc. 2003, 125, 8454-8455.
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Basabe-Desmonts, L.; Reinhoudt, D. N.; Crego-Calama, M. Chem. Soc. Rev 2007, 36, 993-1017; see also ref 3.
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(b) Basabe-Desmonts, L.; Reinhoudt, D. N.; Crego-Calama, M. Chem. Soc. Rev 2007, 36, 993-1017; see also ref 3.
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25
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56749167137
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DNA precipitation occurs when the overall concentration of metal complex exceeds that of the DNA (24 μM in residues).
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DNA precipitation occurs when the overall concentration of metal complex exceeds that of the DNA (24 μM in residues).
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26
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0030809044
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-1; see: Hettich, R.; Schneider, H.-J. J. Am. Chem. Soc. 1997, 119, 5638-5647.
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-1; see: Hettich, R.; Schneider, H.-J. J. Am. Chem. Soc. 1997, 119, 5638-5647.
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27
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Branum, M. E.; Tipton, A. K.; Zhu, S.; Que, L., Jr. J. Am. Chem. Soc. 1996, 123, 1998-1904.
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