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36348946803
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This assignment is not absolute, but the bond is relevant to a bond frequency in [Pt(mnt)2]n, The corresponding band in (NBu4)2-[PtII(mnt)2] and (NBu4)[PtIII(mnt)2] was observed at 1383 and 1381 cm-1, respectively. For K[PtIII(mnt)2, see ref 26
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36348961210
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-1, respectively, as a strong sharp peak.
-
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-
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49
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0035926237
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2], was observed only on electrochemical oxidation: Geiger, W. E.; Barriére, F.; LeSuer, R. J.; Trupia, S. Inorg. Chem. 2001, 40, 2472.
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50
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33746916065
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Similar behavior neglecting the magnetic contribution of non-integer conducting columns can be seen in the following literature: Takahashi, K, Cui, H.-B, Okano, Y, Kobayashi, H, Einaga, Y, Sato, O. Inorg. Chem. 2006, 45, 5739. Nevertheless, the treatment taking into account the contribution of four non-interacting S, 1/2 spins from the [Pt(mnt)2, units was also tried for conparison ref 33
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0035959042
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55
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0001584175
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-1 was considered in the present simulation.
-
-1 was considered in the present simulation.
-
-
-
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56
-
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36349031090
-
-
B = 10.90(10) K, but the obtained g value is very small.
-
B = 10.90(10) K, but the obtained g value is very small.
-
-
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57
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33745669311
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34547656341
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59
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36349037061
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-
T = 9. See refs 9a and 9b.
-
T = 9. See refs 9a and 9b.
-
-
-
-
60
-
-
36348990111
-
-
g = D(2S-1). For 1 and 2, assuming that S = 9 and D < 0, 17D ≈ 90.1 GHz and 17D ≈ 104.8 GHz, respectively. See ref 37.
-
g = D(2S-1). For 1 and 2, assuming that S = 9 and D < 0, 17D ≈ 90.1 GHz and 17D ≈ 104.8 GHz, respectively. See ref 37.
-
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61
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33745275591
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Oshima, Y.; Nojiri, H.; Asakura, K.; Sakai, T.; Yamashita, M.; Miyasaka, H. Phys. Rev. B 2006, 73, 214435.
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62
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36348979807
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-
A quantitative analysis is difficult for the use of a powder specimen because we cannot separate between the change of line width and the distribution of the shift for the powder specimen
-
A quantitative analysis is difficult for the use of a powder specimen because we cannot separate between the change of line width and the distribution of the shift for the powder specimen.
-
-
-
|