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作 者:Yutaka Okada Shoko Yamamoto Yoshinori Namba Takahiro Masuda Kazuhisa Sakamoto Yutaka Okada;Shoko Yamamoto;Yoshinori Namba;Takahiro Masuda;Kazuhisa Sakamoto(Department of Applied Chemistry, Ritsumeikan University, Kusatsu, Japan)
机构地区:[1]Department of Applied Chemistry, Ritsumeikan University, Kusatsu, Japan
出 处:《Spectral Analysis Review》2016年第4期41-48,共9页光谱分析(英文)
摘 要:The relaxation time of several ferrocene derivatives was measured, and the internal rotation was discussed. For almost all the derivatives, the degree of the internal rotation was constant in spite of the different molecular weights. However, for (triphenylmethyl)ferrocene, the rotation of the unsubstituted ring would be slower due to the bulkiness of the substituent. Furthermore, the derivatives that have a hydroxyl- or acetyl group on the substituent were also discussed. Their rotation would be influenced by the location of these substituents.The relaxation time of several ferrocene derivatives was measured, and the internal rotation was discussed. For almost all the derivatives, the degree of the internal rotation was constant in spite of the different molecular weights. However, for (triphenylmethyl)ferrocene, the rotation of the unsubstituted ring would be slower due to the bulkiness of the substituent. Furthermore, the derivatives that have a hydroxyl- or acetyl group on the substituent were also discussed. Their rotation would be influenced by the location of these substituents.
关 键 词:FERROCENE Internal Rotation NMR Relaxation Time Partial Molar Volume
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