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Unusual addition patterns in trifluoromethylation of [60]fullerene

机译:[60]富勒烯三氟甲基化中的异常添加方式

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From pyrolytic trifluoromethylation of [60]fullerene with CF_3CO_2Ag at 300℃ we have isolated ca. sixty C_(60)(CF_3)_n isomers (numbers in parentheses) as follows: n = 2 (1), 4 (8), 6 (13), 8 (21) 10 (11), 12 (5), 14 (4), twenty-one of which have been characterised by ~(19)F NMR. Compounds with addition levels up to n = 20 have also been identified. With increasing value of H, yields decrease and the separation of compounds of similar HPLC retention time but different addend levels becomes more difficult. Many of the ~(19)F NMR spectra show combinations of quartets and septets (the latter tending to be more downfield) due to 'linear' addend arrays. The spectra are consistent with addition across both 6:6- and 5:6-ring junctions [double (1,2) and single (1,6) bonds, respectively], giving corresponding coupling constants for adjacent addends of ca. 14.5 and 12.0 Hz respectively, the differences being attributable to the different 1,2- and 1,6-bond lengths. The ~(13)C NMR spectrum of C_(60)(CF_3)_2 shows the CF_3 groups are in either a 1,4- or 1,6-relationship; the UV-vis band appears at 442 nm. Other unsymmetrical tetra-adducts are comprised of isolated pairs of CF_3 groups. The exceptionally large number of derivatives and isomers, (much greater than in any other fullerene reaction), no dominant product, and unusual addition pattern indicates that thermodynamic stability is not of primary importance in governing product formation. EI mass spectrometry of trifluoromethylfullerenes is characterised by loss of CF_3 groups, the more highly addended compounds also showing fragmentation by CF_2 loss, attributable to steric compression. The CF_3 group shows strong IR bands at ca. 1260 and 1190 cm~(-1). The compounds are stable to aq. acetone, which contrasts to the behaviour of fluorofullerenes. Trifluoromethylation by the Scherer radical (C_9F_(19)~·) gave addition of up to eight CF_3 groups, together with hydrogen in some products. During EI mass spectrometry of some of these, loss of HF attributable to CF_3 and H adjacency can occur, giving CF_2-containing derivatives.
机译:在300℃下由CF_3CO_2Ag与[60]富勒烯进行热解三氟甲基化,我们分离出约。六十个C_(60)(CF_3)_n异构体(括号中的数字),如下所示:n = 2(1),4(8),6(13),8(21)10(11),12(5),14 (4),其中21个已通过〜(19)F NMR表征。还确定了添加量最多为n = 20的化合物。随着H值的增加,收率降低,并且分离具有相似HPLC保留时间但不同加成水平的化合物变得更加困难。 〜(19)F NMR光谱中的许多图谱显示,由于“线性”加数阵列,四重奏和septets的组合(后者倾向于更低场)。光谱与在6:6-和5:6-环结上的加成一致[分别为双键(1,2)和单键(1,6)],从而为ca的相邻加成给出了相应的耦合常数。分别为14.5 Hz和12.0 Hz,这归因于不同的1,2-和1,6-键长。 C_(60)(CF_3)_2的〜(13)C NMR光谱表明,CF_3基团处于1,4-或1,6-关系。 UV-vis带出现在442 nm。其他不对称的四加合物由孤立的CF_3基对组成。大量的衍生物和异构体(比任何其他富勒烯反应都要大得多),没有主要产物和不寻常的加成模式表明,热力学稳定性在控制产物形成中不是最重要的。三氟甲基富勒烯的EI质谱的特征在于CF_3基团的丢失,添加量更高的化合物也因CF_2的丢失而显示出碎片,这归因于空间压缩。 CF_3基团在大约200 nm处显示很强的IR波段。 1260和1190 cm〜(-1)。该化合物对水溶液稳定。丙酮,这与氟富勒烯的行为相反。通过Scherer自由基(C_9F_(19)〜·)进行的三氟甲基化反应最多可加成八个CF_3基团,并且在某些产物中还带有氢。在其中一些质谱的EI质谱分析中,可能会发生由CF_3和H邻接引起的HF损失,从而生成含CF_2的衍生物。

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