Husebo Lars O, Sitharaman Balaji, Furukawa Ko, Kato Tatsuhisa, Wilson Lon J
Department of Chemistry and Center for Nanoscale Science and Technology, MS-60, Rice University, Houston, Texas 77251-1892, USA.
J Am Chem Soc. 2004 Sep 29;126(38):12055-64. doi: 10.1021/ja047593o.
The first exhaustive purification and characterization of the much-studied "fullerenols", prepared by reaction of C(60) in toluene with an oxygenated, aqueous NaOH solution using tetrabutylammonium hydroxide as a phase transfer catalyst, has been performed. The resulting fullerenol is not simply polyhydroxylated C(60) but rather is a structurally and electronically complex C(60) radical anion with a molecular formula of Na(+)(n)C(60)O(x)(OH)(y)(-) (where n = 2-3, x = 7-9, and y = 12-15) for three different, but identical, preparations. Surprisingly, Na(+)-fullerenol is paramagnetic, exhibiting mu(B) values in aqueous solution of 1.9-2.1 B.M. at 0.5 T and 300 K and R(1) proton relaxivities of 0.55-0.77 mM(-1)s(-1) at 20 MHz and 40 degrees C, values both slightly higher than those expected for a pure S = 1/2 spin system. ESR studies (ESE-FS and 2D nutation) of frozen aqueous solutions at 1.5 and 5.0 K establish that Na(+)-fullerenol is mainly S = 1/2 with a minor, but significant, component of S = 1. Thus, this is the first report to characterize these widely studied, water-soluble fullerenols as stable radical anions. The stability of the S = 1/2 Na(+)-fullerenol radical is likely due to a highly derivatized C(60) surface that protects a cyclopentadienyl radical center on the fullerene.
对经过大量研究的“富勒醇”进行了首次详尽的纯化和表征。富勒醇是通过C(60)在甲苯中与含氧的氢氧化钠水溶液反应制备的,使用四丁基氢氧化铵作为相转移催化剂。所得的富勒醇并非简单的多羟基化C(60),而是一种结构和电子性质复杂的C(60)自由基阴离子,对于三种不同但相同的制备物,其分子式为Na(+)(n)C(60)O(x)(OH)(y)(-)(其中n = 2 - 3,x = 7 - 9,y = 12 - 15)。令人惊讶的是,Na(+) - 富勒醇具有顺磁性,在0.5 T和300 K的水溶液中表现出1.9 - 2.1 B.M.的磁矩值,在20 MHz和40℃下R(1)质子弛豫率为0.55 - 0.77 mM(-1)s(-1),这两个值均略高于纯S = 1/2自旋系统预期的值。对1.5和5.0 K下冷冻水溶液的电子自旋共振研究(电子自旋回波 - 傅里叶变换和二维章动)表明,Na(+) - 富勒醇主要为S = 1/2,还有少量但显著的S = 1成分。因此,这是首次将这些广泛研究的水溶性富勒醇表征为稳定自由基阴离子的报告。S = 1/2的Na(+) - 富勒醇自由基的稳定性可能归因于高度衍生化的C(60)表面,该表面保护了富勒烯上的环戊二烯基自由基中心。