圆二色性
衍生化
化学
光学活性
对映体
木质素
BETA(编程语言)
红麻
色谱法
脯氨酸
有机化学
立体化学
高效液相色谱法
氨基酸
生物化学
纤维
计算机科学
程序设计语言
作者
John Ralph,Junpeng Peng,Fachuang Lu,Ronald D. Hatfield,Richard F. Helm
摘要
The accepted derivation of lignins from non(enzymatically)-controlled radical coupling reactions has been recently challenged, and it is relevant to ascertain unequivocally whether lignins are or are not (as normally assumed) optically active. Two approaches were used. First, DFRC (derivatization followed by reductive cleavage) dimers derived from β-5- and β-β-units in pine lignins, which certainly retain unaltered chiral centers (as well as β-1- and β-O-4-units where the intactness may be debated), were shown to be optically inactive by circular dichroism (CD) and chiral high-performance liquid chromatography. CD of β-5-derived dimers following enantiomeric separation readily demonstrated the sensitivity of the method. Second, no optical activity could be detected (above 250 nm to avoid carbohydrate contributions) by CD of lignin isolates from pine, kenaf, maize, or a CAD-deficient pine mutant. Representative lignins are therefore not, within limits of detection by these methods, optically active. Keywords: Lignin; lignin dimer; DFRC; pine, kenaf; maize; CAD-deficient pine mutant; circular dichroism; optical activity; chirality; racemic
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