Department of Chemistry, Vanderbilt University, Nashville, Tennessee, USA.
Chirality. 2009;21 Suppl 1:E202-7. doi: 10.1002/chir.20797.
Cephalochromin, a homodimeric naphthpyranone natural product, contains both axial chirality due to the hindered rotation along the biaryl axis and central chirality due to the C-2, C-2' stereogenic centers of the fused pyranone ring. For determining the absolute configurations (ACs) of central chirality elements, different chiroptical spectroscopic methods, namely vibrational circular dichroism (VCD), electronic circular dichroism (ECD), and optical rotation (OR), have been used. From these experimental data, in conjunction with corresponding quantum chemical predictions at B3LYP/6-311G* level, it is found that the ECD spectra of cephalochromin are dominated by its axial chirality and are not suitable to distinguish the (aS,2S,2'S) and (aS,2R,2'R) diastereomers and hence to determine the ACs of the central chirality elements. OR signs also did not distinguish the (aS,2S,2'S) and (aS,2R,2'R) diastereomers. On other hand, VCD spectrum of cephalochromin exhibited separate spectral features attributable to axial chirality and stereogenic centers, thereby allowing the determination of both types of chirality elements. This is the first investigation demonstrating that, because of vibrations specific to the studied stereogenic centers, VCD spectroscopy can be used to simultaneously determine the ACs of axial and central chirality elements whenever other chiroptical methods (ECD and OR) fail to report on them.
头花醌是一种二聚萘并吡喃酮天然产物,由于联苯轴的受阻旋转而具有轴向手性,并且由于稠合吡喃酮环的 C-2、C-2' 立体中心而具有中心手性。为了确定中心手性元素的绝对构型 (AC),已经使用了不同的手性光谱方法,即振动圆二色性 (VCD)、电子圆二色性 (ECD) 和旋光 (OR)。从这些实验数据,结合相应的量子化学预测在 B3LYP/6-311G* 水平上,发现头花醌的 ECD 光谱主要由其轴向手性决定,不适合区分 (aS,2S,2'S) 和 (aS,2R,2'R) 非对映异构体,因此无法确定中心手性元素的 AC。OR 符号也没有区分 (aS,2S,2'S) 和 (aS,2R,2'R) 非对映异构体。另一方面,头花醌的 VCD 光谱表现出与轴向手性和立体中心有关的单独光谱特征,从而允许同时确定两种类型的手性元素。这是首次证明,由于研究的立体中心的振动具有特异性,VCD 光谱可用于在其他手性方法 (ECD 和 OR) 无法报告它们时同时确定轴向和中心手性元素的 AC。