2015Unpublished venueRequires access

Vibrational Circular Dichroism in Study of Stereochemistry of Chiral β-Biscarboline with N—O Functional Group

Zhu Hua-ji

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Abstract

Vibrational circular dichroism( VCD) was applied for study of the absolute configuration of chiral axial bis-carboline with N—O function. The computational results exhibite that(-)-biscarboline derivative should have a S absolute configuration. At the same time,electronic circular dichroism( ECD) and optical rotation( OR) methods were also used to study its absolute configuration. The results show that the three diffe-rent conclusion from VCD,ECD and OR methods should give a same conclusion,namely,this(-)-biscarboline derivative should have a S absolute configuration.

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What this paper is about

Vibrational circular dichroism( VCD) was applied for study of the absolute configuration of chiral axial bis-carboline with N—O function. The computational results exhibite that(-)-biscarboline derivative should have a S absolute configuration. At the same time,electronic circular dichroism( ECD) and optical rotation( OR) methods were also used to study its absolute configuration. The results show that the three diffe-rent conclusion from VCD,ECD and OR methods should give a same conclusion,namely,this(-)-biscarboline derivative should have a S absolute configuration.

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Available abstract

Vibrational circular dichroism( VCD) was applied for study of the absolute configuration of chiral axial bis-carboline with N—O function. The computational results exhibite that(-)-biscarboline derivative should have a S absolute configuration. At the same time,electronic circular dichroism( ECD) and optical rotation( OR) methods were also used to study its absolute configuration. The results show that the three diffe-rent conclusion from VCD,ECD and OR methods should give a same conclusion,namely,this(-)-biscarboline derivative should have a S absolute configuration.

Key concepts: Absolute configuration, Vibrational circular dichroism, Circular dichroism, Optical rotation, Chemistry, Derivative (finance), Chirality (physics), Specific rotation

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