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为什么人类视觉系统仅对波长约为760至380纳米的光敏感?来自热化学和化学动力学的答案。

Why is the human visual system sensitive only to light of wavelengths from approximately 760 to 380 nm? An answer from thermochemistry and chemical kinetics.

作者信息

Luo Y R

机构信息

Molecular Energetics Consultants, St. Petersburg, FL 33701, USA.

出版信息

Biophys Chem. 2000 Jan 24;83(3):179-84. doi: 10.1016/s0301-4622(99)00137-4.

Abstract

The range of visible light has been explained by the knowledge available of gas-phase thermochemistry and chemical kinetics. The C, C-pi bond dissociation energy at the 11 and 12 positions of the rhodopsin complex is estimated to be approximately 37.4+/-1.5 kcal/mol. This energy is just equivalent to wavelength of the red limit of the visible light. The photons of the violet limit (approx. 75.2 kcal/mol) can break the weakest C-C and H-C bonds in important species involved in the photo-induced cis-trans isomerization cycle and can stop the visual cycle.

摘要

可见光的范围已经通过气相热化学和化学动力学的现有知识得到了解释。视紫红质复合物11位和12位的C、C-π键解离能估计约为37.4±1.5千卡/摩尔。这个能量恰好相当于可见光红色极限的波长。紫光极限(约75.2千卡/摩尔)的光子可以打破光诱导顺反异构化循环中重要物种中最弱的C-C键和H-C键,并能终止视觉循环。

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