和频振转光谱学:胶原蛋白二阶光学非线性效应的分子学起源

2008/04/21   下载量: 154

方案摘要

方案下载
应用领域 其他
检测样本 其他
检测项目
参考标准 暂无

The molecular origins of second order nonlinear effects in type I collagen fibrils have been identified with sum-frequency generation vibrational spectroscopy. The dominant contributing molecular groups are: i) the methylene groups associated with a Fermi resonance between the fundamental symmetric stretch and the bending overtone of methylene, and ii) the carbonyl and peptide groups associated with the amide I band. The noncentrosymmetrically aligned methylene groups are characterized by a distinctive tilt relative to the axis perpendicular to the main axis of the collagen fiber, a conformation producing a strong achiral contribution to the second order nonlinear effect. In contrast, the stretching vibration of the carbonyl groups associated with the amide I band results in a strong chiral contribution to the optical second order nonlinear effect. The length scale of these chiral effects ranges from the molecular to the supramolecular.

方案下载
配置单
上一篇 在一个双稳湍流涡旋火焰中,对间歇性动态的时间-频率定位
下一篇 断层生长过程的模型模拟研究

文献贡献者

相关仪器 更多
相关方案
更多

相关产品

当前位置: 欧兰科技 方案 和频振转光谱学:胶原蛋白二阶光学非线性效应的分子学起源

关注

拨打电话

留言咨询