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Constant-speed vibrational signaling along polyethyleneglycol chain up to 60-Å distance

机译:沿聚乙二醇链的恒定速度振动信号传递可达60-Å的距离

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摘要

A series of azido-PEG-succinimide ester oligomers with a number of repeating PEG units of 0, 4, 8, and 12 (azPEG0, 4, 8, and 12) was investigated using a relaxation-assisted two-dimensional infrared (RA 2DIR) spectroscopy method. The RA 2DIR method relies on the energy transport in molecules and is capable of correlating the frequencies of vibrational modes separated by large through-bond distances. Excitation of the azido group in the compounds at ca. 2,100 cm-1 generates an excess energy which propagates in the molecule as well as dissipates into the solvent. We discovered that a part of the excess energy propagates ballistically via the covalent backbone of the molecules with a constant speed of ca. 550 m/s. The transport is described as a propagation of a vibrational wavepacket having a mean-free-path length of 10–15 Å. The discovery has the potential for developing new efficient signal transduction strategies for molecular electronics and biochemistry. It also permits extending the distances accessible in RA 2DIR structural measurements up to ca. 60 Å.
机译:使用松弛辅助二维红外(RA 2DIR)研究了一系列叠氮-PEG-琥珀酰亚胺酯低聚物,其重复的PEG单元分别为0、4、8和12(azPEG0、4、8和12)。 )光谱法。 RA 2DIR方法依赖于分子中的能量传输,并且能够关联被较大的键合距离分隔开的振动模式的频率。化合物中叠氮基的激发在2,100 cm -1 产生多余的能量,该能量在分子中传播并消散到溶剂中。我们发现,一部分多余的能量通过分子的共价主链以恒定速度ca弹道传播。 550米/秒传输被描述为振动波包的传播,该波包的平均自由程长度为10-15Å。该发现具有开发用于分子电子学和生物化学的新型有效信号转导策略的潜力。它还允许将在RA 2DIR结构测量中可访问的距离扩展到大约。 60Å。

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