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首页> 外文期刊>The Journal of Chemical Physics >Unidirectional coherent energy transport via conjugated oligo(p-phenylene) chains
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Unidirectional coherent energy transport via conjugated oligo(p-phenylene) chains

机译:通过共轭寡聚(对亚苯基)链的单向相干能量传输

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摘要

We discovered a way to funnel high-frequency vibrational quanta rapidly and unidirectionally over large distances using oligo(p-phenylene) chains. After mid-IR photon photoexcitation of a -COOH end group, the excess energy is injected efficiently into the chain, forming vibrational wavepackets that propagate freely along the chain. The transport delivers high-energy vibrational quanta with a range of transport speeds reaching 8.6 km/s, which exceeds the speed of sound in common metals (similar to 5 km/s) and polymers (similar to 2 km/s). Efficiencies of energy injection into the chain and transport along the chain are found to be very high and dependent on the extent of conjugation across the structure. By tuning the degree of conjugation via electronic doping of the chain, the transport speed and efficiency can be controlled. The study opens avenues for developing materials with controllable energy transport properties for heat management, schemes with efficient energy delivery to hard-to-reach regions, including transport against thermal gradients, and ways for initiating chemical reactions remotely.
机译:我们发现了一种利用低聚(对苯撑)链在长距离上快速单向地漏斗高频振动量子的方法。在a-COOH端基的中红外光子激发后,多余的能量被有效地注入链中,形成沿链自由传播的振动波包。这种传输传递高能振动量子,传输速度范围达到8.6 km/s,超过了普通金属(类似于5 km/s)和聚合物(类似于2 km/s)中的声速。研究发现,能量注入链和沿链传输的效率非常高,并且取决于整个结构的共轭程度。通过电子掺杂调整链的共轭度,可以控制传输速度和效率。这项研究为开发具有可控能量传输特性的材料以进行热管理、向难以到达的区域高效传输能量的方案(包括逆热梯度传输)以及远程启动化学反应开辟了途径。

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