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Reversible chirality control in peptide-functionalized gold nanoparticles

机译:肽官能化金纳米粒子的可逆手性控制

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We report the induction of chiroptical properties in 2 nm diameter gold nanoparticles passivated with short peptides characterized by the Aib-l-Ala repetition in their sequence. The nanoparticles present relevant ECD signals in the 300-650 nm wavelength region, corresponding to the gold nanoparticle's quantized electronic structure. Although the only chiral amino acid present in the peptide sequences is l-Ala, the particles show mirror image spectra like those of enantiomers according to the number of amino acids in the main chain (odd or even). Such a behavior appears to be strongly influenced by the secondary structure assumed by the peptides when passivating the nanoparticles and vanishes when the sequence is long enough to assume a 3_(10)-helix conformation. Moreover, chirality control is a reversible process and can be deactivated or reactivated by increasing or decreasing the temperature.
机译:我们报告了在被短肽钝化的直径为2 nm的金纳米颗粒中按其序列顺序表征的手性特性的诱导。纳米粒子在300-650 nm波长范围内呈现相关的ECD信号,对应于金纳米粒子的量化电子结构。尽管肽序列中存在的唯一手性氨基酸是1-Ala,但根据主链中的氨基酸数目(奇数或偶数),颗粒显示出像对映异构体一样的镜像光谱。当钝化纳米颗粒时,这种行为似乎受到肽假定的二级结构的强烈影响,而当序列足够长以呈现3_(10)-螺旋构象时,这种行为就会消失。此外,手性控制是可逆的过程,可以通过升高或降低温度来使其失活或重新激活。

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