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Moisture-responsive supramolecular nanotubes

机译:Moisture-responsive超分子纳米管

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Living organisms have evolved functional structures for seeds dispersal in response to humidity changes. In this study, we construct moisture-responsive nanotubes by the supramolecular coordination of a peptide lipid with metal ions for potential applications in material delivery systems. These hydrophilic nanotubes can uptake atmospheric moisture and the water molecules are associated with unsaturated metal centers of the bis(lipid)-metal(ii) complex, thereby changing the molecular packing and inducing morphological transformation from nanotubes to sheets. The moisture responsivity of nanotubes depends on the hydration behavior of the metal ions. Co(ii)-coordinated nanotube shows higher moisture responsivity than that of the Zn(ii)-coordinated one since Co(ii) ion has stronger association with water molecules. These two nanotubes are self-assembled by the same molecular packings; however, they show different mechanisms in morphological changes. The Co(ii)-coordinated nanotube transforms into a sheet accompanied with the destruction of the complex and reverse molecular packing, whereas Zn(ii)-coordinated nanotube transforms into a sheet with a change in the complex geometry. Further, the Co(ii)-coordinated nanotubes exhibit reversible morphological changes between nanotubes and sheets, while Zn(ii)-coordinated nanotubes exhibit a one-way morphological change. These nanotubes also show potential applications in the release of fragrance oil under high humidity environments.
机译:生物进化功能结构在应对种子传播湿度的变化。moisture-responsive纳米管的超分子肽脂的协调与金属离子的潜在应用材料输送系统。纳米管可以吸收和大气水分水分子与不饱和有关金属中心的国际清算银行(脂)金属(2)包装复杂,从而改变分子和诱导形态转换纳米管表。纳米管取决于的水化行为金属离子。高水分反应性比锌(ii)协调自公司(ii)离子的水分子。两个纳米管是由相同的自组装分子包装;机制的形态变化。(2)协调纳米管转换成表伴随着的毁灭复杂的包装和反向分子,而锌(ii)协调纳米管转换成表的复杂几何形状的变化。此外,公司(ii)协调纳米管展览之间的可逆的形态变化纳米管和床单,而锌(ii)协调纳米管具有单向形态学改变。这些纳米管也显示了潜在的应用在释放香味油高湿度环境。

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