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首页> 外文期刊>Materials Chemistry Frontiers >A bio-inspired transpiration ion pump based on MXene
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A bio-inspired transpiration ion pump based on MXene

机译:基于仿生蒸腾离子泵

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Transpiration as one of the plant’s vital movements can also be seen as a pump that pumps nutrients such as water and inorganic salts from the roots to the leaves. Learning of this process might find many applications in nanotechnology, materials science or bioscience. Here, we were inspired by the transpiration of plants and the remarkable photothermal conversion characteristic of MXene Ti3C2Tx, constructing a biomimetic transpiration ion pump based on macroscale evaporation induces nanofluidic ionic transportation. This device can pump ions with an inverse concentration gradient of 200-fold under asymmetric infrared light. Besides, such a device with reversible regulation and fast light response can also act as an energy conversion set-up, which generates a stable current and voltage of about 7.3 mA and 13.6 mV, respectively, at an infrared light intensity of B600 mW cm2 . This conception of a biomimetic ion pump with a simple construction process might provide an idea for the potential research of power harvesting and energy conversion.
机译:蒸腾作用是植物的重要之一运动也可以被视为一个泵的泵水和无机盐等营养物质树叶的根源。可能会发现许多应用程序在纳米技术,材料科学和生物科学。植物的蒸腾作用和启发非凡的光热光谱分析转换特性的MXene Ti3C2Tx,构造一个仿生基于宏观尺度的蒸腾离子泵蒸发诱导奈米流体电离子交通工具。逆浓度梯度下的200倍不对称的红外线。可逆的监管和快速的光反应也可以作为能量转换设置,生成当前和稳定马电压约为7.3和13.6 mV,分别在一个红外线强度B600 mW平方厘米。泵用一个简单的施工过程为潜在的研究提供一个想法权力收获和能量转换。

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