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New Autonomous Motors of Metal-Organic Framework (MOF) Powered by Reorganization of Self-Assembled Peptides at interfaces

机译:金属有机骨架的新自治汽车(mOF)技术在界面自组装肽的重组

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摘要

There have developed a variety of microsystems that harness energy and convert it to mechanical motion. Here we developed new autonomous biochemical motors by integrating metal-organic framework (MOF) and self-assembling peptides. MOF is applied as an energy-storing cell that assembles peptides inside nanoscale pores of the coordination framework. The robust assembling nature of peptides enables reconfiguring their assemblies at the water-MOF interface, which is converted to fuel energy. Re-organization of hydrophobic peptides could create the large surface tension gradient around the MOF and it efficiently powers the translation motion of MOF. As a comparison, the velocity of normalized by volume for the DPA-MOF particle is faster and the kinetic energy per the unit mass of fuel is more than twice as large as the one for previous gel motor systems. This demonstration opens the new application of MOF and reconfigurable molecular self-assembly and it may evolve into the smart autonomous motor that mimic bacteria to swim and harvest target chemicals by integrating recognition units.
机译:已经开发了多种利用能量并将其转化为机械运动的微系统。在这里,我们通过整合金属有机骨架(MOF)和自组装肽开发了新型自主生化马达。 MOF用作能量储存细胞,可在配位框架的纳米级孔内组装肽。肽强大的组装特性使其能够在水-MOF界面处重新配置其组装,从而转换为燃料能量。疏水肽的重组可以在MOF周围产生较大的表面张力梯度,并有效地为MOF的翻译运动提供动力。相比之下,DPA-MOF颗粒的体积归一化速度更快,每单位燃料质量的动能比以前的凝胶电机系统大两倍。该演示打开了MOF和可重新配置的分子自组装的新应用,它可能会发展成为智能细菌自动驾驶马达,通过集成识别单元来模仿细菌游泳和收获目标化学物质。

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