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Metal-Organic Frameworks Based Nano/Micro/ Millimeter-Sized Self-Propel led Autonomous Machines

机译:基于金属有机框架的纳米/微米/毫米尺寸自推进式自主机器

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Synthetic nano/micro/millimeter-sized machines that harvest energy from the surrounding environment and then convert it to motion have had a significant impact on many research areas such as biology (sensing, imaging, and therapy) and environmental applications. Autonomous motion is a key element of these devices. A high surface area is preferable as it leads to increased propellant or cargo-loading capability. Integrating highly ordered and porous metal-organic frameworks (MOFs) with self-propelled machines is demonstrated to have a significant impact on the field of nano/micro/millimeter-sized devices for a wide range of applications. MOFs have shown great potential in many research fields due to their tailorable pore size. These fields include energy storage and conversion; catalysis, biomedical application (e.g., drug delivery, imaging, and cancer therapy), and environmental remediation. The marriage of motors and MOFs may provide opportunities for many new applications for synthetic nano/micro/millimeter-sized machines. Herein, MOF-based micro- and nanomachines are reviewed with a focus on the specific properties of MOFs.
机译:纳米/微米/毫米大小的合成机器从周围环境中收集能量,然后将其转换为运动,这对许多研究领域都产生了重大影响,例如生物学(传感,成像和治疗)和环境应用。自主运动是这些设备的关键要素。高表面积是优选的,因为它导致增加的推进剂或货物装载能力。事实证明,将高度有序的多孔金属有机框架(MOF)与自推进式机器集成在一起,会对在广泛应用中的纳米/微米/毫米大小的设备领域产生重大影响。 MOF由于其可定制的孔径在许多研究领域中显示出巨大潜力。这些领域包括能量存储和转换。催化,生物医学应用(例如药物输送,成像和癌症治疗)和环境修复。电动机和MOF的结合可能为合成纳米/微米/毫米大小的机器的许多新应用提供机会。在这里,基于MOF的微型和纳米机器进行了审查,重点是MOF的特定属性。

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