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具有光趋性运动能力的各向同性刺猬形状二氧化钛/功能化多壁碳纳米管微马达在无燃料环境中

Isotropic Hedgehog-Shaped-TiO/Functional-Multiwall-Carbon-Nanotube Micromotors with Phototactic Motility in Fuel-Free Environments.

作者信息

Jiang Huaide, He Xiaoli, Ma Yanmei, Fu Bi, Xu Xingui, Subramanian Balachandran, Hu Chengzhi

机构信息

Department of Mechanical Engineering and Energy, Southern University of Science and Technology, Shenzhen 518055, China.

Guangdong Provincial Key Laboratory of Human-Augmentation and Rehabilitation Robotics in Universities, Southern University of Science and Technology, Shenzhen 518055, China.

出版信息

ACS Appl Mater Interfaces. 2021 Feb 3;13(4):5406-5417. doi: 10.1021/acsami.0c19606. Epub 2021 Jan 21.

Abstract

Directional motion in response to specific signals is critically important for micro/nanomotors in precise cargo transport, obstacle avoidance, collective control, and complex maneuvers. In this work, a kind of isotropic light-driven micromotor that is made of hedgehog-shaped TiO and functional multiwall carbon nanotubes (Hs-TiO@FCNTs) has been developed. The FCNTs are closely entangled with Hs-TiO and form a close-knit matrix on the surface of Hs-TiO, which facilitates the transfer of electrons from Hs-TiO to FCNTs. Due to the high redox potential of Hs-TiO, excellent electron-hole separation efficiency by the addition of FCNTs, and isotropic morphology of the micromotor, these Hs-TiO@FCNT micromotors show phototactic and fuel-free propulsion under unidirectional irradiation of UV light. It is the first time to demonstrate isotropic micromotors that are propelled by self-electrophoresis. The isotropy of Hs-TiO@FCNT micromotors makes them immune to the rotational Brownian diffusion and local flows, exhibiting superior directionality. The motion direction of our micromotors can be precisely tuned by light and a velocity of 8.9 μm/s is achieved under 160 mW/cm UV light illumination. Photodegradation of methylene blue and active transportation of polystyrene beads are demonstrated for a proof-of-concept application of our micromotors. The isotropic design of the Hs-TiO@FCNT micromotors with enhanced photocatalytic properties unfolds a new paradigm for addressing the limitations of directionality control and chemical fuels in the current asymmetric light-driven micromotors.

摘要

响应特定信号的定向运动对于微纳马达在精确货物运输、避障、集体控制和复杂机动方面至关重要。在这项工作中,一种由刺猬形状的TiO和功能性多壁碳纳米管(Hs-TiO@FCNTs)制成的各向同性光驱动微马达被开发出来。FCNTs与Hs-TiO紧密缠结,并在Hs-TiO表面形成紧密的基质,这有助于电子从Hs-TiO转移到FCNTs。由于Hs-TiO的高氧化还原电位、添加FCNTs后优异的电子-空穴分离效率以及微马达的各向同性形态,这些Hs-TiO@FCNT微马达在紫外光的单向照射下表现出光趋性和无燃料推进。这是首次证明通过自电泳驱动的各向同性微马达。Hs-TiO@FCNT微马达的各向同性使其不受旋转布朗扩散和局部流动的影响,表现出卓越的方向性。我们的微马达的运动方向可以通过光精确调节,在160 mW/cm的紫外光照射下实现了8.9 μm/s的速度。为了证明我们微马达的概念验证应用,展示了亚甲基蓝的光降解和聚苯乙烯珠的主动运输。具有增强光催化性能的Hs-TiO@FCNT微马达的各向同性设计为解决当前不对称光驱动微马达在方向性控制和化学燃料方面的局限性开创了一种新的范例。

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