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  4. Buoyancy-Driven Micro/-Nanomotors: From Fundamentals to Applications
 
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Buoyancy-Driven Micro/-Nanomotors: From Fundamentals to Applications

Source
Small
ISSN
16136810
Date Issued
2024-06-19
Author(s)
Shukla, Ashish Kumar
Bhandari, Satyapriya
Mitra, Shirsendu
Kim, Byungki
Dey, Krishna Kanti  
DOI
10.1002/smll.202308580
Volume
20
Issue
25
Abstract
The progression of self-powered micro/-nanomotors (MNMs) has rapidly evolved over the past few decades, showing applications in various fields such as nanotechnology, biomedical engineering, microfluidics, environmental science, and energy harvesting. Miniaturized MNMs transduce chemical/biochemical energies into mechanical motion for navigating through complex fluidic environments with directional control via external forces fields such as magnetic, photonic, and electric stimuli. Among various propulsion mechanisms, buoyancy-driven MNMs have received noteworthy recognition due to their simplicity, efficiency, and versatility. Buoyancy force-driven motors harness the principles of density variation-mediated force to overcome fluidic resistance to navigate through complex environments. Restricting the propulsion in one direction helps to control directional movement, making it more efficient in isotropic solutions. The changes in pH, ionic strength, chemical concentration, solute gradients, or the presence of specific molecules can influence the motion of buoyancy-driven MNMs as evidenced by earlier reports. This review aims to provide a fundamental and detailed analysis of the current state-of-the-art in buoyancy-driven MNMs, aiming to inspire further research and innovation in this promising field.
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URI
http://repository.iitgn.ac.in/handle/IITG2025/28869
Subjects
buoyancy-driven motor | energy generation | micromotors | nanomotors | oxygen bubbles
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