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Optical-Propulsion Metastructures

delete2024-08-15
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OA
AI
S
Senlin Rao
W
Wendi Yi
H
Haoqing Jiang
S
Shizhuo Zhang
J
Junchao Yi
G
Gary J. Cheng *
DOI:10.1002/adma.202406384delete
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摘要

摘要

En 中文
Pulsed laser micropropulsion (PLMP) offers a promising avenue for miniature space craft, yet conventional propellants face challenges in balancing efficiency and stability. An optical-propulsion metastructure strategy using metal-organic frameworks (MOFs) is presented to generate graphene-metal metastructures (GMM), specifically GMM-(HKUST-1), which significantly enhances PLMP performance. This novel approach leverages the unique interaction between pulsed lasers and the precisely engineered GMMs-comprising optimized metal nanoparticle size, graphene layers, and inter-particle gaps-to boost both propulsion efficiency and stability. Experimental and numerical analyses reveal that GMM-(HKUST-1) achieves aspecific impulse of 1072.94 s, ablation efficiency of 51.22%, and impulse thrust per mass of 105.15 mu N mu g-1, surpassing traditional propellants. With an average particle size of approximate to 12 nm and a density of 0.958 g cm-3, these metastructures exhibit 99% light absorption efficiency and maintain stability under atmospheric and humid conditions. The graphene nanolayer efficiently absorbs and converts laser energy, while the metal nanostructures enhance light-matter interactions, promoting energy transfer and material stability. These findings suggest that this GMM-based optical-propulsion strategy can revolutionize microspacecraft propulsion and energy systems, offering significant advancements across various domains. This study introduces optical-propulsion metastructures, for enhanced laser micropropulsion performance. This metastructure achieves 99% light absorption efficiency and a material density of 0.958 g cm-3. It maintains exceptional energy conversion and structural integrity under adverse conditions. The cost-effective fabrication technique suggests scalability for future microspacecraft and nanosatellite propulsion systems. image
Keyword:
energy conversion and stability
metal-organic frameworks
nanostructured propellants
pulsed laser micropropulsion
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期刊

Advanced Materials 封面图
Advanced Materials
IF:
26.8
论文数:
3.4W
被引数:
46.0W

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Purdue University System 封面图
Purdue University System
学者数:
4.0W
论文数: 3.6W
被引数: 66
H
Henan Academy of Sciences
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1.3K
论文数: 873
被引数: 1.9K
W
wuhan university
学者数:
8.1W
论文数: 5.8W
被引数: 70
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