当前位置:
X-MOL 学术
›
Nano-Micro Lett.
›
论文详情
Our official English website, www.x-mol.net, welcomes your
feedback! (Note: you will need to create a separate account there.)
MXene Hybridized Polymer with Enhanced Electromagnetic Energy Harvest for Sensitized Microwave Actuation and Self-Powered Motion Sensing
Nano-Micro Letters ( IF 31.6 ) Pub Date : 2024-11-18 , DOI: 10.1007/s40820-024-01578-z Yu-Ze Wang, Yu-Chang Wang, Ting-Ting Liu, Quan-Liang Zhao, Chen-Sha Li, Mao-Sheng Cao
中文翻译:
MXene 杂化聚合物,具有增强的电磁能量收集功能,用于敏化微波驱动和自供电运动传感
更新日期:2024-11-18
Nano-Micro Letters ( IF 31.6 ) Pub Date : 2024-11-18 , DOI: 10.1007/s40820-024-01578-z Yu-Ze Wang, Yu-Chang Wang, Ting-Ting Liu, Quan-Liang Zhao, Chen-Sha Li, Mao-Sheng Cao
-
An alternative electromagnetic attenuation pathway is proposed in the MXene-polymer hybrid structure, distinct from conduction loss, for generalizing the results to a wider range of electromagnetic-thermal driven soft materials and devices.
-
By efficiently harvesting and converting electromagnetic energy, the response time of the hybrid polymer to microwave exhibits 87% reduction with merely 0.15 wt% MXene.
-
A new mode of self-powered motion sensing based on deformation-driven piezoelectric effect is developed, enhancing the material’s intelligence.
中文翻译:
MXene 杂化聚合物,具有增强的电磁能量收集功能,用于敏化微波驱动和自供电运动传感
-
在 MXene-polymer 混合结构中提出了一种替代的电磁衰减路径,与传导损耗不同,用于将结果推广到更广泛的电磁热驱动软材料和器件。 -
通过有效地收集和转换电磁能,杂化聚合物对微波的响应时间减少了 87%,MXene 仅为 0.15 wt%。 -
开发了一种基于变形驱动压电效应的自供电运动传感新模式,增强了材料的智能性。