从材料到器件:纳米材料自下而上集成到热电和压电应用的硅微结构上

L. Fonseca, C. Calaza, M. Salleras, G. Murillo, J. Esteve, A. Tarancón, Á. Morata, Jose D. Santos, G. Gadea
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引用次数: 0

摘要

能源自主一直是离网应用环境中最受欢迎的功能之一,例如连续监控场景和分布式智能范例(物联网、万亿传感器)。SiNERGY是一个由IMB-CNM (CSIC)协调的欧洲项目(GA n°604169),专注于硅和硅友好材料和技术,探索为微传感器节点供电的能量收集和存储概念。收集能量,利用环境可用的资源可能是克服原电池使用的一个很好的解决方案。10-100微瓦每平方厘米的功率密度似乎适合许多这样的应用。具体的热电和压电的发展进行了回顾。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From materials to devices: Bottom-up integration of nanomaterials onto silicon microstructures for thermoelectric and piezoelectric applications
Energy autonomy keeps being one of the most desired enabling functionalities in the context of off-grid applications, such as continuous monitoring scenarios and distributed intelligence paradigms (Internet of Things, Trillion Sensors). SiNERGY, a European project (GA n° 604169) coordinated by IMB-CNM (CSIC) has focused on silicon and silicon friendly materials and technologies to explore energy harvesting and storage concepts for powering microsensors nodes. Harvesting energy, tapping into environmentally available sources may be a good solution to overcome the use of primary batteries. 10–100 microwatts per square centimeter power densities seem appropriate for many such applications. Specific thermoelectric and piezoelectric developments are reviewed.
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