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Design and Analysis of Hexagonal Dipole Nano-Rectenna Based on MIIM Diode for Solar Energy Harvesting

机译:基于MIIM二极管进行太阳能收割的六角偶极纳米末端的设计与分析

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摘要

In this work, new design of hexagonal dipole nano-rectenna for solar energy harvesting is presented. The proposed design is composed of silver hexagonal nano-dipole antenna integrated with metal insulator metal (MIM) tunnel diode with single and double insulators. The proposed hexagonal nano-dipole antenna consists of two identical elements separated apart by air gap. The MIM tunnel diode is realized by overlapping the nano-antenna (NA) arms and sandwiching metal oxide layer in between to benefit from the high localized fields at the NA gap. The reported design performance in terms of the total radiation efficiency, directivity and total harvesting efficiency is studied. The numerical study of NA is carried out in the wavelength range 300–3000 nm, using the finite integral technique (FIT) method. The reported design has an average total radiation efficiency of 92.28% in the wavelength of range (300–3000) nm. The proposed NA with single insulator MIM diode, and double insulator, MIIM diode, give roughly the same results of maximum radiation efficiency of 98%, maximum directivity of 14 at the wavelength of 500 nm and total harvesting efficiency of 95.35%. These results are attributed to the sharp tips of hexagonal arms. Furthermore, MIIM diode offers zero bias voltage responsivity of 17.29 A/W and maximum responsivity of −170.9 A/W. This enhancement is due to the use of multi-insulators between the two metals.
机译:在这项工作中,提出了用于太阳能收集的六边形偶极纳米末端的新设计。所提出的设计由与金属绝缘体金属(MIM)隧道二极管集成的银六边形纳米偶极天线与单和双绝缘体集成。所提出的六边形纳米偶极天线由两个相同的元件组成,通过气隙分开。通过与纳米天线(NA)臂与夹在纳米间隙之间的夹层金属氧化物层重叠,实现MIM隧道二极管,以便从NA间隙处受益于高局部区域。在研究总辐射效率,方向性和总收获效率方面,报告的设计性能。使用有限的积分技术(FIT)方法,在300-3000nm的波长范围内进行Na的数值研究。报告的设计平均辐射效率为范围(300-3000)nm的波长92.28%。所提出的NA采用单绝缘体MIM二极管,双绝缘体,MIIM二极管,最大辐射效率的最大辐射效率为98%,最大方向性14在500nm的波长下,总收获效率为95.35%。这些结果归因于六边形臂的尖锐尖端。此外,MIIM二极管提供零偏置电压响应度为17.29 A / W,最大响应率-170.9 A / W.这种增强是由于两种金属之间的多绝缘体。

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