نتایج جستجو برای: double junction solar cell

تعداد نتایج: 2026264  

2013
Nikhil Jain Mantu K. Hudait Mariusz K. Orlowski Kathleen Meehan Rani Jain Monica Jain

With looming energy crisis across the globe, achieving high efficiency and low cost solar cells have long been the key objective for photovoltaic researchers. III-V compound semiconductor based multijunction solar cells have been the dominant choice for space power due to their superior performance compared to any other existing solar cell technologies. In spite of unmatched performance of III-...

2016
Yang Chen Mats-Erik Pistol Nicklas Anttu

Semiconductor nanowires are a promising candidate for next-generation solar cells. However, the optical response of nanowires is, due to diffraction effects, complicated to optimize. Here, we optimize through optical modeling the absorption in a dual-junction nanowire-array solar cell in terms of the Shockley-Quessier detailed balance efficiency limit. We identify efficiency maxima that origina...

2014
Chen-Chen Chung Binh Tinh Tran Kung-Liang Lin Yen-Teng Ho Hung-Wei Yu Nguyen-Hong Quan Edward Yi Chang

In this paper, a zinc oxide (ZnO) nanotube, fabricated by the hydrothermal growth method on triple-junction (T-J) solar cell devices to enhance efficiency, is investigated. Compared to those of bare T-J solar cells (without antireflection (AR) coating) and solar cells with Si3N4 AR coatings, the experimental results show that the T-J solar cells, which use a ZnO nanotube as an AR coating, have ...

2005
Brendan M. Kayes Harry A. Atwater Thomas J. Watson Nathan S. Lewis Arthur Amos Noyes

A device physics model has been developed for radial p-n junction nanorod solar cells, in which densely packed nanorods, each having a p-n junction in the radial direction, are oriented with the rod axis parallel to the incident light direction. High-aspect-ratio slength/diameterd nanorods allow the use of a sufficient thickness of material to obtain good optical absorption while simultaneously...

Journal: :Physical chemistry chemical physics : PCCP 2014
Jan Sobuś Marcin Ziółek

A numerical study of optimal bandgaps of light absorbers in tandem solar cell configurations is presented with the main focus on dye-sensitized solar cells (DSSCs) and perovskite solar cells (PSCs). The limits in efficiency and the expected improvements of tandem structures are investigated as a function of total loss-in-potential (V(L)), incident photon to current efficiency (IPCE) and fill fa...

2015

Current solar cell technology is based in the photovoltaic effect occurring in semiconductor materials. It is well-known that the conversion efficiency of these types of solar cells is theoretically limited as first noted by Shockley and Queisser (S&Q): a crystalline silicon device is limited to a conversion efficiency of 33.7 %. The theoretical limit of an infinite multi-junction cell is 86 %....

2013
Alexei Deinega Sergey Eyderman Sajeev John

We compare the efficiency of thin film photonic crystal solar cells consisting of conical pores and nanowires. Solving both Maxwell's equations and the semiconductor drift-diffusion in each geometry, we identify optimal junction and contact positions and study the influence of bulk and surface recombination losses on solar cell efficiency. We find that using only 1 lm of silicon, sculpted in th...

2012
Sarah Swisher Sarah Lohry Swisher Vivek Subramanian

................................................................................................................................................ 2 INTRODUCTION ....................................................................................................................................... 4 MOTIVATION: THE CLEAN ENERGY CHALLENGE ...............................................................

In order to obtain the best performance of the solar air heaters, it is necessary to find optimum performance conditions. The aim of this research paper is to achieve optimum conditions, by comparing single and double pass solar air heaters. Also, a brief review study of various related research works of all scenarios for a single and double pass and packed bed (including particle technologies)...

2015
Myung-Dong Ko Taiuk Rim Kihyun Kim M. Meyyappan Chang-Ki Baek

Improving the efficiency of solar cells through novel materials and devices is critical to realize the full potential of solar energy to meet the growing worldwide energy demands. We present here a highly efficient radial p-n junction silicon solar cell using an asymmetric nanowire structure with a shorter bottom core diameter than at the top. A maximum short circuit current density of 27.5 mA/...

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