نتایج جستجو برای: absorption

تعداد نتایج: 132220  

2015
Fei Cheng Jie Gao Ting S. Luk Xiaodong Yang

Subwavelength structural color filtering and printing technologies employing plasmonic nanostructures have recently been recognized as an important and beneficial complement to the traditional colorant-based pigmentation. However, the color saturation, brightness and incident angle tolerance of structural color printing need to be improved to meet the application requirement. Here we demonstrat...

2015
Luming Zhang Huaquan Sun Lai Xie Jinnan Lu Luyong Zhang Sujuan Wu Xingsen Gao Xubing Lu Jinhua Li Jun-Ming Liu

The nanostructured ZnO/copper oxide (Cu2O) photovoltaic devices based on electrospun ZnO nanofibrous network and electrodeposited Cu2O layer have been fabricated. The effects of the pH value of electrodeposition solution and the Cu2O layer thickness on the photovoltaic performances have been investigated. It is revealed that the pH value influences the morphology and structure of the Cu2O layer...

2016
Katherine T. Fountaine Hans Joachim Lewerenz Harry A. Atwater

Theoretical limiting efficiencies have a critical role in determining technological viability and expectations for device prototypes, as evidenced by the photovoltaics community's focus on detailed balance. However, due to their multicomponent nature, photoelectrochemical devices do not have an equivalent analogue to detailed balance, and reported theoretical efficiency limits vary depending on...

2013
Neetu Bansal James Vaughan Amiel Boullemant Tony Leong

Mercury has long been recognised as a neurotoxin element for many decades and with its compounds being extremely toxic, is ranked third in the ‘priority list of hazardous substance’ by the United States comprehensive environmental response, compensation, and liability act. In different samples, mercury can exist as either its inorganic or organic forms and this paper will review the methods for...

Journal: :Optics letters 2012
D Q Zheng Y J Ma L Xu W A Su Q H Ye J I Oh W Z Shen

The light absorption coefficient of hydrogenated nanocrystalline silicon has been engineered to have a Gaussian distribution by means of absorption modification using a femtosecond laser. The absorption-modified sample exhibits a significant absorption enhancement of up to ∼700%, and the strong absorption does not depend on the incident light. We propose a model responsible for this interesting...

Journal: :Journal of Molecular Modeling 2006
Govindan Subramanian Douglas B. Kitchen

Human intestinal absorption (HIA) is an important roadblock in the formulation of new drug substances. Computational models are needed for the rapid estimation of this property. The measurements are determined via in vivo experiments or in vitro permeability studies. We present several computational models that are able to predict the absorption of drugs by the human intestine and the permeabil...

2015
Sijia Wang Xin Yan Xia Zhang Junshuai Li Xiaomin Ren

A composite nanostructure for high-efficiency solar cells that axially connects nanowire core-shell p-n junctions is proposed. By axially connecting the p-n junctions in one nanowire, the solar spectrum is separated and absorbed in the top and bottom cells with respect to the wavelength. The unique structure of nanowire p-n junctions enables substantial light absorption along the nanowire and e...

Journal: :Optics express 2011
Alexander Normatov Boris Spektor Yehuda Leviatan Joseph Shamir

Nanostructured materials, designed for enhanced light absorption, are receiving increased scientific and technological interest. In this paper we propose a physical criterion for designing the cross-sectional shape of plasmonic nanowires for improved absorption of a given tightly focused illumination. The idea is to design a shape which increases the matching between the nanowire plasmon resona...

Journal: :ACS applied materials & interfaces 2016
Patrizia Richner Hadi Eghlidi Stephan J P Kress Martin Schmid David J Norris Dimos Poulikakos

The fabrication of functional metamaterials with extreme feature resolution finds a host of applications such as the broad area of surface/light interaction. Nonplanar features of such structures can significantly enhance their performance and tunability, but their facile generation remains a challenge. Here, we show that carefully designed out-of-plane nanopillars made of metal-dielectric comp...

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