scholarly journals Correction to: Design, fabrication, and characterization of thermal and optical properties of nano‑composite self‑cleaning smart window

2021 ◽  
Vol 53 (12) ◽  
Author(s):  
Mehdi Jafari Vardanjani ◽  
Mehdi Karevan ◽  
Mohsen Safavi
2021 ◽  
Author(s):  
Mehdi Jafari Vardanjani ◽  
Mehdi Karevan

Abstract Polymer-based smart windows have recently received attention due to their capabilities in energy consumption reduction. A smart window provides desired optical properties when heated/cooled by using solar energy when the ambient temperature requires regulation. The main issue here is the design and fabrication of such a smart element which is the main axis of the current research. The window in the proposed design operates in such a way that the percentage of light transmission depends on the presence of nanofluid between the two walls and refractive index conformity between the fluid and the polymeric walls; Therefore the percentage of light transmission will be at its minimum value (45%) in the absence of fluid and it will be at the maximum value (80%) at the presence of fluid. The fundamental steps of the present design includes design, fabrication, and characterization of the materials. In this regard experiments to determine the mechanical, physical, structural, optical, and thermal properties of components have been performed after considering, designing, and manufacturing various samples. The results show that the proposed smart offers acceptable performance with a fast switching rate and even more than other similar smart glasses due to the usage of discharge/injection mechanism. In overall, the product can be used as a smart transparent element in various structures such as buildings and even vehicles to regulate energy consumption and/or block the view for security purposes.


2019 ◽  
Vol 27 (9) ◽  
pp. 1981-1989
Author(s):  
孟建兵 MENG Jian-bing ◽  
娄广军 LOU Guang-jun ◽  
董小娟 DONG Xiao-juan ◽  
赵玉刚 ZHAO Yu-gang ◽  
周海安 ZHOU hai-an ◽  
...  

2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Mauro Melli ◽  
Melanie West ◽  
Steven Hickman ◽  
Scott Dhuey ◽  
Dianmin Lin ◽  
...  

AbstractThere are few materials that are broadly used for fabricating optical metasurfaces for visible light applications. Gallium phosphide (GaP) is a material that, due to its optical properties, has the potential to become a primary choice but due to the difficulties in fabrication, GaP thin films deposited on transparent substrates have never been exploited. In this article we report the design, fabrication, and characterization of three different amorphous GaP metasurfaces obtained through sputtering. Although the material properties can be further optimized, our results show the potential of this material for visible applications making it a viable alternative in the material selection for optical metasurfaces.


Author(s):  
Mustaqim Siddi Que Iskhandar ◽  
Huanping Luo ◽  
Krishna Ananda Ekaputera ◽  
Basim Al-Qargholi ◽  
Muhammad Mohsin Khan ◽  
...  

2017 ◽  
Vol 42 ◽  
pp. 284-292 ◽  
Author(s):  
Ayah F.S. Abu-Hani ◽  
Falah Awwad ◽  
Yaser E. Greish ◽  
Ahmad I. Ayesh ◽  
Saleh T. Mahmoud

2009 ◽  
Vol 13 (2) ◽  
pp. 133-149 ◽  
Author(s):  
Vivek Kumar ◽  
J. RamKumar ◽  
S. Aravindan ◽  
S. K. Malhotra ◽  
K. Vijai ◽  
...  

2021 ◽  
Author(s):  
Saad Ullah ◽  
Peixin Yang ◽  
Ghulam Abbas ◽  
Yongsheng Chen

Abstract In the recent years, cesium tin iodide (Cs2SnI6) double perovskite has emerged as a research hotspot in photovoltaics due to its exceptional stability and outstanding optoelectronic properties. In this work, we have utilized a reactant combination of SnI2 and I2 to prepare uniform Cs2SnI6 films via modified two-step process. The impact of the reaction conditions on the structural, morphological and optical properties is explored. It is found that optimizing the reaction conditions improves the phase stability and morphology of the films. The iodine-rich fabrication of the films ensued in enhanced PL and optical characteristics of the Cs2SnI6 with an optimal bandgap in the range of 1.21-1.34 eV. Additionally, we constructed all-inorganic photovoltaic devices FTO/TiO2/Cs2SnI6/Carbon utilizing optimized Cs2SnI6 films.


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