Fluorine-doping boosts performance

Nature Energy ◽  
2021 ◽  
Author(s):  
Vincenzo Baglio
Keyword(s):  
2021 ◽  
Vol 32 (8) ◽  
pp. 10368-10375
Author(s):  
Botao Shao ◽  
Shengnan Zhang ◽  
Jixing Liu ◽  
Jianqing Feng ◽  
Chengshan Li ◽  
...  

2021 ◽  
Vol 22 ◽  
pp. 100851
Author(s):  
Zhexuan Liu ◽  
Liping Qin ◽  
Xingyu Chen ◽  
Xuefang Xie ◽  
Bing Zhu ◽  
...  
Keyword(s):  

2021 ◽  
Vol 21 (3) ◽  
pp. 170-176
Author(s):  
M. D. Smolikov ◽  
O. V. Dzhikiya ◽  
L. I. Bikmetova ◽  
K. V. Kazantsev ◽  
I. V. Muromtsev ◽  
...  

The study considers the effect of fluorine doping of the alumina matrix used for the synthesis of supported sulfated zirconia catalysts. Hydrofluoric acid served as a fluorinating agent. The addition of fluorine was shown to affect the textural characteristics of the Al2O3 matrix and hence the surface area of sulfated zirconia catalysts based on the doped systems. It was found that the introduction of fluorine into the catalysts increases their activity (the conversion of hexane) and the yield of high-octane isomer 2,2-dimethylbutane.


Author(s):  
Xinhong Chen ◽  
Mengjiao Wei ◽  
Jia Zhou

The rational design of an efficient and stable electrocatalyst utilizing defects plays a key role in promoting hydrogen production from electrolytic water to tackle the energy crisis. In this work,...


2018 ◽  
Vol 11 (2) ◽  
pp. 2042-2049 ◽  
Author(s):  
Yao Lu ◽  
Xiaoyi Meng ◽  
José A. Alonso ◽  
María T. Fernández-Díaz ◽  
Chunwen Sun

2019 ◽  

Transparent conducting oxide (TCO) thin films are materials of significance for their applications in optoelectronics and sun powered cells. Fluorine-doped tin oxide (FTO) is an elective material in the advancement of TCO films. This paper reports the impact of fluorine doping on structural, optical and electrical properties of tin oxide thin films for solar cells application. The sol-gel was prepared from anhydrous stannous chloride, SnCl2 as an originator, 2-methoxyethanol as a solvent, di-ethanolamine as a preservative and ammonium fluoride as the dopant source. FTO precursor solution was formulated to obtain 0, 5, 10, 15 and 20 % doping concentration and deposited on glass substrates by means of spin coater at the rate of 2000 rpm for 40 seconds. After pre-heated at 200 oC, the samples were annealed at 600 oC for 2 h. The structural, optical and electrical characteristics of prepared films were characterized using X-ray diffraction (XRD) analysis, UV-visible spectroscopy and electrical measurement. X-ray diffraction (XRD) investigation of the films demonstrated that the films were polycrystalline in nature with tetragonal-cassiterite structure with most extraordinary pinnacle having a grain size of 17.01 nm. Doping with fluorine decreases the crystallite size. There was increment in the absorbance of the film with increasing wavelength and the transmittance was basically reduced with increasing fluorine doping in the visible region. The energy band gaps were in the range of 4.106-4.121 eV. The sheet resistance were observed to decrease as the doping percentage of fluorine increased with exception at higher doping of 15 and 20 %. In view of these outcomes, FTO thin films prepared could have useful application in transparent conducting oxide electrode in solar cell.


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