Highly Efficient Solar Vapor Generation via a Simple Morphological Alteration of TiO2 Films Grown on a Glassy Carbon Foam

Author(s):  
Sungdo Kim ◽  
Zeeshan Tahir ◽  
Mamoon Ur Rashid ◽  
Joon I. Jang ◽  
Yong Soo Kim
2019 ◽  
Vol 12 (2) ◽  
pp. 2490-2496 ◽  
Author(s):  
Zeeshan Tahir ◽  
Sungdo Kim ◽  
Farman Ullah ◽  
Sunghan Lee ◽  
Je-ho Lee ◽  
...  

Nanomaterials ◽  
2021 ◽  
Vol 11 (5) ◽  
pp. 1172
Author(s):  
Ádám Prekob ◽  
Mahitha Udayakumar ◽  
Gábor Karacs ◽  
Ferenc Kristály ◽  
Gábor Muránszky ◽  
...  

Glassy carbon foam (GCF) catalyst supports were synthesized from waste polyurethane elastomers by impregnating them in sucrose solution followed by pyrolysis and activation (AC) using N2 and CO2 gas. The palladium nanoparticles were formed from Pd(NO3)2. The formed palladium nanoparticles are highly dispersive because the mean diameters are 8.0 ± 4.3 (Pd/GCF), 7.6 ± 4.2 (Pd/GCF-AC1) and 4.4 ± 1.6 nm (Pd/GCF-AC2). Oxidative post-treatment by CO2 of the supports resulted in the formation of hydroxyl groups on the GCF surfaces, leading to a decrease in zeta potential. The decreased zeta potential increased the wettability of the GCF supports. This, and the interactions between –OH groups and Pd ions, decreased the particle size of palladium. The catalysts were tested in the hydrogenation of nitrobenzene. The non-treated, glassy-carbon-supported catalyst (Pd/GCF) resulted in a 99.2% aniline yield at 293 K and 50 bar hydrogen pressure, but the reaction was slightly slower than other catalysts. The catalysts on the post-treated (activated) supports showed higher catalytic activity and the rate of hydrogenation was higher. The maximum attained aniline selectivities were 99.0% (Pd/GCF-AC1) at 293 K and 98.0% (Pd/GCF-AC2) at 323 K.


2017 ◽  
Vol 184 (7) ◽  
pp. 2123-2129 ◽  
Author(s):  
Mohammed M. Rahman ◽  
Valero G. Alfonso ◽  
Francisco Fabregat-Santiago ◽  
Juan Bisquert ◽  
Abdullah M. Asiri ◽  
...  

Nano Research ◽  
2019 ◽  
Vol 13 (1) ◽  
pp. 255-264 ◽  
Author(s):  
Xing Zhao ◽  
Xiang-Jun Zha ◽  
Li-Sheng Tang ◽  
Jun-Hong Pu ◽  
Kai Ke ◽  
...  

Nano Energy ◽  
2020 ◽  
Vol 76 ◽  
pp. 104998 ◽  
Author(s):  
Si Chen ◽  
Zeyu Sun ◽  
Wenlong Xiang ◽  
Chenyang Shen ◽  
Zongyuan Wang ◽  
...  

2021 ◽  
Vol 283 ◽  
pp. 119652
Author(s):  
Soliu O. Ganiyu ◽  
Maria José Gomes de Araújo ◽  
Emily C.T. de Araújo Costa ◽  
José Eudes Lima Santos ◽  
Elisama Vieira dos Santos ◽  
...  

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