A simple one-pot strategy to platinum–palladium@palladium core–shell nanostructures with high electrocatalytic activity

2014 ◽  
Vol 265 ◽  
pp. 231-238 ◽  
Author(s):  
Jing-Jing Lv ◽  
Jie-Ning Zheng ◽  
Ying-Ying Wang ◽  
Ai-Jun Wang ◽  
Li-Li Chen ◽  
...  
2014 ◽  
Vol 152-153 ◽  
pp. 403-412 ◽  
Author(s):  
Luiz C.A. Oliveira ◽  
Henrique S. Oliveira ◽  
Giovanna Mayrink ◽  
Herman S. Mansur ◽  
Alexandra A.P. Mansur ◽  
...  

2012 ◽  
Vol 133 (2-3) ◽  
pp. 808-812 ◽  
Author(s):  
Y.Y. Wang ◽  
K.F. Cai ◽  
J.L. Yin ◽  
Y. Du ◽  
X. Yao

2015 ◽  
Vol 219 ◽  
pp. 7-11
Author(s):  
Lina Liu ◽  
Ruirui Sun ◽  
Yongsheng Zhang ◽  
Ruifei Qin ◽  
Dongmei Zhang ◽  
...  

CrystEngComm ◽  
2014 ◽  
Vol 16 (13) ◽  
pp. 2560-2564 ◽  
Author(s):  
Qiang Yuan ◽  
Da-Bing Huang ◽  
Hong-Hui Wang ◽  
Zhi-You Zhou ◽  
Qingxiao Wang

Pd–Pt@Pd core–shell nanocrystals were directly synthesized through an aqueous solution approach without any preformed Pd or Pt seeds.


2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Shaimaa Elyamny ◽  
Marwa Eltarahony ◽  
Marwa Abu-Serie ◽  
Marwa M. Nabil ◽  
Abd El-Hady B. Kashyout

AbstractMicrobial contamination is one of the major dreadful problems that raises hospitalization, morbidity and mortality rates globally, which subsequently obstructs socio-economic progress. The continuous misuse and overutilization of antibiotics participate mainly in the emergence of microbial resistance. To circumvent such a multidrug-resistance phenomenon, well-defined nanocomposite structures have recently been employed. In the current study, a facile, novel and cost-effective approach was applied to synthesize Ag@Ag2O core–shell nanocomposites (NCs) via chemical method. Several techniques were used to determine the structural, morphological, and optical characteristics of the as-prepared NCs. XRD, Raman, FTIR, XPS and SAED analysis revealed a crystalline hybrid structure of Ag core and Ag2O shell. Besides, SEM and HRTEM micrographs depicted spherical nanoparticles with size range of 19–60 nm. Additionally, zeta potential and fluorescence spectra illustrated aggregated nature of Ag@Ag2O NCs by − 5.34 mV with fluorescence emission peak at 498 nm. Ag@Ag2O NCs exhibited higher antimicrobial, antibiofilm, and algicidal activity in dose-dependent behavior. Interestingly, a remarkable mycocidal potency by 50 μg of Ag@Ag2O NCs against Candida albican; implying promising activity against COVID-19 white fungal post-infections. Through assessing cytotoxicity, Ag@Ag2O NCs exhibited higher safety against Vero cells than bulk silver nitrate by more than 100-fold.


2012 ◽  
Vol 15 (3) ◽  
pp. 171-179 ◽  
Author(s):  
Nora Mayté Sánchez-Padilla ◽  
Sagrario M. Montemayor ◽  
F.J. Rodríguez Varela

In this work, the effect of changing the stirring method and temperature on the physicochemical properties of metallic nanoparticles and core-shell nanostructures is shown. Magnetic (MS), mechanical (UT) and ultrasonic (USS) stirring are the methods of synthesis. The effect that, temperatures between 0 and 50 °C, has on the structure and particle size of Fe3O4 nanoparticles is evaluated. The results indicate that Fe3O4 prepared by the three methods presents a spinel-type crystalline structure. An increase in the synthesis temperature leads to highly crystalline powders. Afterwards, Pt is deposited by the UT method on Fe3O4 to form Fe3O4@Pt core-shell nanostructures. It is important to mention that the time used for the synthesis of the nanoparticles and the core-shell nanostructures is only one minute. The presence of Fe3O4 and Pt is confirmed by XRD and XPS. The metallic Pt phase is confirmed because the binding energy of Pt 4f 7/2 is associated to platinum in the zero-valent state. We evaluated the electrochemical activity of the Fe3O4@Pt core-shell nanostructures for the oxygen reduction reaction (ORR). The novel materials show a high electrocatalytic activity and the Koutecky-Levich analysis indicates that the reaction follows a 4 electron transfer mechanism on the Fe3O4@Pt nanostructures prepared by the three stirring processes. Moreover, the mass specific activity of the core-shell materials is as high as that obtained from the Pt-alone catalysts, suggesting that the amount of Pt in these electrodes can be reduced without decreasing the performance.


ACS Nano ◽  
2014 ◽  
Vol 8 (8) ◽  
pp. 8529-8536 ◽  
Author(s):  
Jinbo Fei ◽  
Jie Zhao ◽  
Cuiling Du ◽  
Anhe Wang ◽  
He Zhang ◽  
...  

RSC Advances ◽  
2016 ◽  
Vol 6 (40) ◽  
pp. 33946-33950 ◽  
Author(s):  
Yang-Yang Zhou ◽  
Ya-jie Kong ◽  
Qian-Qian Jia ◽  
Shuang Yao ◽  
Jing-Hui Yan

Two novel core–shell-like molecular composites [NiL3]4[HVIV12VV6O42(PO4)] and [NiL2]4[HVIV12VV6O42(PO4)] were designed and synthesized, which exhibited electrocatalytic activity for the reduction of H2O2 and oxidation of NO2−.


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