gold chloride
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Processes ◽  
2021 ◽  
Vol 9 (12) ◽  
pp. 2279
Author(s):  
Alena Shumskaya ◽  
Larissa Panina ◽  
Alexander Rogachev ◽  
Zhanna Ihnatovich ◽  
Artem Kozlovskiy ◽  
...  

Ni nanotubes (NTs) were produced by the template method in the pores of ion-track membranes and then were successfully functionalized with gold nanoparticles (Ni@Au NTs) using electroless wet-chemical deposition with the aim to demonstrate their high catalytic activity. The fabricated NTs were characterized using a variety of techniques in order to determine their morphology and dimensions, crystalline structure, and magnetic properties. The morphology of Au coating depended on the concentration of gold chloride aqueous solution used for Au deposition. The catalytic activity was evaluated by a model reaction of the reduction of 4-nitrophenol by borohydride ions in the presence of Ni and Ni@Au NTs. The reaction was monitored spectrophotometrically in real time by detecting the decrease in the absorption peaks. It was found that gold coating with needle-like structure formed at a higher Au-ions concentration had the strongest catalytic effect, while bare Ni NTs had little effect. The presence of a magnetic core allowed the extraction of the catalyst with the help of a magnetic field for reusable applications.


2021 ◽  
Author(s):  
Hyunyong Kim ◽  
Hyunseok Kim ◽  
Kimoon Kim ◽  
Eunsung Lee

We report a bottom-up approach to immobilize catalysts into MOFs, including copper halides and gold chloride in a predictable manner. Interestingly, the structures of MOFs bearing NHC metal complexes maintained a similar 4-fold interpenetrated cube. They exhibited exceptionally high porosity despite the interpenetrated structure and showed good stability in various solvents. Moreover, these MOFs possess high size activity depending on the size of the substrates in various reactions, compared to homogeneous catalysis. Also, the high catalytic activity of MOFs can be preserved 4 times without significant loss of crystallinity. Incorporation of the various metal complexes into MOFs allows for the preparation of functional MOFs for practical applications.


2021 ◽  
Author(s):  
Hyunyong Kim ◽  
Hyunseok Kim ◽  
Kimoon Kim ◽  
Eunsung Lee

We report a bottom-up approach to immobilize catalysts into MOFs, including copper halides and gold chloride in a predictable manner. Interestingly, the structures of MOFs bearing NHC metal complexes maintained a similar 4-fold interpenetrated cube. They exhibited exceptionally high porosity despite the interpenetrated structure and showed good stability in various solvents. Moreover, these MOFs possess high size activity depending on the size of the substrates in various reactions, compared to homogeneous catalysis. Also, the high catalytic activity of MOFs can be preserved 4 times without significant loss of crystallinity. Incorporation of the various metal complexes into MOFs allows for the preparation of functional MOFs for practical applications.


2021 ◽  
Vol 121 ◽  
pp. 111613
Author(s):  
E. Erdogan ◽  
M. Yilmaz ◽  
S. Aydogan ◽  
U. Incekara ◽  
Y. Sahin

2021 ◽  
Author(s):  
Clément Cazorla ◽  
Lorenzo Casimiro ◽  
Tanzeel Arif ◽  
Claire Deo ◽  
Nawel Goual ◽  
...  

Diphosphines displaying azobenzene scaffolds and the corresponding bis-gold chloride complexes have been prepared and fully characterized by photophysical, spectroscopic and X-ray diffraction studies. DFT calculations provide complementary information on their...


2020 ◽  
Vol 22 (4) ◽  
pp. 28-30
Author(s):  
Perizat Abdurazova ◽  
Malik Sataev ◽  
Gulmira Kenzhibayeva ◽  
Shayzada Koshkarbayeva ◽  
Kalamkas Amanbayeva ◽  
...  

AbstractA technology for producing gold films on the surface of fabric materials has been developed, which provides for preliminary wetting of the fabric product with aqueous solutions of gold (III) chloride. In this case, a sorption layer of gold chloride is formed on the surface of fabric materials. Then, when drying these products under sunlight, physicochemical and photochemical processes occur, leading initially to the formation of monovalent gold chlorides, which, having semiconductor properties, provide the release of elemental gold. After washing of by-products on the surface of the material remains an ultra-thin film of gold, which has a sufficiently strong grip on the base. Since the proposed technology does not require special equipment it can be used to apply functional films of gold on various products of technical, household and medical purposes.


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