iridium nanoparticles
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RSC Advances ◽  
2022 ◽  
Vol 12 (4) ◽  
pp. 2123-2144
Author(s):  
Jan Krajczewski ◽  
Robert Ambroziak ◽  
Andrzej Kudelski

The synthesis and applications in catalysis of nanoparticles formed from ruthenium, rhodium, osmium and iridium have been reviewed.


Author(s):  
Guangxia Jin ◽  
Guowei Sun ◽  
Cheng Fu ◽  
Chan Wang ◽  
Guoxia Ran ◽  
...  

Iridium nanoparticles (IrNPs) have shown intriguing enzyme-like activities, however, the mechanism behind their versatile enzymatic behaviors is still elusive. A new kind of IrNPs stabilized with β-cyclodextrin (CD) was prepared...


2021 ◽  
Vol 514 ◽  
pp. 111836
Author(s):  
Dhananjay Bhattacherjee ◽  
Shaifali ◽  
Ajay Kumar ◽  
Grigory V. Zyryanov ◽  
Pralay Das

Author(s):  
Masaki Kobayashi ◽  
Hiroki Yamaguchi ◽  
Takeyuki Suzuki ◽  
Yasushi Obora

A simple method for the cross β-alkylation of linear alcohols with benzyl alcohols in the presence of DMF-stabilized iridium nanoparticles was developed. Furthermore, a highly effective catalyst-recycling process was also developed.


2021 ◽  
Vol 320 (1) ◽  
pp. R36-R43
Author(s):  
Wenbo Chen ◽  
David Z. D’Argenio ◽  
Arnold Sipos ◽  
Kwang-Jin Kim ◽  
Edward D. Crandall

Studies on health effects of engineered nanomaterials (ENMs) in the lung have provided information on ENM toxicity and translocation across airway and alveolar epithelial barriers. Various inhaled ENMs (e.g., gold and iridium nanoparticles) have been reported to partially cross the air-blood barrier in the lung, enter the vasculature, and distribute in several end organs, including the heart, liver, spleen, and kidney. Using an in vitro primary rat alveolar epithelial cell (AEC) monolayer model, we reported transport rates of relatively nontoxic polystyrene nanoparticles (PNPs), which appear to be taken up via nonendocytic processes into AECs. PNPs internalized into cytoplasm then trigger autophagy, followed by delivery of PNPs from autophagosomes into lysosomes, from where PNPs are exocytosed. We used the data from these experiments to perform biokinetic modeling that incorporates the processes associated with internalization and intracellular distribution of PNPs, autophagy, lysosomal exocytosis of PNPs, and several putative mechanisms of action that extend our previous understanding of AEC processing of PNPs. Results suggest that entry of PNPs into AECs, subsequent activation of autophagy by cytosolic PNPs, accumulation of PNPs in lysosomes, and lysosomal exocytosis are interwoven by proposed regulatory mechanisms.


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