Kapil Kandel
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View article: Catalysts and methods of using the same
Catalysts and methods of using the same Open
The present invention provides a catalyst including a mesoporous silica nanoparticle and a catalytic material comprising iron. In various embodiments, the present invention provides methods of using and making the catalyst. In some example…
View article: Magnetic mesoporous material for the sequestration of algae
Magnetic mesoporous material for the sequestration of algae Open
The present invention provides a magnetic mesoporous nanoparticle that includes a mesoporous silicate nanoparticle and iron oxide. The present invention also provides a method of using magnetic mesoporous nanoparticles to sequester microor…
View article: Adsorbent catalytic nanoparticles and methods of using the same
Adsorbent catalytic nanoparticles and methods of using the same Open
The present invention provides an adsorbent catalytic nanoparticle including a mesoporous silica nanoparticle having at least one adsorbent functional group bound thereto. The adsorbent catalytic nanoparticle also includes at least one cat…
View article: Exocytosis of Mesoporous Silica Nanoparticles from Mammalian Cells: From Asymmetric Cell-to-Cell Transfer to Protein Harvesting
Exocytosis of Mesoporous Silica Nanoparticles from Mammalian Cells: From Asymmetric Cell-to-Cell Transfer to Protein Harvesting Open
Mesoporous silica nanoparticles (MSNs) have attracted considerable interest as vehicles for drug delivery because of their capacity to encapsulate large amounts of bioactive species and the ease with which their surface can be chemically m…
View article: Mesoporous Silica-Supported Amidozirconium-Catalyzed Carbonyl Hydroboration
Mesoporous Silica-Supported Amidozirconium-Catalyzed Carbonyl Hydroboration Open
The hydroboration of aldehydes and ketones using a silica-supported zirconium catalyst is reported. Reaction of Zr(NMe2)4 and mesoporous silica nanoparticles (MSN) provides the catalytic material Zr(NMe2)n@MSN. Exhaustive characterization …
View article: Synergistic Interaction between Oxides of Copper and Iron for Production of Fatty Alcohols from Fatty Acids
Synergistic Interaction between Oxides of Copper and Iron for Production of Fatty Alcohols from Fatty Acids Open
In this study, the selective hydrogenation of fatty acids to fatty alcohols can be achieved under moderate conditions (180 °C, 30 bar H2) by simultaneously supporting copper and iron oxides on mesoporous silica nanoparticles. The activity …