WOS: 000373608400033In this study, highly monodisperse platinum nanoparticles supported on reduced graphene oxide in the presence of tripentylamine (TPA) (Pt(0)/TPA@rGO NPs) are used as a stable, isolable, bottleable, long-lived, highly efficient and exceptionally reusable heterogeneous catalyst for eco-friendly hydrogenation of various aromatic aldehyde compounds with unprecendented catalytic performance. Pt(0)/TPA@rGO NPs have been used for the first time for these types of synthesis reactions and these NPs were characterized by transmission electron microscopy (TEM), high resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), atomic force microscopy (AFM) and X-ray photoelectron spectroscopy (XPS). Herein, the cata...
New Pt(0) nanoparticles were easily and reproducibly prepared by the simultaneous reduction method u...
International audienceA series of narrowly dispersed Pt nanoparticles of 1.5–2.2 nm in size stabiliz...
It reports how to increase the overall catalytic performance of precious platinum nanocatalysts in h...
Addressed herein, monodisperse platinum nanoparticles (Pt (0)/DPA@GO NPs), supported on graphene oxi...
Herein, monodisperse platinum (0) nanocatalyst assembled on reduced graphene oxide (Pt(0)@RGO) was e...
Highly effective and stable palladium nanoparticles (Pd NPs) supported on graphene oxide (GO) were s...
Addressed herein, we report the development of carbon nanotube furnished highly efficient and nearly...
WOS: 000460711000008Graphene oxide-supported rhodium/platinum (Rh-Pt) nanoparticles (Rh-Pt@GO NPs) a...
Here, we report the clean and facile synthesis of Pt and Pd nanoparticles decorated on reduced graph...
Addressed herein, we reported the fabrication of the graphene oxide (GO) supported monodispersed rut...
In this work, we report the synthesis, characterization and application of graphene oxide stabilized...
In this work, we report an improved catalyst which is superior to known heterogeneous catalysts for ...
WOS: 000372957100002New Pt(0) nanoparticles were easily and reproducibly prepared by the simultaneou...
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
A series of narrowly dispersed Pt nanoparticles of 1.5–2.2 nm in size stabilized by bulky terphenylp...
New Pt(0) nanoparticles were easily and reproducibly prepared by the simultaneous reduction method u...
International audienceA series of narrowly dispersed Pt nanoparticles of 1.5–2.2 nm in size stabiliz...
It reports how to increase the overall catalytic performance of precious platinum nanocatalysts in h...
Addressed herein, monodisperse platinum nanoparticles (Pt (0)/DPA@GO NPs), supported on graphene oxi...
Herein, monodisperse platinum (0) nanocatalyst assembled on reduced graphene oxide (Pt(0)@RGO) was e...
Highly effective and stable palladium nanoparticles (Pd NPs) supported on graphene oxide (GO) were s...
Addressed herein, we report the development of carbon nanotube furnished highly efficient and nearly...
WOS: 000460711000008Graphene oxide-supported rhodium/platinum (Rh-Pt) nanoparticles (Rh-Pt@GO NPs) a...
Here, we report the clean and facile synthesis of Pt and Pd nanoparticles decorated on reduced graph...
Addressed herein, we reported the fabrication of the graphene oxide (GO) supported monodispersed rut...
In this work, we report the synthesis, characterization and application of graphene oxide stabilized...
In this work, we report an improved catalyst which is superior to known heterogeneous catalysts for ...
WOS: 000372957100002New Pt(0) nanoparticles were easily and reproducibly prepared by the simultaneou...
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
A series of narrowly dispersed Pt nanoparticles of 1.5–2.2 nm in size stabilized by bulky terphenylp...
New Pt(0) nanoparticles were easily and reproducibly prepared by the simultaneous reduction method u...
International audienceA series of narrowly dispersed Pt nanoparticles of 1.5–2.2 nm in size stabiliz...
It reports how to increase the overall catalytic performance of precious platinum nanocatalysts in h...