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"Weakly Ligated, Labile Ligand" Nanoparticles: The Case of Ir(0) n ·(H+Cl-) m

artículo científico publicado en 2018

A Classic Azo-Dye Agglomeration System: Evidence for Slow, Continuous Nucleation, Autocatalytic Agglomerative Growth, Plus the Effects of Dust Removal by Microfiltration on the Kinetics.

artículo científico publicado en 2017

B–N Polymer Embedded Iron(0) Nanoparticles as Highly Active and Long Lived Catalyst in the Dehydrogenation of Ammonia Borane

artículo científico publicado el 1 de julio de 2013

Catalytic methanolysis of hydrazine borane: a new and efficient hydrogen generation system under mild conditions

artículo científico publicado el 28 de abril de 2012

Ceria supported ruthenium(0) nanoparticles: Highly efficient catalysts in oxygen evolution reaction

scientific article published on 22 September 2018

Dust Effects on Ir(0)n Nanoparticle Formation Nucleation and Growth Kinetics and Particle Size-Distributions: Analysis by and Insights from Mechanism-Enabled Population Balance Modeling

artículo científico publicado en 2020

Hydrogen liberation from the hydrolytic dehydrogenation of dimethylamine–borane at room temperature by using a novel ruthenium nanocatalyst

artículo científico publicado el 12 de marzo de 2012

Is It Homogeneous or Heterogeneous Catalysis Derived from [RhCp*Cl2]2?In OperandoXAFS, Kinetic, and Crucial Kinetic Poisoning Evidence for Subnanometer Rh4Cluster-Based Benzene Hydrogenation Catalysis

artículo científico publicado el 28 de octubre de 2011

Magnetically separable rhodium nanoparticles as catalysts for releasing hydrogen from the hydrolysis of ammonia borane

artículo científico publicado en 2019

Mechanism-Enabled Population Balance Modeling of Particle Formation en Route to Particle Average Size and Size Distribution Understanding and Control

artículo científico publicado en 2019

Nanoceria-Supported Ruthenium(0) Nanoparticles: Highly Active and Stable Catalysts for Hydrogen Evolution from Water.

artículo científico publicado en 2018

One-pot synthesis of colloidally robust rhodium(0) nanoparticles and their catalytic activity in the dehydrogenation of ammonia-borane for chemical hydrogen storage

artículo científico publicado el 3 de marzo de 2011

Titania, zirconia and hafnia supported ruthenium(0) nanoparticles: Highly active hydrogen evolution catalysts

artículo científico publicado en 2018