Revolutionizing Catalysis with Atomic Rhodium! #sciencefather #researchaward #RhodiumCatalysis
Atomic rhodium sites on conjugated porous monophosphine polymers represent a breakthrough in heterogeneous catalysis. These advanced materials integrate rhodium single-atom sites with a highly conjugated polymer backbone, enabling superior hydroformylation and hydrosilylation of alkenes. The unique design not only maximizes metal utilization but also ensures exceptional selectivity and stability under industrial conditions. This synergy between the polymer’s tailored porosity and the electronic properties of rhodium single atoms enhances both reaction rates and product yields, paving the way for sustainable and efficient alkene transformations. Ultimately, this innovation bridges the gap between molecular precision and scalable catalysis for tomorrow’s green chemistry solutions. Website : superiorengineering.org Contact : contact@superiorengineering.org Nomination Open Now : https://superiorengineering.org/award-nomination/?ecategory=Awards&rcategory=Awardee https://www.youtube.com/channel/UCc6L_gSYiXGykLg6M3s1fSw https://www.instagram.com/engineeringawardelite/ https://www.facebook.com/profile.php?id=61572883983646 https://www.linkedin.com/in/superior-engineering-a4198a34b/ https://in.pinterest.com/superiorengineering01/_profile/ http://x.com/awards86226 https://www.blogger.com/blog/posts/4687903420275319096 #SingleAtomCatalysts #HeterogeneousCatalysis #PorousPolymers #MonophosphinePolymers #AlkeneFunctionalization #Hydroformylation #Hydrosilylation #SustainableChemistry #GreenCatalysis #AdvancedMaterials #CatalystEngineering #PrecisionCatalysis #OrganicTransformation #PolymerChemistry #AtomEconomy #CatalysisResearch #ChemicalInnovation #MaterialScience #MolecularDesign
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