Explore our curated collection of technical analyses and commercial scale-up strategies specifically focused on Graphene Catalysis. These insights are designed to support R&D and procurement teams in optimizing their supply chains.
Patent CN115850090B details a green graphene-catalyzed route for 4,4'-diaminodiphenyl methane, offering high purity, reduced corrosion, and scalable manufacturing advantages.
Novel graphene-supported ruthenium catalyst method ensures high purity and selectivity for polymer and specialty chemical manufacturing supply chains.
Patent CN115073285A details a novel graphene oxide-catalyzed route for 3,5-diiodo salicyloyl chloride, offering superior purity and yield for pharmaceutical intermediates.
Novel sulfonated graphene catalyst enables efficient 2-alkylanthraquinone production. Reduces waste and enhances supply chain reliability for global pharmaceutical partners.
Patent CN108689867B reveals a green catalytic reduction method. Achieve high purity and cost reduction in agrochemical intermediate manufacturing with scalable water-based processes.
Patent CN106928136B details graphene palladium cobalt catalysis for montelukast intermediate. Offers high yield and chiral selectivity for reliable pharmaceutical intermediate supply chains.
Patent CN106928136A reveals graphene palladium cobalt catalyst for Montelukast intermediate. Enhances purity and supply chain reliability for pharmaceutical manufacturing.
Patent CN111253406A details a green synthesis route for dihydrobenzo imidazo pyrimidine derivatives using magnetic graphene, offering high purity and recyclable catalysts for reliable pharmaceutical intermediate supply.
Novel graphene oxide catalyzed process for high-purity p-Menthane-3,8-diol. Reduces acid waste and improves cis-isomer selectivity for reliable supply chains.
Patent CN108341740A introduces a green synthesis of p-Menthane-3,8-diol using graphene oxide catalyst without strong acids. This method delivers enhanced purity and cost reduction in pharmaceutical intermediate manufacturing.