Replacing expensive quaternary ammonium templates with diazabicyclooctane cations lowers synthesis costs while maintaining crystal integrity.
Cross-seeding aluminium hydroxide precipitates between tanks improves extraction rates and product quality.
Composite beta zeolites with specific silica-alumina ratios improve hydrocarbon adsorption capacity while maintaining thermal stability and handling properties.
ITQ-27 crystalline microporous material overcomes pore dimension limitations of existing zeolites by providing unique 2D channels for hydrocarbon conversion.
Removing cerium prevents rhodium oxidation while the composite structure retains porosity, sustaining DeNOx activity under harsh exhaust conditions.
Synthesizing SSZ-79 molecular sieve using cyclic amine templates resolves selectivity versus complexity trade-offs in gas separation.
Ultrafine alumina particles reduce coating thickness and pressure loss in exhaust catalysts while preserving purification performance.
Excess anhydride end groups and phosphorus additives prevent crosslinking, maintaining low viscosity for thermoplastic molding.
Shear treatment and hydrothermal growth guide alumina grains into single-crystal octahedra with {111} plane exposure.
Segmented aluminium trihydroxide particles resolve the trade-off between viscosity and thermal conductivity by optimizing heat dissipation pathways.
Ag-exchanged zeolites remove CO via π-complexation, resolving hydrothermal damage trade-offs.
Hydrothermal crystallization yields nano-scale Boehmite particles, eliminating milling costs and enhancing flame retardancy in plastics.
UZM-26 aluminosilicate zeolite employs segmented layers to overcome limited functionality in hydrocarbon conversion.
Blended ZSM-48 catalysts with controlled silica-to-alumina ratios enable selective isomerization, reducing reaction severity and improving basestock yields.
Microwave plasma ionizes ceramic powders to reduce van der Waals forces, resolving aggregation issues that hinder uniform thin film formation.