UiO-66 by Aarvi Energy Filtrex & Environmental Solutions Pvt. Ltd. is an advanced zirconium-based Metal-Organic Framework (MOF) nanomaterial widely used in membrane technology, gas separation, adsorption systems, catalysis, environmental engineering, water treatment, and advanced material science applications. UiO-66 is known for its exceptional thermal stability, high chemical resistance, large surface area, tunable porosity, and superior structural stability, making it highly suitable for advanced membrane and separation research applications.
UiO-66 is extensively utilized in mixed matrix membranes (MMMs), nanocomposite membranes, gas separation systems, adsorption technologies, catalytic applications, water purification systems, and environmental remediation research for improving membrane selectivity, permeability, and adsorption performance.
Key Features:
Exceptional thermal and chemical stability
High surface area and tunable pore structure
Superior adsorption and separation capability
Excellent compatibility with membrane fabrication systems
Enhances membrane permeability and selectivity
Suitable for mixed matrix and nanocomposite membrane development
Excellent structural stability under harsh conditions
High porosity and crystallinity
Suitable for advanced gas separation and environmental applications
Reliable performance in laboratory and industrial research systems
Technical Specifications:
Applications:
Gas Separation Membrane Development
Carbon Capture and Storage Research
Water and Wastewater Treatment Systems
Mixed Matrix Membrane Fabrication
Nanocomposite Membrane Research
Adsorption and Purification Technologies
Catalytic and Chemical Processing Applications
Environmental Remediation Research
Nanotechnology and Material Science Studies
Academic and Industrial R&D Projects
Advantages of UiO-66:
Excellent thermal and chemical durability
Enhances membrane separation efficiency and permeability
Suitable for advanced gas separation and adsorption technologies
High compatibility with membrane fabrication systems
Supports next-generation nanotechnology and environmental research
High porosity and selective molecular separation capability
Widely used in laboratory and industrial advanced material applications