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SOURCING ADVANCED MATERIALS TO DRIVE A CLEANER, GREENER FUTURE.
Stanford Advanced Materials (SAM) upholds the principles of the United Nations Global Compact and encourages our partners and suppliers to do the same. We are also committed to advancing the United Nations Sustainable Development Goals (SDGs), ensuring that our operations contribute to a more equitable and sustainable world.

Our People

Our Operations

Our Community

The People
At Stanford Advanced Materials (SAM), we believe sustainability starts with people—our teams, partners, and the enterprises we support. We are committed to fostering sustainability through:
  • Knowledge & Awareness Building Training - Covering foundational sustainability and decarbonisation to enhance enterprise capabilities.
  • Strategic Sustainability Development - Assisting enterprises in optimising resources, adopting standards, and innovating sustainable products and services.
  • Industry Partnerships - Collaborating with key partners to support businesses in their sustainability transformation.
The Operations
Stanford Advanced Materials (SAM) focuses on enhancing efficiency and minimising waste across our operations.
  • Suppliers - We collaborate with suppliers to ensure responsible sourcing and environmentally efficient production of the materials we purchase.
  • Transportation - We work to reduce our carbon footprint by improving logistics and streamlining transportation processes.
  • Colleagues - SAM promotes sustainable commuting and business travel, encouraging practices that reduce emissions and increase overall efficiency.
  • Product Use and Disposal - We support responsible end-of-life treatment to ensure our products have a minimal environmental impact after use.
The Community
Sustainability extends beyond our operations to encompass our responsibility toward society, both locally and globally. Here's how we engage with and contribute to the community:
  • Supporting Local Economies - We prioritise working with local suppliers and partners, helping to stimulate economic growth while reducing the environmental impact.
  • Community Engagement - SAM actively participates in community initiatives that promote sustainability, such as supporting education programmes and sustainability awareness campaigns.
Learn More >
Energy Efficiency with SAM
  • Advanced Ceramic Materials: SAM's thermal insulation ceramics reduce energy loss in high-temperature applications, improving efficiency in manufacturing and power generation.
  • Lightweight Metals for Energy: Titanium and aluminium alloys reduce weight and improve fuel efficiency in aerospace, automotive, and energy sectors, promoting energy-efficient solutions.
  • Energy-Efficient Catalysts: Rhenium and platinum catalysts optimise energy processes and reduce emissions in transportation and manufacturing.
Energy Efficiency with SAM
  • Advanced Ceramic Materials: SAM's thermal insulation ceramics reduce energy loss in high-temperature applications, improving efficiency in manufacturing and power generation.
  • Lightweight Metals for Energy: Titanium and aluminium alloys reduce weight and improve fuel efficiency in aerospace, automotive, and energy sectors, promoting energy-efficient solutions.
  • Energy-Efficient Catalysts: Rhenium and platinum catalysts optimise energy processes and reduce emissions in transportation and manufacturing.
Carbon Emission Reduction with SAM
  • Battery Materials for Clean Energy: Lithium and cobalt enhance battery efficiency for electric vehicles and renewable energy storage, supporting cleaner energy solutions.
  • Solar Energy Materials: High-purity silicon improves solar energy conversion and system efficiency, maximising renewable energy potential.
  • Sustainable Manufacturing Materials: SAM's recycled and eco-friendly materials reduce environmental impact during production, promoting sustainable manufacturing.
Energy Efficiency with SAM
  • Advanced Ceramic Materials: SAM's thermal insulation ceramics reduce energy loss in high-temperature applications, improving efficiency in manufacturing and power generation.
  • Lightweight Metals for Energy: Titanium and aluminium alloys reduce weight and improve fuel efficiency in aerospace, automotive, and energy sectors, promoting energy-efficient solutions.
  • Energy-Efficient Catalysts: Rhenium and platinum catalysts optimise energy processes and reduce emissions in transportation and manufacturing.
Materials Customisation
Stanford Advanced Materials (SAM) provides custom-engineered materials to support sustainability goals across industries. Whether you need high-performance alloys, advanced ceramics, or eco-friendly alternatives, our tailored solutions help optimise efficiency, reduce waste, and enhance sustainability.

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