
Nanotechnology
Engineering advanced materials that transform industries and redefine what's possible.
Engineering Advanced Materials for the Next Generation of Industry
Nanotechnology is one of the core pillars of MAXi Technology Group. We develop advanced materials, functional nanoparticles and nanoengineered solutions designed to improve performance, sustainability and competitiveness across industrial sectors.
Our work focuses on transforming renewable resources and emerging materials into high-value technologies through research, development, scale-up and technology transfer.
Core Technologies
Graphene & Graphene-Derived Materials
MAXi develops graphene oxide (GO), reduced graphene oxide (rGO), functionalized graphene and graphene-based nanocomposites for industrial and technological applications.
Applications include:
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Advanced composites
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Energy storage systems
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Conductive coatings
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Smart materials
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Sensors and electronics
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Water treatment
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Corrosion-resistant materials
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Functional packaging
We also develop proprietary graphene production and functionalization routes, creating opportunities for technology licensing, industrial partnerships and large-scale manufacturing.
Activated Liquid Carbon
Activated Liquid Carbon is a proprietary biomass-derived platform designed for advanced industrial and environmental applications.
Applications include:
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Water treatment and filtration
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Environmental remediation
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Functional additives
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Sustainable industrial products
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Carbon-based carrier systems
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Bioeconomy solutions
Nanocellulose
Derived from renewable biomass, nanocellulose combines sustainability with exceptional mechanical performance.
Applications include:
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Composite reinforcement
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Sustainable packaging
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High-performance coatings
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3D printing materials
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Construction materials
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Smart materials
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Filtration systems
Advanced Nanocomposites
By combining graphene, nanocellulose, activated liquid carbon and other functional nanoparticles, MAXi develops next-generation materials tailored for industrial performance, durability and sustainability.
Target sectors include:
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Advanced Manufacturing
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Energy
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Mobility
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Construction
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Packaging
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Consumer Products
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Environmental Technologies
From Research to Industry
Beyond material development, MAXi creates complete innovation pathways including technology validation, intellectual property generation, technology transfer, industrial licensing and commercialization.
Through strategic collaborations across the United States, Portugal and Brazil, we transform advanced materials research into technologies ready for industrial adoption.
Developing advanced materials that power the future of industry.


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Nanotechnology is one of the core pillars of MAXi Technology Group's innovation strategy. Through the development of advanced materials, functional nanoparticles and nanoengineered solutions, we create technologies capable of improving performance, efficiency, sustainability and competitiveness across multiple industrial sectors.
Our approach combines materials science, nanotechnology, advanced manufacturing and industrial innovation to transform renewable resources and emerging materials into high-value technological platforms. By integrating research, development, scale-up and technology transfer, MAXi bridges the gap between laboratory discoveries and real-world industrial applications.
At the center of our nanotechnology platform is the development of advanced carbon-based materials and bio-derived nanomaterials, including graphene and its derivatives, activated liquid carbon, nanocellulose and functional nanocomposites. These technologies are designed to serve as enabling platforms for the development of next-generation products, industrial processes and high-performance materials.
Graphene and Graphene-Derived Materials
Graphene is among the most promising materials ever discovered due to its exceptional mechanical strength, electrical conductivity, thermal conductivity and multifunctional properties.
MAXi develops technologies involving graphene oxide (GO), reduced graphene oxide (rGO), functionalized graphene and graphene-based nanocomposites for industrial and technological applications.
Potential applications include:
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Advanced composites and lightweight materials
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Energy storage systems and batteries
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Conductive coatings and smart surfaces
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Additives for polymers, resins and elastomers
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Sensors and electronic devices
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Water treatment technologies
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Advanced filtration systems
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Corrosion-resistant materials
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Functional packaging solutions
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High-performance construction materials
The Group has already participated in the development of graphene-based biosensors for rapid molecular diagnostics and graphene-enhanced battery technologies in collaboration with research institutions and industrial partners.
These projects demonstrate the versatility of graphene as a platform technology capable of generating value across multiple industries.
Beyond individual products, MAXi develops proprietary technological routes for graphene production and functionalization, creating opportunities for industrial licensing, technology transfer and large-scale manufacturing partnerships.
Activated Liquid Carbon
Activated Liquid Carbon is an innovative carbon-based platform developed from renewable biomass through proprietary processing technologies.
Unlike traditional activated carbon products, Activated Liquid Carbon offers enhanced dispersion, increased surface interaction and the potential for nano-scale functionalization, enabling a broader range of industrial applications.
Potential applications include:
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Industrial additives and specialty formulations
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Environmental remediation technologies
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Water purification and treatment systems
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Adsorption and filtration processes
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Functional ingredients for advanced materials
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Agricultural and environmental solutions
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Sustainable industrial products
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Carbon-based carrier systems
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High-value bioeconomy applications
As a biomass-derived technology, Activated Liquid Carbon aligns with global sustainability trends and circular economy principles, creating new opportunities for converting renewable resources into advanced industrial materials.
Nanocellulose
Nanocellulose represents one of the most versatile and sustainable advanced materials available today.
Derived from renewable biomass, nanocellulose combines exceptional mechanical properties, low density, high surface area and excellent compatibility with a wide range of materials and industrial processes.
MAXi develops nanocellulose technologies as a strategic platform for advanced materials, sustainable manufacturing and next-generation industrial products.
Potential applications include:
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Reinforcement of polymers and composites
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Sustainable packaging solutions
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High-performance coatings
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Functional papers and specialty materials
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Additive manufacturing and 3D printing
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Construction materials
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Flexible substrates
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Smart materials
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Filtration systems
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Industrial process optimization
Nanocellulose also serves as a platform material for the development of advanced nanocomposites, combining sustainability with high-performance engineering characteristics.
Advanced Nanocomposites
By integrating graphene, nanocellulose, activated liquid carbon and other functional nanoparticles, MAXi develops advanced nanocomposites designed to address industrial challenges related to performance, durability, weight reduction and sustainability.
These materials can be customized for specific industrial requirements and applications across sectors such as:
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Advanced manufacturing
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Energy
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Aerospace
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Mobility
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Construction
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Packaging
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Consumer products
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Environmental technologies
The ability to combine multiple nanomaterials within a single engineered system creates opportunities for entirely new classes of products with enhanced functionality and competitive advantages.
Industrial Innovation Through Nanotechnology
MAXi's nanotechnology platform extends beyond material development.
Our objective is to create complete innovation pathways that include:
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Research and development
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Process engineering
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Scale-up strategies
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Technology validation
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Intellectual property generation
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Technology transfer
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Industrial licensing
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Joint development programs
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Commercial deployment
Through strategic collaborations with research institutions, industrial partners and innovation ecosystems in the United States, Portugal and Brazil, MAXi develops nanotechnology solutions capable of moving from scientific discovery to industrial implementation.
By combining advanced materials, proprietary technologies and global collaboration, MAXi is helping shape the future of industry through nanotechnology.
