Breakthrough Is Only the Beginning.
Moving an advanced material from research to market requires more than scientific innovation. It requires the ability to design for performance, develop applications, validate commercially, manufacture consistently, and drive industrial adoption.
HEG Advanced Materials brings these capabilities together in one connected platform: creating a clear pathway from science to scale.
Design
Development
Validation
Adoption

Building Knowledge at the Source.
Research creates the scientific foundation for what follows: deepening our understanding of materials, their properties and performance.
Our capabilities span material characterisation, electrochemical testing and scientific investigation, building the knowledge required to identify and pursue promising material opportunities.
At Mandideep, dedicated R&D capabilities support the development and testing of advanced carbon materials, while collaborations with leading research institutions expand access to specialist knowledge and emerging material science.
Research connected to global expertise. Our collaboration with the National University of Singapore brings together academic research and industrial capability to advance graphene and other next-generation carbon materials.
Building Knowledge at the Source.
Research creates the scientific foundation for what follows: deepening our understanding of materials, their properties and performance.
Our capabilities span material characterisation, electrochemical testing and scientific investigation, building the knowledge required to identify and pursue promising material opportunities.
At Mandideep, dedicated R&D capabilities support the development and testing of advanced carbon materials, while collaborations with leading research institutions expand access to specialist knowledge and emerging material science.
Research connected to global expertise. Our collaboration with the National University of Singapore brings together academic research and industrial capability to advance graphene and other next-generation carbon materials.
Engineering Materials for Performance.
Scientific potential must translate into material performance.
Material design brings together scientific understanding and engineering expertise to optimise material properties for specific performance requirements and applications.
In anode active materials, this means engineering synthetic graphite for the performance demands of lithium-ion and sodium-ion batteries. In graphene, it means developing material characteristics and derivatives around the needs of different industrial applications.
Different materials. Different performance needs. From battery performance to coatings, construction and other emerging applications, material design connects scientific possibility with what an application actually demands.
Turning Material Potential Into Application.
Materials create value when they solve real-world problems.
Application development connects material capability with industry requirements: developing, testing and refining applications around defined performance needs.
Graphene is already being developed and validated across applications including construction, textiles, paints and coatings, rubber, lubricants and energy storage, demonstrating the potential for one material platform to address multiple industrial needs.
Proving What Works.
Before a material can scale, its performance and commercial potential must be demonstrated beyond the laboratory.
Testing, demonstration and customer validation establish performance under relevant conditions, refine applications and build confidence for commercial adoption.
TACC's synthetic graphite anode material has progressed through validation with global customers for lithium-ion cell applications, a critical step in taking an India-built material capability towards international markets. Validated for global markets.
Built for Repeatability. Built for Scale.
Commercial success requires more than making something once. It requires the ability to make it consistently.
Manufacturing brings together process knowledge, systems and industrial expertise to translate validated technologies into reliable commercial production.
For synthetic graphite anode material, the journey is already moving from demonstration towards commercial scale. A 200 MT demonstration plant at Mandideep has established the process that will underpin the commercial-scale manufacturing capability being developed at Dewas.
From Demonstration to Commercial Scale
200 MT Demonstration Plant | Mandideep
₹Commercial-Scale Manufacturing | Dewas
Headline: From Capability to Commercial Reality.
Technology creates lasting value when it performs in real operating environments and finds sustained market application.
Through Replus, the platform gains experience of how technologies perform within mobility, commercial, industrial, and grid-scale energy systems: from engineering and integration through deployment and lifecycle support.
Every Cycle Strengthens the Next.
The platform is not simply a sequence. It is a connected system.
Research informs material design. Material design shapes application development. Validation strengthens manufacturing. Manufacturing enables industrial adoption.
And what we learn through application, customers, and real-world performance feeds back into what we research, develop, and build next.
Knowledge compounds. Capability deepens.
Built on Industrial Experience.
Taking technologies to scale requires more than scientific capability. It requires the engineering discipline and execution experience to build and operate complex industrial systems.
HEG Advanced Materials draws on the industrial experience of the LNJ Bhilwara Group across materials, manufacturing, power and infrastructure.
The Malana hydroelectric project is one example of that capability: the 86 MW project was completed in approximately two and a half years against a conventional five-year timeframe and has now operated for 25 years.
That depth of execution strengthens the platform's ability to move from technological promise to industrial reality.
Experience that strengthens execution.


