Innovation & Intellectual Property
Patented Technologies & Applied Research
Advancing graphene-based materials and nanobioceramics through proprietary processes designed for industrial application and commercialization.
Patent Portfolio Overview
MTPL Research and Development Laboratory develops proprietary technologies aimed at translating scientific innovation into real world industrial solutions. Our patent portfolio spans advanced materials science, nanotechnology, and applied surface engineering, with key focus areas including graphene based functional coatings, electro conductive transparent graphene layers, and modified synthesis of calcium hydroxyapatite nanocrystals.
Each technology is developed with a clear focus on industrial scalability and commercialization. This portfolio reflects our ability to move from advanced material research to practical, scalable applications.

Scientific and Industrial Relevance
Our patented technologies respond to critical industrial challenges:
– Infection prevention and sterility in medical and food environments
– Replacement of fragile and rigid conductive oxides in electronics
– Advanced biomaterials for orthopedics and dentistry
– Improved process control and morphology design at nanoscale
Each development integrates material science innovation with application feasibility and market demand.
Key Patent Technologies:
Antibacterial Graphene Oxide Coatings
A graphene layer is formed on polypropylene using a graphite precursor and converted into graphene oxide through chemical immersion. The resulting transparent coating demonstrates antimicrobial activity, with validated reduction in the growth of Staphylococcus aureus, Pseudomonas aeruginosa, and fungi. Efficacy has been confirmed through microbiological research conducted by the National Public Health Surveillance Laboratory. This technology is applicable in medical devices, hospital surfaces, food processing environments, and consumer hygiene products.
Electro-Conductive Transparent Graphene Layers
Developed as an alternative to indium tin oxide, this technology offers higher flexibility, improved chemical resistance, strong mechanical durability, metallic conductivity, and high optical transparency. The process involves preparing an aqueous graphite oxide suspension, filtering it through a porous polymer membrane, and forming a thin, high quality graphene layer.
Potential applications include touch screens, solar cells, optical modulators, sensors, and transparent electrodes.
Modified Calcium Hydroxyapatite Nanocrystals
A modified sol gel based method enables controlled morphology, improved phase purity, nano scale grain control, and the formation of three dimensional bone structures. The material demonstrates high biocompatibility and osteoconductivity, supporting direct integration with bone tissue and improved implant fixation.
Applications include orthopedic and dental implants, bone regeneration, and 3D printing biomaterials.
From Laboratory to Industrial Application
Our development pathway progresses from scientific research and material design through process optimization, validation, patent protection, laboratory-scale validation, and industrial scalability assessment to final commercial integration. This model keeps intellectual property aligned with practical application and regulatory requirements at every stage, while ensuring full control over the path from concept to market readiness.
Strategic Vision
Our patent portfolio reflects a long-term commitment to innovation in advanced materials and nanotechnology. By combining scientific rigor with industrial applicability, we develop technologies that advance healthcare, electronics, and materials engineering on a global scale.
Innovation Strategy and Licensing
Beyond our existing patent portfolio, MTPL Pharma builds integrated innovation pathways that connect scientific research, intellectual property strategy, product development, scale-up, and licensing opportunities. This approach enables the transition from laboratory results to commercially viable solutions while supporting long-term competitiveness and market expansion.
Innovation Focus
Advanced Materials & Nanotechnology
Core Fields
Graphene Technologies
Antimicrobial Surfaces
Transparent Conductive Materials
Bioceramic Nanostructures
Development Model
Research → Validation → Patent → Industrial Application

