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Mohammad Mohiuddin
Principal Investigator
Michigan State University
I'm working on
5 months ago
High-Barrier Sustainable Packaging Materials, Multi-layer films, Shelf-Life Modeling, AI-Enabled Design, and Circular Solutions. Industry-ready, application-driven research with clear commercialization pathways.
I'm looking for
8 months ago
Sponsored research opportunities to co-develop sustainable packaging materials, barrier technologies, AI-enabled design tools, and circular solutions. Interested in pilot-scale validation, data sharing, and translation of lab concepts to scalable, recyclable packaging systems.
About
My research focuses on developing high-performance, sustainable packaging materials and systems that improve food safety, extend shelf life, and enable circularity. I work on polymeric nanofilms, multilayer barrier structures, and AI-enabled modeling to reduce chemical migration, control mass transfer, and optimize package–product interactions. My work bridges materials science, packaging engineering, and data-driven design to deliver scalable solutions aligned with regulatory, recyclability, and sustainability goals.
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MM
Michigan State University

Bio-based pfas-free barrier coatings for sustainable food packaging

Innovative bio-based coatings offer PFAS-free solutions for food packaging, combining nanocellulose, mineral platelets, and lipids to provide water, grease, and heat resistance. Designed for compatibility with existing p...

TechnologyIn developmentUniversity
MM
Michigan State University

Ai-enabled hybrid sorting system for flexible packaging recovery

An AI-driven sorting system for multi-layer flexible packaging leverages advanced optical sensing and machine learning to enhance the recovery and classification of polyolefin-based materials. It aims to boost recycling ...

TechnologyConceptualUniversity
MM
Michigan State University

Low-energy delamination and catalytic upcycling of multilayer polyolefin films

A novel low-energy process for recycling multilayer polyolefin films, enhancing material recovery and circularity through targeted delamination, catalytic purification, and reprocessing. This approach reduces energy dema...

TechnologyConceptualUniversity
MM
Michigan State University

Bio-inspired low-friction PET surface design for complete product evacuation

A novel bio-inspired PET bottle design enhances evacuation of viscous condiments using fluorine-free hydrophobic–oleophobic nanocoatings and optimized geometry, achieving >95% evacuation efficiency while maintaining recy...

TechnologyConceptualUniversity
MM
Michigan State University

Ai-enhanced digital twin for process optimization in food manufacturing

This AI-driven digital twin integrates physics-based and machine-learning models to simulate manufacturing processes in food production, optimizing efficiency, yield, and consistency. It enables predictive insights and a...

TechnologyIn developmentUniversity
MM
Michigan State University

Ai-driven predictive modeling for shelf-life optimization in packaged foods

An AI-driven predictive model integrating formulation, processing, and packaging parameters to simulate and optimize product shelf life. It combines machine learning and mechanistic modeling to analyze degradation kineti...

TechnologyIn developmentUniversity
MM
Michigan State University

Ai-driven digital twin platform for packaging design and performance simulation

The AI-driven digital twin platform leverages FEM, ML, and CFD to simulate packaging design performance, reducing prototyping costs and accelerating design cycles. It optimizes material use, enhances sustainability, and ...

TechnologyIn developmentUniversity
MM
Michigan State University

Recyclable high-barrier flexible packaging for OTC wellness products

Innovative recyclable packaging solution using cellulose-based substrates and bio-based coatings to achieve ultra-low moisture and oxygen permeability for OTC wellness products, compatible with existing packaging lines a...

TechnologyIn developmentUniversity
MM
Michigan State University

Low-density biodegradable resins for injection-molded packaging

Innovative biodegradable resin systems using PLA, PHA, TPS, and PBS/PBAT blends, designed for sustainable, food-contact compliant injection-molded packaging. These resins achieve low density, maintaining strength and pro...

TechnologyConceptualUniversity
MM
Michigan State University

Non-plastic multi-layered barrier materials for sustainable beverage packaging

Innovative multi-layer composite material offering a sustainable alternative to traditional plastic beverage containers by integrating biodegradable polymers and fiber-based reinforcements for enhanced durability and bar...

TechnologyConceptualUniversity
MM
Michigan State University

Advanced lightweight and durable glass packaging solutions

Innovative techniques for strengthening and lightweighting glass bottles through chemical ion exchange, microstructure optimization, and protective coatings. Enhances durability and reduces weight while maintaining recyc...

TechnologyIn developmentUniversity
MM
Michigan State University

Biofilm coatings to extend fresh produce shelf-life

This innovative biofilm coating system utilizes polysaccharides, biopolymers, and natural antimicrobial compounds to extend the shelf-life of fresh produce. It addresses dehydration, microbial spoilage, and enzymatic bro...

TechnologyIn developmentUniversity
MM
Michigan State University

Biodegradable multi-layer films for sustainable food packaging

Developing cost-effective, biodegradable multi-layer films that match the performance of conventional plastics for food packaging, enhancing recyclability and compostability for a circular economy.

TechnologyConceptualUniversity
MM
Michigan State University

Bio-active packaging with predictive modeling for extended meat product shelf-life

A cutting-edge bio-active packaging solution integrates natural preservatives and predictive modeling to extend the shelf-life of meat products. This innovative approach minimizes microbial growth and oxidation, ensuring...

TechnologyIn developmentUniversity
MM
Michigan State University

Advanced barrier technologies for sustainable HDPE packaging

Develop advanced barrier technologies for high-density polyethylene (HDPE) packaging to improve chemical resistance and reduce permeation of gases, liquids, and chemicals. Use alternative barrier materials such as nanoco...

TechnologyIn developmentUniversity
MM
Michigan State University

Lightweighting solutions for PET bottles

Develop cost-effective, lightweight PET bottles that maintain structural integrity and carbonation retention for carbonated soft drinks, aligning with sustainability goals and reducing environmental impact.

TechnologyIn developmentUniversity
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Mohammad Mohiuddin
Principal Investigator
Michigan State University
Work experience
Principal Investigator
2021 - Present
Postdoctoral Scientist
2016 - 2017
PhD, Polymer Nanocomposites
2005 - 2011
Top industry applications
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Results may appear later and can be imperfect.
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Results may appear later and can be imperfect.
Last updated Apr 2026
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