The Next Era of Scientific Computing Powered by Quantum & AI
Building the computational foundation for the next generation of scientific discovery, engineering breakthroughs, and advanced materials.
Our mission is to transform scientific computing into an intelligent engineering platform for the next generation of technologies.
What We Do
Engineering Intelligence Platform
Accelerating computational discovery into manufacturable technologies.
QMatX develops domain-specific computational engines and scientific software tailored to the unique challenges of different scientific and engineering disciplines. Our solutions accelerate material innovation, engineering design, process optimization, and technology development by enabling organizations to explore complex design spaces, evaluate alternatives, and make informed engineering decisions before physical implementation.
Working closely with research organizations and industry partners, we develop solutions that complement existing R&D workflows, reduce costly experimentation, lower technical risk, improve engineering decisions, and accelerate the path from computational design to real-world technologies.
Explore Our Capabilities
Functional Polymers & Organic Electronics
Engineer high-performance polymers and flexible electronic materials with improved durability and manufacturability.
Photonics & Optical Materials
Semiconductors & AI Infrastructure
Accelerate chip design, packaging optimization, thermal management, and manufacturing through scientific computing.
Energy Storage & Conversion
Develop materials for batteries, hydrogen, fuel cells, photovoltaics, and sustainable energy technologies.
Software & Dataset Generation
Develop customized scientific software, automated computational workflows, and high-quality datasets for AI model development, validation, and engineering decision-making.
Catalysis & Chemical Processes
Accelerate catalyst discovery and reaction optimization using AI-driven computational workflows.
Metals, Ceramics & Quantum Materials
Design advanced inorganic materials for extreme environments, electronics, and emerging quantum technologies.
Scientific Computing & AI
Build physics-informed, explainable AI workflows for engineering and scientific decision-making.
Advanced Manufacturing
Optimize manufacturing processes, engineering workflows, and product performance through scientific computing and engineering simulation.
Who We Are
Maliheh Shaban Tameh, Ph.D.
Founder & Chief Executive Office
Dr. Maliheh Shaban Tameh is the Founder and Chief Executive Officer of QMatX, where she leads the company's vision to transform engineering and advanced manufacturing through scientific computing, engineering intelligence, and physics-based computational technologies. She founded QMatX to bridge computational discovery, engineering design, and manufacturability, enabling organizations to make informed engineering decisions, reduce development risk, and accelerate the commercialization of next-generation technologies.
Dr. Tameh holds a Ph.D. in Scientific Computing from Florida State University and has extensive interdisciplinary research experience spanning scientific computing, computational physics, computational chemistry, applied mathematics, optimization, machine learning, molecular modeling, and advanced materials. Prior to founding QMatX, she held research appointments at the University of Arizona and the University of Minnesota, where she led collaborative research projects integrating computational modeling, simulation, and data-driven methods to solve complex engineering and scientific challenges.
Throughout her career, Dr. Tameh has developed scalable scientific software, computational algorithms, and physics-informed computational methodologies that accelerate engineering design, simulation, optimization, and decision-making across diverse scientific and industrial applications. Her work has resulted in peer-reviewed publications, interdisciplinary collaborations, and innovative computational technologies that bridge fundamental research with practical engineering solutions.
At QMatX, she leads the company's scientific strategy, technology development, and commercialization efforts, working closely with academic, industrial, and strategic partners to build an Engineering Intelligence Platform that enables organizations to optimize engineering workflows, evaluate design alternatives before fabrication, and accelerate the path from computational discovery to manufacturable products.
Mojtaba Nowrozi, Ph.D.
Senior Vice President & Chief Strategy Officer
Dr. Mojtaba Nowrozi serves as Senior Vice President and Chief Strategy Officer at QMatX, where he provides strategic leadership in technology commercialization, business development, industry partnerships, and corporate strategy. He advises the company's technology roadmap, helping bridge advanced materials innovation with semiconductor engineering, hardware development, and commercial deployment.
Dr. Nowrozi earned his Ph.D. in Electrical Engineering from the University of Arizona and is a semiconductor technology executive with more than three decades of experience in CMOS technology, analog and mixed-signal integrated circuit design, sensor systems, and technology commercialization. He has led the development of high-performance semiconductor technologies from research through commercial products, bringing extensive experience in both engineering leadership and product strategy.
Prior to joining QMatX, Dr. Nowrozi served as Director of CMOS Technology at Burr-Brown, where he led the development of advanced CMOS technologies for high-performance analog and mixed-signal integrated circuits. Following the acquisition of Burr-Brown, he held leadership positions at Texas Instruments, directing the development and commercialization of high-performance analog-to-digital and digital-to-analog converters (ADC/DAC) used in industrial, communications, and high-performance electronic systems.
At QMatX, Dr. Nowrozi helps guide strategic collaborations and technology partnerships while advising the development of engineering solutions that connect AI-driven materials design with semiconductor and advanced hardware applications.
Mohsen Poorrezaei
Vice President, Technology
Mohsen Poorrezaei serves as Vice President, Technology at QMatX, where he leads the development of the company's technology platform, engineering architecture, and scalable infrastructure. Working closely with the executive leadership team, he helps translate scientific innovation into practical engineering solutions that support QMatX's engineering intelligence platform.
Mr. Poorrezaei holds a degree in Mechanical Engineering and brings multidisciplinary expertise in engineering systems, system integration, and technical planning. His experience spans engineering design, technology implementation, and the development of scalable technology solutions, helping bridge the gap between research, engineering, and practical implementation.
At QMatX, Mr. Poorrezaei oversees technology development, contributes to platform strategy, and works closely with the engineering and scientific teams to support the development and deployment of the company's technology platform.Advisory Board
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Dr. Wayne L. Gladfelter is a globally recognized expert in materials chemistry, thin-film deposition, and semiconductor materials, with decades of experience advancing the science of functional materials. His pioneering work in chemical vapor deposition (CVD), atomic layer deposition (ALD), organometallic chemistry, and nanomaterials has helped shape modern materials synthesis, resulting in more than 250 scientific publications, multiple patents, and broad impact across both academia and industry.
Prof. Gladfelter's extensive experience in advanced materials research, technology development, and interdisciplinary collaboration provides valuable insight as we accelerate computational materials discovery. His expertise supports our efforts to develop next-generation materials by combining scientific innovation with data-driven approaches to solve complex challenges in materials design and manufacturing.
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Doug Goodman is a seasoned technology entrepreneur, investor, and commercialization expert with decades of experience building and scaling high-technology companies. As Founder and CEO of Ridgetop Group, he has led the development of advanced diagnostics, prognostics, and reliability technologies for aerospace, defense, energy, and industrial applications. Throughout his career, he has founded multiple technology ventures, guided companies through mergers, acquisitions, and public offerings, and played a key role in bringing innovative technologies from the laboratory to the marketplace.
Doug's expertise in technology commercialization, venture development, capital formation, and go-to-market strategy provides invaluable perspective as we bring advanced engineering technologies from research to market. His experience building successful deep-tech companies strengthens our mission to accelerate innovation through scientific computing, computational engineering, and intelligent design.
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Tim Kalthoff is an accomplished engineering executive, inventor, and technology leader with decades of experience developing advanced sensing, photonics, and high-reliability systems for defense, aerospace, and industrial applications. Throughout his career, he has led multidisciplinary engineering teams in transforming innovative concepts into commercially viable products, with expertise spanning product development, systems engineering, advanced electronics, and intellectual property.
Tim brings decades of experience leading engineering innovation and commercializing advanced technologies. His expertise in product strategy, engineering leadership, and technology commercialization helps guide QMatX as we build an Engineering Intelligence Platform that enables organizations to make better engineering decisions, reduce development risk, and accelerate innovation.
Work With Us
We partner with industry, research organizations, and strategic collaborators to accelerate innovation, optimize R&D workflows, and bring next-generation technologies to market.
Industry
Turn complex R&D challenges into deployable solutions
Pilot programs, workflow optimization, computational engineering, and AI-enabled decision support for faster product development and manufacturing.
Research & Academic
Co-develop and validate emerging technologies
Joint research, scientific software development, computational modeling, experimental validation, and collaborative funding opportunities.
Investors & Strategic Partners
Scale scientific computing into global impact
Capital, market access, technology alliances, and commercialization support to accelerate adoption and long-term growth.
Engaged With