Mark Lanoue
Affiliation confirmed via AI analysis of OpenAlex, ORCID, and web sources.
Managing Director of CHECCS NSF IUCRC
Also affiliated: Xiamen University (2024)
Research Areas
Links
Biography and Research Information
OverviewAI-generated summary
Mark Lanoue's research interests encompass the development of novel nanomaterials for applications in tissue regeneration and environmental remediation. He has investigated the synthesis of photocatalytic core-shell structures, specifically titanate nanowire/rGO composites, for efficient catalytic processes. His work also includes exploring nanomaterials for developing bone scaffolds designed for tissue regeneration. Prior to his current roles, Lanoue served as the Technology Manager for Intellectual Property at the University of Arkansas's Division of Economic Development. He is currently a PhD candidate in an inter-disciplinary program, focusing on research under Dr. Z. Ryan Tian, with whom he has co-authored multiple publications. Lanoue has also been involved in managing the CHECCS NSF IUCRC, a consortium focused on cybersecurity, energy, and advanced materials, involving collaborations with the University of Tennessee Knoxville and Florida International University.
Metrics
- h-index: 3
- Publications: 5
- Citations: 40
Positions
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Managing Director of CHECCS NSF IUCRC 2019–presentUniversity of Arkansas at Fayetteville Electrical Engineering ORCID
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Technology Manager 2019–2022University of Arkansas at Fayetteville Technology Ventures / Intellectual Property / Economic Development ORCID
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CEO/CTO 2013–2019PhiLumina, LLC Corporate ORCID
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Director of R&D 2017–2018Nicopure Research and Development ORCID
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Business Development 2016–2017ELTA North America Corporate ORCID
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CEO/CTO 2008–2013Themis Vision Systems, Inc Corporate ORCID
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Sensor Systems Engineer / Scientist / Program Manager 2001–2004The Institute for Technology Development / NASA Research Center ProVision Technologies / Hyperspectral imaging & Optical Systems ORCID
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Program Manager / Sensor Systems Engineer 1998–2001The Institute for Technology Development / NASA Commercial Space Center Provision Technologies / Hypersectral Imaging & Optics ORCID
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Imaging Scientist & Sensor Systems Engineer 1996–1998The Institute for Technology Development / NASA Human Exploration and Development of Space NASA Stennis Space Center ORCID
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Image Analyst / Programmer 1995–1996Resource21 a Boeing Company Remote Sensing ORCID
Selected Publications
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Novel Nanomaterials for Developing Bone Scaffolds and Tissue Regeneration (2025)
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Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO (2024)
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Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO (2024)
Collaboration Network
Top Collaborators
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Novel Nanomaterials for Developing Bone Scaffolds and Tissue Regeneration
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Efficient Photocatalytic Core/Shell of Titanate Nanowire/rGO
- Efficient Photocatalytic Core–Shell Synthesis of Titanate Nanowire/rGO
- Novel Nanomaterials for Developing Bone Scaffolds and Tissue Regeneration
- Novel Nanomaterials for Developing Bone Scaffolds and Tissue Regeneration
- Novel Nanomaterials for Developing Bone Scaffolds and Tissue Regeneration
- Novel Nanomaterials for Developing Bone Scaffolds and Tissue Regeneration
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