VP Research & Development (R&D)
MetOx International, Inc.
| Company | MetOx International, Inc. |
| Category | Uncategorised |
| Location | Houston |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Not stated |
| Salary | Not stated by the employer |
| Posted | 30 Jul 2026 |
| Last verified | 2 Aug 2026 |
| Source | Employer ATS (greenhouse) |
Description
Empower Your Future: At MetOx International, we’re pioneering the next era of energy security and abundance through breakthrough superconducting technology. As the Vice President Research & Development, you'll lead the scientific strategy that powers our next generation of high-temperature superconducting (HTS) technologies. You'll define the research roadmap, challenge technical assumptions, validate breakthrough concepts, and build the innovations that will shape the future of electric power transmission.
Based at our global headquarters in Houston, TX, the Vice President Research & Development reports directly to the Chief Operating Officer and serves as the executive leader responsible for the company's research organization. You will establish long-term technology strategy, prioritize research investments, lead multidisciplinary scientific teams, and accelerate the transition of new technologies from concept through commercialization. Working closely with Engineering, Manufacturing, Product Management, and executive leadership, you'll ensure MetOx continues to advance the world's leading HTS technology platform.
Key Responsibilities
Technology Strategy & Scientific Leadership
Defines and executes MetOx's long-term technology strategy to establish global leadership in high-temperature superconducting (HTS) conductor performance, manufacturability, and cost competitiveness.
Develops and maintains multi-year technology roadmaps focused on increasing critical current (Ic), engineering current density (Je), in-field performance, manufacturing yield, and production throughput.
Leads technology development through a first-principles understanding of superconducting materials, thin-film growth, defect engineering, vortex pinning, and process physics.
Identifies and prioritizes the highest-impact scientific and engineering challenges, translating them into focused research programs with measurable technical milestones.
Serves as MetOx's senior technical authority on REBCO materials, MOCVD processing, epitaxial thin-film growth, conductor architecture, and superconducting performance.
Advises executive leadership on long-range technology investments, innovation strategy, competitive positioning, and emerging technologies.
Advanced Materials, Process & Equipment Development
Leads the development of next-generation MOCVD processes that improve film quality, compositional control, deposition rate, uniformity, reproducibility, manufacturing scalability, and cost.
Drives scientific understanding of precursor chemistry, gas-phase reactions, transport phenomena, nucleation, epitaxial growth, crystallization kinetics, oxygenation, and defect evolution during film deposition.
Leads the development of advanced artificial pinning center technologies, defect engineering strategies, strain engineering, multilayer architectures, and nanoscale microstructure optimization to maximize superconducting performance.
Establishes quantitative structure-process-property relationships governing critical current density, engineering current density, in-field performance, mechanical reliability, and long-length uniformity.
Drives experimental, computational, and analytical approaches that replace empirical process development with predictive, science-based process optimization.
Leads the design and development of next-generation MOCVD reactor platforms, deposition hardware, and process equipment to improve process control, throughput, uniformity, reliability, and manufacturing efficiency.
Partners with Equipment Engineering to define reactor architecture, gas delivery systems, precursor delivery, thermal management, exhaust systems, and process control technologies for future manufacturing platforms.
Develops advanced reaction diagnostics and in situ metrology capabilities to understand precursor decomposition, gas-phase chemistry, film growth dynamics, defect formation, and
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