University of Tulsa

USA
3 Scholarships 100 Programs 3 Degree levels
Masters

Master's in Chemical Engineering

Offered at University of Tulsa, USA
DegreeMasters
FieldChemical Engineering.
C

Cost & earnings at University of Tulsa What students borrow here, and what they go on to earn

You borrow $21,500 median federal debt
You repay $244/mo over 10 years
Graduates earn $61,408 10 yrs after entry
Debt clears in 1 yrs of the salary premium
US Department of Education figures See the full breakdown →

The Master of Science in Chemical Engineering with a focus on Electrochemical Engineering at the University of Tulsa is a research-led programme that trains students in the fundamentals and applications of electrochemical systems such as batteries, fuel cells, electrolysis and corrosion control. It suits graduates with a background in chemical, materials or related engineering who want hands-on laboratory experience and close faculty mentoring for careers in energy, materials or process industries or for further doctoral study.

What you'll study

The programme combines core chemical engineering subjects with specialised coursework and research in electrochemical science and engineering. Students normally choose between a thesis (research) route and a coursework (non-thesis) route; both pathways require advanced engineering electives and laboratory experience.

  • Core topics: transport phenomena, reaction engineering, thermodynamics and numerical methods as applied to electrochemical systems.
  • Electrochemical specialisms: electrochemical kinetics, electrode materials and interfaces, battery and fuel-cell design, electrolysis and hydrogen production, corrosion science and electrochemical sensors.
  • Laboratory and practical work: electrochemical characterisation techniques (e.g. cyclic voltammetry, impedance spectroscopy), cell fabrication and testing, materials synthesis and surface analysis.
  • Research project / thesis: thesis-route students undertake an original research project under faculty supervision, typically producing a written thesis and oral defence; non-thesis students complete an applied project or additional electives.
  • Interdisciplinary options: coursework and research may draw on materials science, electrical engineering and surface chemistry, reflecting the cross-disciplinary nature of modern electrochemical engineering.

Entry requirements

Applicants are normally expected to hold a bachelor’s degree in chemical engineering, materials engineering, chemical science or a closely related discipline from an accredited institution. Admissions are based on the quality of prior academic record, relevance of undergraduate preparation and fit with faculty research interests.

  • Academic background: undergraduate coursework in thermodynamics, fluid mechanics, heat/mass transfer, reaction engineering and basic electrochemistry or physical chemistry.
  • GPA and academic standing: a solid undergraduate GPA in engineering or science is expected; specific minimums vary and are considered alongside the full application.
  • Supporting documents: academic transcripts, a statement of purpose outlining research interests (particularly in electrochemical topics), letters of recommendation and a résumé/CV.
  • International applicants: proof of English proficiency (TOEFL, IELTS or equivalent) is required where applicable, and official transcripts must be provided in English.
  • Additional considerations: relevant research or industry experience, prior laboratory work in electrochemistry or materials, and alignment with faculty research areas strengthen an application; GRE scores may be submitted where offered but are not universally required.

Career prospects

Graduates with a master’s concentration in electrochemical engineering are sought after in sectors developing energy conversion and storage technologies, materials protection and process electrochemistry. Career paths include:

  • Energy storage and conversion: roles in battery and fuel-cell development, testing and scale-up with manufacturers and start-ups.
  • Electrochemical manufacturing: process engineering for electrolytic production, metal plating, and electrochemical synthesis.
  • Corrosion and materials protection: corrosion engineer or materials engineer positions for infrastructure, oil & gas and maritime industries.
  • Research and development: R&D engineer or scientist roles in industrial laboratories, national labs and technology companies; graduates may also progress to doctoral study and academic careers.
  • Quality, testing and consultancy: technical specialist roles in testing laboratories, standards organisations and engineering consultancies working on electrochemical measurement and diagnostics.

Why study at University of Tulsa

The University of Tulsa offers a personalised graduate experience with small cohorts and accessible faculty, enabling close mentorship on experimental and applied electrochemical projects. The chemical engineering faculty engage in applied research relevant to energy and materials, allowing students to work on contemporary problems in batteries, fuel cells, corrosion and electrolytic processes.

  • Research-led training: opportunities to conduct hands-on experiments and publish or present findings as part of a thesis or major project.
  • Industry connections: proximity to regional energy and manufacturing sectors creates opportunities for collaboration, internships and applied projects.
  • Facilities and support: access to department laboratories and shared instrumentation for electrochemical characterisation and materials analysis, together with teaching and research assistantship opportunities that provide professional development and financial support.
  • Career-focused environment: the programme balances foundational engineering principles with practical skills sought by employers in energy, materials and process industries.

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Programme details are indicative and may change — always verify current information with the official university website before applying.