The PhD in Chemical Engineering with a focus on Electrochemical Engineering at Johns Hopkins University is a research-intensive programme that trains students to tackle fundamental and applied problems in electrochemical systems such as batteries, fuel cells, electrocatalysis and corrosion. It suits applicants with a strong background in chemical engineering, materials science, chemistry or related disciplines who want to pursue independent research leading to careers in academia, industry or government laboratories.
The programme combines advanced coursework, laboratory rotations and an extended independent research project leading to a doctoral dissertation. Early-stage study typically covers core topics in transport phenomena, thermodynamics, chemical kinetics and numerical methods, with specialist courses in electrochemical engineering such as electrochemical kinetics and mechanisms, electrode and interfacial phenomena, porous electrode theory, ion transport and membrane science, and materials for energy storage and conversion.
Doctoral study emphasises original experimental and/or theoretical work. Students undertake laboratory research under a faculty advisor, participate in seminars and journal clubs, pass written and/or oral qualifying examinations, and ultimately defend a dissertation that demonstrates a significant contribution to electrochemical engineering knowledge.
Applicants are expected to have a strong quantitative background in chemical engineering, chemistry, materials science, physics or a closely related field. Typical application components include:
Some applicants will have demonstrated research experience through undergraduate or master’s projects, internships, or publications. The admissions process is competitive and typically evaluates fit with faculty expertise and available research funding. Specific testing requirements (such as GRE) and other procedural details should be confirmed with the department at the time of application.
Graduates with a PhD focused on electrochemical engineering pursue a wide range of careers. Common pathways include:
Alumni skills in experiment design, multiscale modelling, materials characterisation and systems integration are highly valued across the growing clean energy and advanced materials sectors.
Johns Hopkins is known for its interdisciplinary research environment and strong linkage between fundamental science and engineering applications. The Department of Chemical and Biomolecular Engineering offers access to faculty working at the interface of electrochemistry, materials science and systems engineering, allowing students to pursue projects that span synthesis, characterisation, modelling and device testing.
Prospective students should contact faculty whose research aligns with their interests to discuss potential projects and funding opportunities prior to applying.
Shortlist scholarships and plan your application — free guidance from our advisors.