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Project Ideas for Bachelor of Science in Materials Science and Engineering

Discover and engineer novel materials—from quantum dots to carbon-negative concrete.

🏛 Introduction

CMU’s MSE BS merges atomic-scale understanding with accelerated computational discovery. You’ll investigate metallic glasses under femtosecond x-ray pulses, 3-D print bio-compatible scaffolds, and train graph neural networks to predict fracture toughness from crystal topology. Pittsburgh’s legacy steel labs meet tomorrow’s battery gigafactories on campus, giving you an unmatched playground to design materials that store more energy, heal themselves, or vanish harmlessly after use.

💡 Suggested Project Titles

Synthesis of sodium-ion solid electrolytes for low-cost grid storage

Machine-learning prediction of grain boundary energies in high-entropy alloys

Reprocessable thermoset polymers via dynamic covalent Diels-Alder chemistry

Nano-engineered asphalt modifiers for extended pavement lifetime

Magnetoelectric multiferroics for next-gen non-volatile memory devices

Biodegradable Zn-Mg orthopedic screws with controlled corrosion kinetics

3-D printed silica aerogel lattice for ultra-light thermal shielding

In-situ synchrotron study of phase transformation in additive-manufactured Ti-6Al-4V

Solid-state up-conversion phosphors for infrared-to-visible solar spectrum harvesting

Recycled carbon-fiber composites infused with vitrimeric resin for circular aviation parts

Atom-probe tomography of Li dendrite formation in anode-free batteries

Photonic crystal hydrogels for colorimetric pathogen sensing

Direct ink-writing of graphene flexible antennas with tunable conductivity

High-entropy oxide catalysts for CO₂ electro-reduction to fuels

Self-healing cementitious composites activated by microencapsulated bacteria

Finite-element simulation of fracture in architected meta-materials

AI-guided slurry formulation for fast-charging silicon-graphite anodes

Zero-C cement incorporating industrial slag and captured CO₂ carbonation

Protein-templated quantum dots for low-toxicity biomedical imaging

Life-cycle impact assessment of bio-derived epoxy versus petroleum-based resin

Carnegie Mellon – BS in Materials Science & Engineering

Invent the materials that will transform energy, health, and infrastructure at CMU.

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