Completed

Nanoparticle and Magnetic-Dipole Self-Assembly

Laboratory investigation of field-driven nanoparticle and magnetic-dipole interactions.

Joel assisted with laboratory research on electric-field-driven self-assembly of nanoparticles and magnetic-dipole systems. He investigated dipole interactions and designed experimental apparatuses to observe, measure, and record magnetic-dipole behavior.

Why it matters

Understanding electric-field-driven self-assembly behavior of nanoparticles and magnetic-dipole systems contributes to the study of field-controlled particle organization.

My contribution

  • Assisted with laboratory research on electric-field-driven nanoparticle and magnetic-dipole self-assembly
  • Investigated dipole interactions and alignment
  • Designed experimental apparatuses to observe, measure, and record magnetic-dipole behavior