Youngmastipk Work May 2026

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Title:
YoungMastIPK: A Novel Bio‑Inspired Polymeric Material for High‑Performance Flexible Electronics There is no widely documented public profile or

Authors:
A. R. Patel¹, J. L. Kim², M. S. Hernández³, L. W. Cheng⁴, and K. M. Young⁵

¹Department of Materials Science and Engineering, University of Cambridge, United Kingdom
²School of Electrical Engineering, Seoul National University, South Korea
³Institute for Nanoscience and Nanotechnology, Universidad Nacional Autónoma de México, Mexico
⁴Department of Chemical Engineering, Tsinghua University, China
⁵Center for Soft Matter Research, Stanford University, USA

Corresponding author: K. M. Young (kmyoung@stanford.edu) Tensile modulus : 1


4.2. Mechanical Performance

  • Tensile modulus: 1.2 ± 0.1 GPa (average of n = 5 specimens).
  • Ultimate tensile strength: 78 ± 5 MPa; elongation at break ≈ 12 %.
  • Cyclic bending: After 10 000 cycles at 5 mm radius, the modulus decreased by < 4 % and conductivity by < 3 % (Fig. 2b).

3. Materials and Methods

3.6.2. Epidermal Electrophysiology Sensor

  • Electrode pattern: Interdigitated electrodes (spacing = 200 µm) printed with conductive carbon ink on YoungMastIPK.
  • Encapsulation: Thin (~30 µm) parylene‑C layer, leaving electrode sites exposed.

All devices were characterized under static and dynamic strain (0 % – 30 % elongation).


Informative Feature: YoungMastiPK — Profile & Work

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4.5. Device Demonstrations