Taylor V. Neumann
Papers
5
Total Citations
691
H-Index
5
About
Taylor V. Neumann is a materials scientist and engineer whose research sits at the dynamic intersection of soft electronics, liquid metal materials, and stretchable device fabrication. Best known for advancing the field of gallium-based liquid metal alloys, Neumann's highly cited 2020 review on liquid metal direct write and 3D printing (317 citations) has become an essential reference for researchers developing next-generation soft circuitry, offering a comprehensive mapping of methods, challenges, and opportunities in the field. Complementing this foundational work, their 2020 study on ultrasoft liquid metal elastomer foams (231 citations) introduced innovative piezopermittive materials for tactile sensing, with direct implications for soft robotics, electronic skins, and human-machine interfaces. Neumann has also made notable contributions to mechanochromic stretchable electronics, enabling real-time visual failure detection in deformable devices, and to stretchable electroadhesion systems utilizing liquid metal microelectrodes. More recently, their work on flexible-to-stretchable interconnects addresses a critical challenge in powering and communicating with wearable devices. Across these contributions, Neumann has established themselves as an innovative voice shaping the future of soft, adaptive, and body-integrated electronic systems.
Research Focus
Key Achievements
Top Papers
- 1Liquid Metal Direct Write and 3D Printing: A Review317 citations · 2020
- 2
- 3Mechanochromic Stretchable Electronics89 citations · 2018
- 4
- 5Flexible-to-Stretchable Mechanical and Electrical Interconnects26 citations · 2023