This I-Corps project is based on the development of flexible and wearable electronics using adjustable materials that integrate both thermal regulation and electronic functionality into a single, lightweight platform. Currently, many next-generation devices, such as smart medical wearables, fitness trackers, and environmental sensors, face challenges related to overheating, inefficiency, and limited durability. These devices rely on passive cooling or bulky components that cannot meet the demands of compact and body-integrated applications. This technology addresses these problems by creating a new class of two-dimensional (2D) materials with engineered Moiré patterns, patterns created by mechanical interference of light caused by overlapping patterns of lines. These materials enable customizable heat flow while preserving excellent electrical performance and may be used to build flexible field-effect transistors (FETs) that dynamically control temperature and power in real time. Embedding heat management technology directly into the device material reduces the number of components, increases energy efficiency, and enhances long-term reliability. This solution may create safer and more effective health monitoring devices and longer-lasting consumer electronics, while lowering energy costs for users across medical, industrial, and home environments. This I-Corps project utilizes experiential learning coupled with a first-hand investigation of the industry ecosystem to asses