4.8 Article

Paper Thermoelectrics: Merging Nanotechnology with Naturally Abundant Fibrous Material

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 8, Issue 34, Pages 22182-22189

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b05843

Keywords

colloidal quantum dots; paper electronics; thermoelectrics; energy harvesting; nanocomposites

Funding

  1. New Jersey Institute of Technology
  2. Otto York Center, Faculty Instrument Usage Seed Grant
  3. U.S. DOE Office of Science Facility at Brookhaven National Laboratory [DE-SC0012704]

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The development of paper-based sensors, antennas, and energy-harvesting devices can transform the way electronic devices are manufactured and used. Herein we describe an approach to fabricate paper thermoelectric generators for the first tune by directly impregnating naturally abundant cellulose materials with p- or n-type colloidal semiconductor quantum dots. We investigate Seebeck coefficients and electrical conductivities as a function of temperature between 300 and 400 K as well as in-plane thermal conductivities using Angstrom's method. We further demonstrate equipment-free fabrication of flexible thermoelectric modules using p- and n-type paper strips. Leveraged by paper's inherently low thermal conductivity and high flexibility, these paper modules have the potential to efficiently utilize heat available in natural and man-made environments by maximizing the thermal contact to heat sources of arbitrary geometry.

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