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Thermoelectric performance of p-type nanohybrids filled polymer composites
Kun Zhang
, Shiren Wang
, Xin Zhang
,
Yue Zhang
, Yuan Cui
, Jingjing Qiu
Manufacturing Engineering
Texas AandM University
Texas Tech University
Texas A&M University-Kingsville
Research output
:
Contribution to journal
›
Article
›
peer-review
55
Scopus citations
Overview
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Dive into the research topics of 'Thermoelectric performance of p-type nanohybrids filled polymer composites'. Together they form a unique fingerprint.
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Material Science
Polymer Composite
100%
Thermoelectrics
100%
Nanohybrid
100%
Filled Polymer
100%
Reduced Graphene Oxide
100%
Nanoparticle
33%
Thermal Conductivity
16%
Percolation
16%
Schottky Barrier
16%
Oxide Surface
16%
Engineering
Reduced Graphene Oxide
100%
Nanohybrid
100%
Thermoelectricity
100%
Nanoparticle
33%
Power Factor
33%
Highest Occupied Molecular Orbital
33%
Conductive
16%
Thermal Conductivity
16%
Figure of Merit
16%
Conductive Polymer
16%
Band Structure
16%
Energy Carrier
16%
Percolation Threshold
16%
Schottky Barrier
16%
Organic Semiconductor
16%