Amanote Research
Register
Sign In
Doping Engineering Enables Highly Conductive and Thermally Stable N-Type Organic Thermoelectrics With High Power Factor
doi 10.1021/acsaem.9b01179.s001
Full Text
Open PDF
Abstract
Available in
full text
Date
Unknown
Authors
Unknown
Publisher
American Chemical Society (ACS)
Related search
High Seebeck Coefficient and Power Factor in N-Type Organic Thermoelectrics
Advanced Electronic Materials
Optical
Electronic
Magnetic Materials
Power Factor Enhancement in Solution-Processed Organic N-Type Thermoelectrics Through Molecular Design
Advanced Materials
Mechanics of Materials
Materials Science
Nanotechnology
Mechanical Engineering
Nanoscience
Thermoelectrics: Extraordinary N‐Type Mg 3 SbBi Thermoelectrics Enabled by Yttrium Doping (Adv. Mater. 36/2019)
Advanced Materials
Mechanics of Materials
Materials Science
Nanotechnology
Mechanical Engineering
Nanoscience
A Chemically Doped Naphthalenediimide-Bithiazole Polymer for N-Type Organic Thermoelectrics
Advanced Materials
Mechanics of Materials
Materials Science
Nanotechnology
Mechanical Engineering
Nanoscience
Highly Power Efficient Organic Light-Emitting Diodes With a P-Doping Layer
Applied Physics Letters
Astronomy
Physics
N-Type Doping of Poly(p-Phenylene Vinylene) With Air-Stable Dopants
Applied Physics Letters
Astronomy
Physics
Highly Hydrophobic Thermally Stable Liquid Crystalline Cellulosic Nanomaterials
Liquid Crystal Molecule as “Binding Agent” Enables Superior Stable Perovskite Solar Cells With High Fill Factor
Solar RRL
Doping of Polyyne With an Organometallic Fragment Leads to Highly Conductive Metallapolyyne Molecular Wire