Molecular Electrical Doping of Organic Semiconductors: Fundamental Mechanisms and Emerging Dopant Design Rules.
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Morphology controls the thermoelectric power factor of a doped semiconducting polymerSurface Charge Transfer Doping of Low-Dimensional Nanostructures toward High-Performance Nanodevices.Radical induced intermolecular linkage and energy level modifications of a porphyrin monolayer.A Solution-Doped Polymer Semiconductor:Insulator Blend for Thermoelectrics.Enhanced Electrical Conductivity of Molecularly p-Doped Poly(3-hexylthiophene) through Understanding the Correlation with Solid-State Order.Solution-based electrical doping of semiconducting polymer films over a limited depth.Discrimination of alkyl and aromatic amine vapors using TTF-TCNQ based chemiresistive sensors.Controlling Molecular Doping in Organic Semiconductors.Organic Thin Film Transistors Incorporating Solution Processable Thieno[3,2-b]thiophene Thienoacenes.Band-gap engineering of halogenated silicon nanowires through molecular doping.Understanding the Crystal Packing and Organic Thin-Film Transistor Performance in Isomeric Guest-Host Systems.Large Modulation of Charge Carrier Mobility in Doped Nanoporous Organic Transistors.Improved Electron Transport with Reduced Contact Resistance in N-Doped Polymer Field-Effect Transistors with a Dimeric Dopant.Electric-Field-Controlled Dopant Distribution in Organic Semiconductors.Hexacyano-[3]-radialene anion-radical salts: a promising family of highly soluble p-dopants.Enhancing Molecular n-Type Doping of Donor-Acceptor Copolymers by Tailoring Side Chains.Polar Side Chains Enhance Processability, Electrical Conductivity, and Thermal Stability of a Molecularly p-Doped Polythiophene.An improvement of performance in n-channel organic field effect transistors with N-phenyl[60]fulleropyrrolidines by molecular doping.Controlled electrical doping of organic semiconductors: a combined intra- and intermolecular perspective from first principles.Elementary steps in electrical doping of organic semiconductors.Enhanced n-Doping Efficiency of a Naphthalenediimide-Based Copolymer through Polar Side Chains for Organic Thermoelectrics.Origin of poor doping efficiency in solution processed organic semiconductors.Influence of crystallinity on the thermoelectric power factor of P3HT vapour-doped with F4TCNQFacile Doping and Work-Function Modification of Few-Layer Graphene Using Molecular Oxidants and Reductants
P2860
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P2860
Molecular Electrical Doping of Organic Semiconductors: Fundamental Mechanisms and Emerging Dopant Design Rules.
description
2016 nî lūn-bûn
@nan
2016年の論文
@ja
2016年論文
@yue
2016年論文
@zh-hant
2016年論文
@zh-hk
2016年論文
@zh-mo
2016年論文
@zh-tw
2016年论文
@wuu
2016年论文
@zh
2016年论文
@zh-cn
name
Molecular Electrical Doping of ...... Emerging Dopant Design Rules.
@en
type
label
Molecular Electrical Doping of ...... Emerging Dopant Design Rules.
@en
prefLabel
Molecular Electrical Doping of ...... Emerging Dopant Design Rules.
@en
P2093
P1476
Molecular Electrical Doping of ...... Emerging Dopant Design Rules.
@en
P2093
Georg Heimel
Martin Oehzelt
Stefanie Winkler
P304
P356
10.1021/ACS.ACCOUNTS.5B00438
P407
P577
2016-02-08T00:00:00Z