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Part 1: Document Description
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Citation |
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Title: |
Data for: "High Conductivities of Disordered P3HT Films by an Electrochemical Doping Strategy" |
Identification Number: |
doi:10.18419/darus-1409 |
Distributor: |
DaRUS |
Date of Distribution: |
2021-05-05 |
Version: |
1 |
Bibliographic Citation: |
Neußer, David, 2021, "Data for: "High Conductivities of Disordered P3HT Films by an Electrochemical Doping Strategy"", https://doi.org/10.18419/darus-1409, DaRUS, V1, UNF:6:q/isvz1SmOf715MXo/el9Q== [fileUNF] |
Citation |
|
Title: |
Data for: "High Conductivities of Disordered P3HT Films by an Electrochemical Doping Strategy" |
Identification Number: |
doi:10.18419/darus-1409 |
Authoring Entity: |
Neußer, David (Universität Stuttgart) |
Grant Number: |
358283783 - SFB 1333 |
Grant Number: |
IQST Stuttgart |
Distributor: |
DaRUS |
Access Authority: |
Neußer, David |
Access Authority: |
Ludwigs, Sabine |
Depositor: |
Neußer, David |
Date of Deposit: |
2021-02-22 |
Holdings Information: |
https://doi.org/10.18419/darus-1409 |
Study Scope |
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Keywords: |
Chemistry |
Abstract: |
The related publication to this dataset presents an electrochemical doping strategy for obtaining high solid-state conductivities of P3HT films. Conductivities are measured via 4-line probe and charged species are identified by in-situ and solid-state UV-vis-NIR and EPR spectroscopy. |
Notes: |
EPR files are given as magnetic field vs intensity |
Methodology and Processing |
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Sources Statement |
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Data Access |
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Other Study Description Materials |
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Related Publications |
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Citation |
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Title: |
David Neusser, Claudia Malacrida, Michal Kern, Yannic M. Gross, Joris van Slageren, and Sabine Ludwigs. High Conductivities of Disordered P3HT Films by an Electrochemical Doping Strategy. Chemistry of Materials 2020 32 (14), 6003-6013. |
Identification Number: |
10.1021/acs.chemmater.0c01293 |
Bibliographic Citation: |
David Neusser, Claudia Malacrida, Michal Kern, Yannic M. Gross, Joris van Slageren, and Sabine Ludwigs. High Conductivities of Disordered P3HT Films by an Electrochemical Doping Strategy. Chemistry of Materials 2020 32 (14), 6003-6013. |
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