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Chemically Engineered Titanium Oxide Interconnecting Layer for Multijunction Polymer Solar Cells.


ABSTRACT: We report chemically tunable n-type titanium oxides using ethanolamine as a nitrogen dopant source. As the amount of ethanolamine added to the titanium oxide precursor during synthesis increases, the Fermi level of the resulting titanium oxides (ethanolamine-incorporated titanium oxides) significantly changes from -4.9 eV to -4.3 eV, and their free charge carrier densities are enhanced by two orders of magnitudes, reaching up to 5 × 1018 cm-3. Unexpectedly, a basic ethanolamine reinforces not only the n-type properties of titanium oxides, but also their basicity, which facilitates acid-base ionic junctions in contact with acidic materials. The enhanced charge carrier density and basicity of the chemically tuned titanium oxides enable multi-junction solar cells to have interconnecting junctions consisting of basic n-type titanium oxides and acidic p-type PEDOT:PSS to gain high open-circuit voltages of 1.44 V and 2.25 V from tandem and triple architectures, respectively.

SUBMITTER: Kim G 

PROVIDER: S-EPMC10935189 | biostudies-literature | 2024 Feb

REPOSITORIES: biostudies-literature

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Chemically Engineered Titanium Oxide Interconnecting Layer for Multijunction Polymer Solar Cells.

Kim Geunjin G   Back Hyungcheol H   Kong Jaemin J   Naseer Laiba L   Jeong Jiwon J   Son Jaehyoung J   Lee Jongjin J   Kang Sung-Oong SO   Lee Kwanghee K  

Polymers 20240221 5


We report chemically tunable n-type titanium oxides using ethanolamine as a nitrogen dopant source. As the amount of ethanolamine added to the titanium oxide precursor during synthesis increases, the Fermi level of the resulting titanium oxides (ethanolamine-incorporated titanium oxides) significantly changes from -4.9 eV to -4.3 eV, and their free charge carrier densities are enhanced by two orders of magnitudes, reaching up to 5 × 10<sup>18</sup> cm<sup>-3</sup>. Unexpectedly, a basic ethanola  ...[more]

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