Morphological evolution of individual microrods to self-assembled 3D hierarchical flower architectures of CuBiInSe for photo response applications
CuInSe 2 and CuInGaSe 2 are extremely promising materials for solar cell applications, wherein bandgap shrinkage is highly desirable for manufacturing transparent/semitransparent layers. In this work, this shrinkage was achieved by replacing In with Bi, and the change in current-voltage responses fo...
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Published in | Journal of materials chemistry. C, Materials for optical and electronic devices Vol. 12; no. 8; pp. 2879 - 2893 |
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Main Authors | , , , , , |
Format | Journal Article |
Published |
22.02.2024
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Online Access | Get full text |
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Summary: | CuInSe
2
and CuInGaSe
2
are extremely promising materials for solar cell applications, wherein bandgap shrinkage is highly desirable for manufacturing transparent/semitransparent layers. In this work, this shrinkage was achieved by replacing In with Bi, and the change in current-voltage responses for photodetector applications was further studied. CuBi
x
In
1−
x
Se
2
microrod (MR) flowers (
x
= 0, 0.2, 0.4, 0.6, and 0.8) were synthesized
via
microwave synthesis using different Bi/In concentrations. The variation in the composition of Bi/In caused alteration in structural, morphological, and optical behaviors. CuInSe
2
showed a polycrystalline nature, while Bi incorporation led to the appearance of a Bi
2
Se
3
phase. Raman peaks corresponding to different vibrational bonds shifted with change in Bi/In content, indicating that the composition variation induced structural transformation inside the matrix. Morphological analysis showed a transition from MRs to MR-based flowers with the introduction of bismuth. Optical absorption was enhanced with an increase in Bi content due to a change in the MR size, forming a flower-like architecture. This reduced the optical bandgap by increasing defects and disorders in the forbidden gap. At 532 nm excitation, broad photoluminescence band emission was observed for all samples. Each spectrum showed three deconvoluted peaks, which were attributed to a transition among localized states over the forbidden gap region. The MRs demonstrated good photo response towards white light. Their photocurrent reduced from the μA to the nA range with varying compositions. The observed optical and electrical properties of the MRs are most suitable for various optoelectronic device applications.
CuBi
x
In
1−
x
Se
2
3D hierarchical microrod-based flowers were prepared by microwave-mediated method. The morphology tuning for different Bi/In content shows optical and electrical properties variation with better white light photo response applications. |
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Bibliography: | https://doi.org/10.1039/d3tc03250g Electronic supplementary information (ESI) available. See DOI |
ISSN: | 2050-7526 2050-7534 |
DOI: | 10.1039/d3tc03250g |