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| Title: | Coexistence of ferromagnetism and enhanced photo-response in Fe-doped SnSe2single crystals |
| Authors: | Lakhara, Aarti Bhobe, P. A. |
| Issue Date: | 2025 |
| Publisher: | Royal Society of Chemistry |
| Citation: | Lakhara, A., & Bhobe, P. A. (2025). Coexistence of ferromagnetism and enhanced photo-response in Fe-doped SnSe2single crystals. Physical Chemistry Chemical Physics. https://doi.org/10.1039/d5cp03461b |
| Abstract: | In this work, we report the synthesis and comprehensive characterization of pristine and Fe-doped SnSe<inf>2</inf> single crystals, revealing how light Fe doping enhances photoconductivity and induces magnetism in this layered 2D material. Fe substitution leads to a reduction in its band-gap and activation energy, as noted from its electrical transport measurements. Its phonon characteristics and crystal symmetry remain unaltered, as confirmed from temperature-dependent Raman spectroscopy measurements. Magnetic measurements demonstrate that even low Fe concentrations induce a ferromagnetic interaction in otherwise diamagnetic pristine SnSe<inf>2</inf> and this interaction increases with increasing Fe-concentration. Photoconductivity measurements demonstrate a pronounced superlinear photocurrent response in both pristine and Fe-doped SnSe<inf>2</inf>-based photodetectors. A model based on three recombination centers is proposed to explain this superlinear behavior. Interestingly, 1% Fe-doped SnSe<inf>2</inf> exhibits the highest external quantum efficiency (∼1.4 × 104%) and detectivity (∼1012 Jones), along with a reduced response time. The coexistence of robust ferromagnetism and superior photodetector performance in Fe-doped SnSe<inf>2</inf> highlights its potential as a promising candidate for next-generation spintronic, optoelectronic, and energy-related applications. This journal is © the Owner Societies, 2026 |
| URI: | https://dx.doi.org/10.1039/d5cp03461b https://dspace.iiti.ac.in:8080/jspui/handle/123456789/17621 |
| ISSN: | 1463-9076 |
| Type of Material: | Journal Article |
| Appears in Collections: | Department of Physics |
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