Interfacial engineering enables polyaniline-decorated bismuth sulfide nanorods towards ultrafast metal–semiconductor-metal UV-Vis broad spectra photodetector
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s42114-024-00878-7.pdf
Reference87 articles.
1. Zhu J, Yang K, Zhu J, Ma G, Zhu X, Zhou S et al (2003) The microstructure studies of bismuth sulfide nanorods prepared by sonochemical method. Opt Mater 23:89–92
2. Ding T, Dai J, Xu J, Wang J, Tian W, Huo K et al (2015) 3D hierarchical Bi2S3 nanostructures by polyvinylpyrrolidone (PVP) and chloride ion-assisted synthesis and their photodetecting properties. Nanoscale Res Lett 10:1–8
3. Huo N, Figueroba A, Yang Y, Christodoulou S, Stavrinadis A, Magén C et al (2019) Engineering vacancies in Bi2S3 yielding sub-bandgap photoresponse and highly sensitive short-wave infrared photodetectors. Adv Opt Mater 7:1900258
4. Salavati-Niasari M, Behfard Z, Amiri O (2014) Synthesis of bismuth sulfide nanostructures by using bismuth (III) monosalicylate precursor and fabrication of bismuth sulfide based p–n junction solar cells. Asia-Pac J Chem Eng 9:16–23
5. Shahbazi M-A, Faghfouri L, Ferreira MP, Figueiredo P, Maleki H, Sefat F et al (2020) The versatile biomedical applications of bismuth-based nanoparticles and composites: therapeutic, diagnostic, biosensing, and regenerative properties. Chem Soc Rev 49:1253–1321
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