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Does Sb2Se3 admit nonstoichiometric conditions? How modifying the overall se content affects the structural, optical, and optoelectronic properties of Sb2Se3 thin films

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10.1021/acsami.1c20764
 
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hdl:2117/365192

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Caño Prades, IvanMés informacióMés informació
Vidal Fuentes, Pedro
Calvo Barrio, Lorenzo
Alcobé Olle, Xavier
Giraldo, Sergio
Sánchez González, YudaniaMés informació
Jehl Li-Kao, Zacharie
Placidi, Marcel JoseMés informacióMés informació
Puigdollers i González, JoaquimMés informacióMés informacióMés informació
Izquierdo Roca, Víctor
Saucedo Silva, Edgardo AdemarMés informacióMés informacióMés informació
Asensi López, José Miguel
Document typeArticle
Defense date2022-03-09
Rights accessOpen Access
Attribution 4.0 International
Except where otherwise noted, content on this work is licensed under a Creative Commons license : Attribution 4.0 International
Abstract
Sb2Se3 is a quasi-one-dimensional (1D) semiconductor, which has shown great promise in photovoltaics. However, its performance is currently limited by a high Voc deficit. Therefore, it is necessary to explore new strategies to minimize the formation of intrinsic defects and thus unlock the absorber’s whole potential. It has been reported that tuning the Se/Sb relative content could enable a selective control of the defects. Furthermore, recent experimental evidence has shown that moderate Se excess enhances the photovoltaic performance; however, it is not yet clear whether this excess has been incorporated into the structure. In this work, a series of Sb2Se3 thin films have been prepared imposing different nominal compositions (from Sb-rich to Se-rich) and then have been thoroughly characterized using compositional, structural, and optical analysis techniques. Hence, it is shown that Sb2Se3 does not allow an extended range of nonstoichiometric conditions. Instead, any Sb or Se excesses are compensated in the form of secondary phases. Also, a correlation has been found between operating under Se-rich conditions and an improvement in the crystalline orientation, which is likely related to the formation of a MoSe2 phase in the back interface. Finally, this study shows new utilities of Raman, X-ray diffraction, and photothermal deflection spectroscopy combination techniques to examine the structural properties of Sb2Se3, especially how well-oriented the material is.
CitationIvan Caño Prades [et al.]. Does Sb2Se3 admit nonstoichiometric conditions? How modifying the overall se content affects the structural, optical, and optoelectronic properties of Sb2Se3 thin films. "ACS applied materials and interfaces", 9 Març 2022, vol. 14, núm. 9, p. 11222-11234. 
URIhttp://hdl.handle.net/2117/365192
DOI10.1021/acsami.1c20764
ISSN1944-8244
Publisher versionhttps://pubs.acs.org/doi/abs/10.1021/acsami.1c20764
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  • MNT - Grup de Recerca en Micro i Nanotecnologies - Articles de revista [346]
  • IREC - Catalonia Institute for Energy Research - Articles de revista [91]
  • Departament d'Enginyeria Electrònica - Articles de revista [1.603]
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