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Plasma etching promoting the saturable absorption of BiOI

dc.contributor.authorChen, Saiyien
dc.contributor.authorBoukhvalov, Danil W.en
dc.contributor.authorLi, Huien
dc.contributor.authorHe, Miaoen
dc.contributor.authorGao, Xiangyunen
dc.contributor.authorHumphrey, Mark G.en
dc.contributor.authorZhang, Chien
dc.contributor.authorHuang, Zhipengen
dc.date.accessioned2025-12-18T08:40:44Z
dc.date.available2025-12-18T08:40:44Z
dc.date.issued2024-07-17en
dc.description.abstractMaterials exhibiting exceptional saturable absorption performance and etching compatibility are significant in the context of advanced optical devices. Our study demonstrates that plasma etching can effectively promote the saturable absorption of BiOI nanosheets because of defect formation. Remarkably, the BiOI nanosheet subjected to the optimized H2/Ar-plasma treatment manifests a substantial nonlinear absorption coefficient (beta eff) of (-5.5 +/- 0.7) x 103 cm GW-1 under laser excitation at 800 nm, while the pristine BiOI sample exhibits no discernible nonlinear optical response. The beta eff of plasma-treated BiOI samples is (-4.2 +/- 0.9) x 103 cm GW-1 at 515 nm, surpassing that of the untreated counterpart by more than fourfold. A comprehensive structural and spectroscopic analysis indicates that oxygen vacancies serve to increase the density of in-gap states, thereby narrowing the bandgap of the BiOI. This reduced bandgap effectively facilitates the Pauli-blocking effect and, in turn, augments the saturable absorption properties of the samples. In contrast to oxygen vacancies, iodine vacancies make a negligible contribution to the performance enhancement of BiOI. Our result would provide a promising way to improve the nonlinear optical response of materials.en
dc.description.sponsorshipZ. Huang acknowledges the support from the National Natural Science Foundation of China (62275197 and 51772214) , the Natural Science Foundation of Shanghai (23ZR1465700) , the Fundamental Research Funds for the Central University, and the National Youth Talent Support Program of China (W03070073) . M. G. Humphrey thanks the Australian Research Council (DP170100411) . C. Zhang acknowledges support from the National Natural Science Foundation of China (51432006) , the Ministry of Education of China (IRT14R23) , the 111 Project (B13025) , and the Innovation Program of Shanghai Municipal Education Commission. D. W. Boukhvalov acknowledges research funding from Jiangsu Innovative and Entrepreneurial Talents Project and the Ministry of Science and Education of the Russian Federation (Project FEUZ-2023-0013) .en
dc.description.statusPeer-revieweden
dc.format.extent9en
dc.identifier.otherWOS:001259172400001en
dc.identifier.otherORCID:/0000-0002-4433-6783/work/189445998en
dc.identifier.scopus85196255194en
dc.identifier.urihttps://hdl.handle.net/1885/733796644
dc.language.isoenen
dc.provenancehttps://openpolicyfinder.jisc.ac.uk/id/publication/35835/......"The Accepted Version can be archived in an Institutional Repository. 24 months embargo. CC BY-NC-ND." from SHERPA/RoMEO site (as at 01/09/2025).en
dc.rights© 2024 The Author(s)en
dc.sourceMaterials Today Chemistryen
dc.subjectBandgapen
dc.subjectBiOIen
dc.subjectNonlinear opticsen
dc.subjectOxygen vacancyen
dc.subjectSaturable absorptionen
dc.titlePlasma etching promoting the saturable absorption of BiOIen
dc.typeJournal articleen
dspace.entity.typePublicationen
local.bibliographicCitation.lastpage9en
local.bibliographicCitation.startpage1en
local.contributor.affiliationChen, Saiyi; Tongji Universityen
local.contributor.affiliationBoukhvalov, Danil W.; Nanjing Forestry Universityen
local.contributor.affiliationLi, Hui; Tongji Universityen
local.contributor.affiliationHe, Miao; Tongji Universityen
local.contributor.affiliationGao, Xiangyun; Nanjing Forestry Universityen
local.contributor.affiliationHumphrey, Mark G.; Chemistry Research, Research School of Chemistry, ANU College of Science and Medicine, The Australian National Universityen
local.contributor.affiliationZhang, Chi; China-Australia Joint Research Center for Functional Molecular Materialsen
local.contributor.affiliationHuang, Zhipeng; Tongji Universityen
local.identifier.citationvolume39en
local.identifier.doi10.1016/j.mtchem.2024.102148en
local.identifier.pure70d6cf07-d22a-4acd-924c-02203f05316ben
local.identifier.urlhttps://www.scopus.com/pages/publications/85196255194en
local.type.statusPublisheden

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