2021
DOI: 10.1039/d1ma00042j
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Nontoxic photoluminescent tin oxide nanoparticles for cell imaging: deep eutectic solvent mediated synthesis, tuning and mechanism

Abstract: Non-toxic and photoluminescent (PL) tin oxide nanoparticle synthesis in Deep Eutectic Solvent (DES) is being reported herein. Both radiation (electron beam and γ radiation) as well as solvothermal methods were...

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Cited by 9 publications
(10 citation statements)
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“…The MFC‐8SnO 2 thin film also exhibited peaks at 572.86 and 852.54 cm −1 , which could be assigned to the SnO and OSnO bending as well as SnO stretching 27 . The peaks appeared at 547.78, 559.36, 852.54, and 931.62 cm −1 for the MFC‐12SnO 2 thin film (inset of Figure 2D) due to SnO 2 hybridization on the thin cellulose film 28 …”
Section: Resultsmentioning
confidence: 97%
“…The MFC‐8SnO 2 thin film also exhibited peaks at 572.86 and 852.54 cm −1 , which could be assigned to the SnO and OSnO bending as well as SnO stretching 27 . The peaks appeared at 547.78, 559.36, 852.54, and 931.62 cm −1 for the MFC‐12SnO 2 thin film (inset of Figure 2D) due to SnO 2 hybridization on the thin cellulose film 28 …”
Section: Resultsmentioning
confidence: 97%
“…As a proof of concept, we have successfully synthesized FeSn 2 alloy NPs using previously reported methods. 25 FeSn 2 alloy NP synthesis was carried out via a one-step hydrothermal method, and a detailed schematic representation of the fabrication of FeSn 2 alloy NPs is shown in Fig. 1(A).…”
Section: Resultsmentioning
confidence: 99%
“…23,24 Some studies have proved that SnO 2 -based NPs are less toxic and biocompatible. 25,26 However, the utilization of Sn-based NPs in biomedical applications is rarely explored. By considering the toxicity issues of Fe-based NPs in MRI applications, coupling a synergistic effect of metal-based CAs and biocompatible Sn carriers as alloy NPs is believed to be a good and potential alternative for safe MR imaging applications.…”
Section: Introductionmentioning
confidence: 99%
“…The peaks appeared at 547.78 cm -1 , 559.36 cm -1 ,852.54 cm -1 , and 931.62 cm -1 for the MFC-12SnO2 thin film (inset of Fig. 2(d)) due to SnO2 hybridization on the cellulose thin film 28 .…”
Section: -Morphology and Chemical Propertis Of Mfc Based Supercapacitorsmentioning
confidence: 98%