2022
DOI: 10.1016/j.matlet.2021.131645
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Enhanced green mediated synthesis of optimized Ag-Cu bimetallic nanoparticles using Leucas aspera and its application in Anti-cancer activity against alveolar cancer

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Cited by 10 publications
(3 citation statements)
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“…Confirmation of the crystalline nature of the TiO 2 NPs was achieved through XRD analysis, which involved measuring the 2θ angle from 10°to 80°. [48] The spectra exhibited the formation of anatase TiO 2 , as shown (Figure 4) by the presence of diffraction peaks (2θ) at angles 25.25°, 37.86°, 48.09°, 53.90°, 101) is associated with the anatase phase structure of TiO 2 NPs, as referenced by the JCPDS card number 01-015-0875 which is similar to the earlier findings. [42] Scherrer's formula was used to determine the average size of nanoparticles in terms of crystalline structure.…”
Section: Ftirsupporting
confidence: 86%
See 1 more Smart Citation
“…Confirmation of the crystalline nature of the TiO 2 NPs was achieved through XRD analysis, which involved measuring the 2θ angle from 10°to 80°. [48] The spectra exhibited the formation of anatase TiO 2 , as shown (Figure 4) by the presence of diffraction peaks (2θ) at angles 25.25°, 37.86°, 48.09°, 53.90°, 101) is associated with the anatase phase structure of TiO 2 NPs, as referenced by the JCPDS card number 01-015-0875 which is similar to the earlier findings. [42] Scherrer's formula was used to determine the average size of nanoparticles in terms of crystalline structure.…”
Section: Ftirsupporting
confidence: 86%
“…X‐ray diffraction (XRD) examination was conducted in order to ascertain the crystal phase and crystallite size of TiO 2 NPs. Confirmation of the crystalline nature of the TiO 2 NPs was achieved through XRD analysis, which involved measuring the 2θ angle from 10° to 80° [48] . The spectra exhibited the formation of anatase TiO 2 , as shown (Figure 4) by the presence of diffraction peaks (2θ) at angles 25.25°, 37.86°, 48.09°, 53.90°, 54.95°, 62.96°, 68.81°, 70.26° and 75.16°.…”
Section: Resultsmentioning
confidence: 99%
“…The highly magnetic properties of Au-Fe and Ni-Co bimetallic nanoparticles makes them suitable to use as contrast agent for CT and MRI diagnosis/prognosis imaging [224] and theranostic agent for tumors [225]. Similarly, Cu-Fe have been used for enhanced chemodynamic therapy [226], Pd-Pt, Au-Co, Au-Co, Ag-Cu, Au-Pt have been used for cancer therapeutics and anticancer activity [21,[227][228][229][230] and Au-Bi have been used for the inhibition of tumor cells [231]. In preventive medicine, the use of bimetallic nanoparticles is quite extensive and many of them are used as antimicrobial agents, antioxidants, antidiabetic, anti-Alzheimer, anti-inflammatory and drug delivery.…”
Section: Biological Applicationsmentioning
confidence: 99%