2021
DOI: 10.1007/s00339-021-04615-5
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Erbium (III)- and Terbium (III)-containing silicate-based bioactive glass powders: physical, structural and nuclear radiation shielding characteristics

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Cited by 30 publications
(3 citation statements)
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“…9,10,24 There are two optical phonon modes in NdFeO 3 corresponding to the relative motion of Fe−O atoms within the oxygen octahedron of 55.8 and 79.8 meV. 48 The 79.8 meV optical phonon mode is similar in energy to the previously reported phonon modes in the FeSe/LaFeO 3 interface. 24 Although the statistics of the EDC at the M point are not high enough for replica band fitting, the integrated EDC shows a peak−dip−hump structure at the M point, and the energy separation between the peak and hump is ∼80 meV, supporting the coupling between electrons and the FK phonons of NdFeO 3 9,24 (details in Figure S5).…”
supporting
confidence: 57%
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“…9,10,24 There are two optical phonon modes in NdFeO 3 corresponding to the relative motion of Fe−O atoms within the oxygen octahedron of 55.8 and 79.8 meV. 48 The 79.8 meV optical phonon mode is similar in energy to the previously reported phonon modes in the FeSe/LaFeO 3 interface. 24 Although the statistics of the EDC at the M point are not high enough for replica band fitting, the integrated EDC shows a peak−dip−hump structure at the M point, and the energy separation between the peak and hump is ∼80 meV, supporting the coupling between electrons and the FK phonons of NdFeO 3 9,24 (details in Figure S5).…”
supporting
confidence: 57%
“…The interaction between the electrons in FeSe and interfacial optical photons has been suggested to boost superconductivity in FeSe/STO and FeSe/LaFeO 3 . ,, There are two optical phonon modes in NdFeO 3 corresponding to the relative motion of Fe–O atoms within the oxygen octahedron of 55.8 and 79.8 meV . The 79.8 meV optical phonon mode is similar in energy to the previously reported phonon modes in the FeSe/LaFeO 3 interface .…”
mentioning
confidence: 99%
“…Today, due to their attractive properties, many glass compositions containing different transition metals have been investigated for their radiation shielding capacity via different experimental and theoretical procedures [4][5][6][7][8][9][10][11][12][13][14][15]. Phosphate glasses containing transition metal oxides with/without rare earth, such as Er 2 O 3, are characterized by high thermal expansion coefficient, high mechanical properties, low viscosity, and good optical properties [16][17][18][19].…”
Section: Introductionmentioning
confidence: 99%