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Fig. 3 Dimensiunea cristalitelor <strong>de</strong> magnetitat di vitroceramicile magnetice BSF1-BSF5<br />

Tabelul 2. Caracteristici structurale extrase din datele <strong>de</strong> difractie <strong>de</strong> raze X ale probelor<br />

vitroceramice BSF1-BSF5<br />

Parametru BSF-1 BSF-2 BSF-3 BSF-4 BSF-5<br />

dimensiune<br />

cristalit (nm)<br />

grad <strong>de</strong><br />

cristalinitate<br />

(%)<br />

76 56 32 68 24<br />

61 47 51 69 65<br />

IV.3.3. Spectrometrie <strong>de</strong> absorbtie in infrarosu<br />

Datele <strong>de</strong> spectroscopie <strong>de</strong> infrarosu cu transformata Fourier (FT-IR) prezinta<br />

caracteristici similare pentru toate probele (Fig. 4). Benzile <strong>de</strong> absorbtie <strong>de</strong> la λ -1 ∼ 450<br />

cm -1 si 578 cm -1 au fost atribuite vibratiilor legaturii Fe-O bonds [14, 15]. Banda <strong>de</strong> la λ -1<br />

∼ 790 cm -1 a fost alocata vibratilor <strong>de</strong> flexiune ale legaturii B-O-B a puntilor care contin<br />

un ion <strong>de</strong> bor trigonal si unul tetraedric in timp ce benzile <strong>de</strong> la 921 cm -1 si 1026 cm -1<br />

sunt produse <strong>de</strong> vibratiile <strong>de</strong> alungire-compresie ale legaturii B-O si ale unitatilor BO4<br />

[16]. Restul benzilor <strong>de</strong> absorbtie au fost alocate grupurilor SiO4 formatoare <strong>de</strong> retea.<br />

Este evi<strong>de</strong>nt ca schimbarile <strong>de</strong> compozitie nu au efecte semnificative asupra benzilor <strong>de</strong><br />

13

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