PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
  • Sesja wygasła!
  • Sesja wygasła!
Tytuł artykułu

Rietveld refinement on XRD and TEM study of nanocrystalline PbZr0:5Ti 0:5O3 ceramics prepared with a soft chemistry route

Autorzy
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
PbZr0.5Ti0.5 O3 nanopowders (~27 nm) have been prepared by a controlled reconstructive thermal decomposition and crystallization from an amorphous polymeric precursor with polyvinyl alcohol (PVA) and sucrose at 400 to 700 °C in air. The Rietveld refinement of the XRD profiles which were recorded at room temperature for the PbZr0.5Ti0.5 O3 powder prepared by a thermal treatment at 700 °C for 2 h, confirmed the P4mm tetragonal crystal structure of the as prepared PbZr0.5Ti0.5 O3 nanopowders, with a = 0.4036 nm and c = 0.4147 nm. A hexagonal symmetry (R3c), with a = 0.5774 nm and c = 1.4212 nm, was also detected from Rietveld refinement analysis. Thus, tetragonal and hexagonal phases were found to coexist with the as prepared PbZr0.5Ti0.5 O3 nanopowders. The average particle size (D) of the PbZr0.5Ti0.5 O3 powders, estimated with the help of the specific surface area, measured by BET method, was 26.1 nm. Average D value, calculated by Δ2Θ1/2 in the XRD peaks with the Debye-Scherrer relation was ~24 nm. TEM study made it possible to measure the particle size of PbZr0.5Ti0.5 O3 powders with an average diameter of 27 nm.
Wydawca
Rocznik
Strony
18--24
Opis fizyczny
Bibliogr. 35 poz., rys., tab.
Twórcy
autor
  • Faculty of Science and Technology, The ICFAI University, Rajawala Road, Central Hope Town, Selaqui, Dehradun-248197, Uttarakhand, India
Bibliografia
  • [1] JAFFE B., COOK W.R., JAFFE H, Piezoelectric Ceramics, Academic Press, London, 1971, pp. 123 – 238.
  • [2] UCHINO K., Acta Mater., 46 (1998), 3745.
  • [3] FUNAKUBO H., ARATANI M., OIKAWA T., TOKITA K., SAITO K., J. Appl. Phys., 92 (2002), 6768.
  • [4] ROELOFS A., SCHNELLER T., SZOT K., WASER R., Nanotechnology, 14 (2003), 250.
  • [5] MANDAL T.K., RAM S., Mater. Lett., 57 (2003), 2432.
  • [6] MANDAL T.K., Appl. Phys. Lett., 89 (2006), 034103.
  • [7] SACHDEVA A., ARORA M., TANDON R.P., J. Nanosci. Nanotechno., 9 (2009), 6631.
  • [8] MORITA T., Materials, 3 (2010), 5236.
  • [9] CHAMOLA A., SINGH H., NAITHANI U.C., SHARMA S., PRABHAT U., DEVI PRATIKSHA., MALIK A., SRIVASTAVA A., SHARMA R.K., Adv. Mater. Lett. 2 (2011), 26.
  • [10] MISRI I., HAREESH P., YANG S Y., DEVOE D.L., J. Micromech. Microeng., 22 (2012), 085017.
  • [11] MANDAL T.K., Indian J. Phys., 86 (2012), 818.
  • [12] SRIVASTAVAN G., GOSWAMI A., UMARJI A.M., Ceram. Int., 39 (2013), 1977.
  • [13] RAGINI, MISHRA S.K., PANDEY D., Phys. Rev. B., 64 (2001), 054101.
  • [14] NOHEDA B., GONJALO J.A., CROSS L.E., GUO R., PARK S.E., COX D.E., SHIRANE G., Phys. Rev. B., 61 (2000), 8687.
  • [15] KLEE M., VEIMAN A.D., WASER R., BRAND W., HAL H.V., J. Appl. Phys., 72 (1992), 1566.
  • [16] GOLDBERG R.L., SMITH S.W., IEEE T. Ultrason. Ferr., 41 (1994), 761.
  • [17] KONG L.B., MA J., ZHANG R.F., ZHU W., TAN O.K., Mater. Lett., 55 (2002), 370.
  • [18] HAMMER M., HOFFMANN M.J., BARETZKY B.J., J. Eur. Ceram. Soc., 1 (1996), 161.
  • [19] SAHA S.K., AGARWAL D.C., Am. Ceram. Soc. Bull., 71 (1992), 1424.
  • [20] SOROWIAK Z., KUPRIYANOV M.F., CZEKAJ D.J., J. Eur. Ceram. Soc., 21 (2001), 1377.
  • [21] ZENG J., SONG S., WANG L., ZHANG M. Z., ZHENG L., LIN C., J. Am. Ceram. Soc., 82 (1999), 461.
  • [22] WU A., VILARINHO P.M., SALVADO I.M.M., BAPTISTA J.L., J. Am. Ceram. Soc., 83 (2000), 1379.
  • [23] MALIC B., KOSEC M., J. Sol-gel Sci. Techn., 2 (1994), 443.
  • [24] KLUG M.P., L.E. ALEXANDER, X-ray Diffraction Procedure for Polycrystalline and Amorphous Materials, Wiley, New York, 1974. p. 634.
  • [25] RAGINI, RANJAN R., MISHRA S.K., PANDEY D., J. Appl. Phys., 92 (2002), 3266.
  • [26] JCPDS X-ray powder diffraction file, 861710, Hexagonal PbZr0:75Ti0:25O3.
  • [27] MEGAW H.D., DARLINGTON C.N.W., Acta. Crystallogr. A, 31 (1975), 161.
  • [28] PARK H.B., PARK C.Y., HONG Y.S., KIM K., KIM S.J., J. Am. Ceram. Soc., 82 (1999), 94.
  • [29] SHAO Q., LI A., LING H., WU D., WANG Y., MING N., Mater. Lett., 50 (2001), 32.
  • [30] JCPDS X-ray powder diffraction file, 33-0784, Tetragonal PbZr0:52Ti0:48O3.
  • [31] NASAR R.S., CERQUEIRA M.C., LONGO E.L., LEITE E.R., VARELA J.A., ANDRES B.J., J. Mater. Sci., 34 (1999), 3659.
  • [32] LUCKS I., LAMPARTER P., MITTEMEIJER E.J., J. Appl. Cryst., 37 (2004), 300.
  • [33] MANDAL T.K., Mater. Lett., 61 (2007), 850.
  • [34] BEGG B.D., VANCE E.R., NOWOTNY J., J. Am. Ceram. Soc., 77 (1994), 3186.
  • [35] AYYUB P., Phys. Edun., 1 (1998) 309.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-119fee6d-3e6e-4641-82af-20e5e0dedf02
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.