Síntesis, análisis térmico y caracterización estructural del compuesto ternario Ag2SnTe3. / Synthesis, thermal analysis and structural characterization of the ternary compound Ag2SnTe3.

  • Gerzon-E Delgado Universidad de Los Andes
  • Maria Pirela Universidad de Los Andes
  • Ana Velásquez Universidad de Los Andes
  • Manuel Villarreal Universidad de Los Andes
  • Braulio Fernández Universidad de Los Andes
  • Pedro Grima-Gallardo Universidad de Los Andes
Palabras clave: Calcogenuros, Síntesis química, Análisis térmico, Difracción de rayos-X en muestras policristalinas, Estructura cristalina, Chalcogenides, Chemical synthesis, Thermal analysis, X-ray powder diffraction, Crystal structure.

Resumen

Resumen

El compuesto ternario Ag2 SnTe3 ha sido sintetizado e investigado mediante difracción de rayos-X en muestras policristalinas y su estructura cristalina ha sido refinada utilizando el método Rietveld. El análisis térmico diferencial indica que su punto de fusión es 343 °C. El patrón de difracción se compone de 86,5 % de la fase principal Ag2 SnTe3 y 13,5 % de una fase secundaria identificada como el binario SnTe. El compuesto Ag2 SnTe3 cristaliza en el grupo espacial monoclínico Cc (Nº 9), Z = 4, con parámetros de celda unidad a = 7,4420(1) Å, b = 12,8377(1) Å, c = 7,4025(1) Å, β = 109,54(1) °, y V =666,5(2) Å3 . El refinamiento de 36 parámetros instrumentales y estructurales convergió a las figuras de mérito Rp = 8,1 %, Rwp = 9,6 %, Rexp = 7,1 %, S = 1,4, para 5501 intensidades y 290 refecciones independientes. La estructura del ternario Ag2 SnTe3 puede ser descrita como un compuesto adamantano derivado de la estructura esfalerita

Abstract

The ternary compound Ag2 SnTe3 has been synthesized and investigated by means of X-ray powder diffraction and its structure has been refined by the Rietveld method. The thermal differential analysis indicates a melting point of 343 ºC for this compound. The powder pattern was composed by 86.5% of the principal phase Ag2 SnTe3 and 13.5% of a secondary phase identified as the binary SnTe. The compound Ag2 SnTe3 crystallizes in the monoclinic space group Cc (Nº 9), Z = 4, with unit cell parameters a = 7.4420(1) Å, b = 12.8377(1) Å, c = 7.4025(1) Å, β = 109.54(1) °, and V =666.5(2) Å3 . The refinement of 36 instrumental and structural parameters converged to Rp = 8.1 %, Rwp = 9.6 %, Rexp = 7.1 %, S = 1.4, for 5501 step intensities and 290 independent reflections. The structure of Ag2 SnTe3 can be described as an adamantane compound derivative of the sphalerite structure

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Citas

Berger, L.I., Prochukhan, V.: “Ternary Diamond-Like

Semiconductors”, Consultant Bureau, New York,

Coughlan C., Ibáñez M., Dobrozhan O., Singh A., Cabot

A., Ryan K.M.: “Compound Copper Chalcogenide

Nanocrystals”, Chemical Reviews, Vol. 117, No. 9

(2017) 5865-6109.

Parthé E.: Intermetallic Compounds, Principles and

Applications. Vol. 1, In: J.H. Westbrook, R.L. Fleischer

(eds), John Wiley & Sons, Chichester, UK (1995).

Chalbaud L.M., Díaz de Delgado G., Delgado J.M.,

Mora A.E., Sagredo V.: “Synthesis and single-crystal structural study of Cu2 GeS3”, Materials Research

Bulletin, Vol. 32, No. 10 (1997) 1371-1376.

Parthé E., Garín J.: “Zinkblende-und

wurtzitüberstrukturen bei ternären chalkogeniden

der zusammensetzung 12463”, Monatshefte fur

Chemie, Vol. 102, No. 5 (1971) 1197-1208.

Delgado G.E., Mora A.J., Pirela M., Villarreal M.A.,

Velásquez A., Fernández B.J.: “Structural refinement

of the ternary chalcogenide compound Cu2

GeTe3

by

X-ray powder diffraction”. Phys. Stat. Sol. (a), Vol.

, No. 12 (2004) 2900-2904.

Onoda M., Chen X., Sato, A., Wada, H.: “Crystal

structure and twinning of monoclinic Cu2 SnS3”,

Materials Research Bulletin, Vol. 35, No. 9 (2000)

-1570.

Delgado G.E., Mora A.J., Marcano G., Rincón C.:

“Crystal structure refinement of the semiconducting

compound Cu2 SnSe3 from X-ray powder diffraction data”. Materials Research Bulletin, Vol. 38, No. 15

(2003) 1949-1955.

Delgado G.E., Mora A.J., Marcano G., Rincón C.:

“Crystal structure refinement of the ternary compound Cu2 SnTe3

by X-ray powder diffraction”. Crystal Research and Technology, Vol. 43, No. 4 (2008) 433-437.

Rincón C., Marcano G., Marín G., Mora A.J., Delgado

G.E., Herrera-Pérez J.L., Mendoza-Alvarez J.G.,

Rodríguez P.: “Raman scattering and X-ray diffraction

study in Cu2 GeSe3”. Solid State Communications, Vol.

, No. 1-2 (2008) 65-68.

Lu X., Morelli D.T.: “Thermoelectric properties of Mn-doped Cu2 SnSe3”, Journal of Electronic Materials,

Vol. 41, No. 6 (2012) 1554-1558.

Raju C., Falmbigl M., Rogl P., Heinrich P., Royanian

E., Bauer E., Mallik R.C.: “Thermoelectric properties of Zn doped Cu2 SnSe3”, Materials Chemistry and Physics, Vol. 147, No. 3 (2014) 1022-1028.

Choi S.G., Kang J., Li J., Haneef H., Podraza N.J., Beall

C., Wei S.-H., Christensen S.T., Repins I.L.: “Optical function spectra and bandgap energy of Cu2 SnSe3”, Applied Physics Letters, Vol. 106 (2015) 043902 (5pp).

Wubet W., Kuo D.-H.: “Effects of copper excess and copper deficiency on the structural and electrical properties of bulk CuxSnSe3 with x=1.6–2.2”, Journal of Solid State Chemistry, Vol. 226, No. 3 (2015) 120-125.

Rincón C., Marcano G., Casanova R., Delgado G.E.,

Marín G., Nieves L., Sanchez-Perez G.: “Optical absorption, Raman spectra and electrical properties of Mn-doped Cu2 SnSe3 semiconductor compound”.

Physica Status Solidi B, Vol. 253, No. 4 (2016) 697-

Piskach L.V., Parasyuk O.V.: “The Ag2 GeS3-CdSsystem”, Polish Journal of Chemistry, Vol. 72, No. 6 (1998) 1112-1115.

Dávila R., Fernández B.J.: “Electrical and optical

properties of Ag2 SnSe3 and Ag2 SnTe3”, Institute of

Physics Conference Series, Vol. 152, No. 1 (1998)

-533.

Velásquez A., Belandria E., Fernández B.J., Avila

R., Delgado G.E., Acosta G.D.: “Synthesis and characterization of the ternary compound Ag2 GeSe3”, Physica Status Solidi (b), Vol. 220, No. 1 (2000) 683-686.

Belandria E., Avila R., Fernandez B.J.: “Synthesis and characterization of the ternary compound Ag2 SnS3”, Japanese Journal of Applied Physics, Vol. 39, Sup. 39-1 (2000) 132-133.

Fedorchuk A.O., Zhbankov O.Y., Lakshminarayana G., Kityk I.V., Tokaichuk Y., Myronchuk G.L., Davydyuk G.Y., Yakymchuk O.V., Parasyuk O.V.: “Synthesis and spectral features of Ag2 SnS3 crystals”, Materials

Chemistry and Physics, Vol. 135, No. 2-3 (2012) 249-253.

International Centre for Diffraction Data (ICDD), Powder Diffraction File (Set 1-65). Newtown Square, PA, USA, 2013.

Boultif A., Louër D.: “Powder pattern indexing

with the dichotomy method”. Journal of Applied

Crystallography, Vol. 37, No. 5 (2004) 724-731.

Rietveld H.M.: “A profile refinement method for

nuclear and magnetic structures”, Journal of Applied

Crystallography, Vol. 2, No. 2 (1969) 65-71.

Rodriguez-Carvajal J.: “Recent advances in magnetic

structure determination by neutron powder

diffraction”, Physica B: Condensed Matter, Vol. 192,

No. 1-2 (1993) 55-69.

Rogacheva E.I., Gorne G.V., Laptev S.A., Arinkin

A.V., Vesiene T.B.: “Concentration dependences of

properties in the region of homogeneity of SnTe”,

Inorganic Materials, Vol. 22, No. 1 (1986) 34-37

Cagliotti G., Paoletti A., Ricci F.P.: “Choice of

collimators for a crystal spectrometer for neutron

diffraction”, Nuclear Instruments, Vol. 3, No. 4

(1958) 223-228.

Thompson P., Cox D.E., Hastings J.B.: “Rietveld

refinement of Debye-Scherrer synchrotron X-ray

data from Al2O3”. Journal of Applied Crystallography,

Vol. 20, No. 2 (1987) 79-83.

Hill R.J., Howard J.C.: “Quantitative phase analysis

from neutron powder diffraction data using the

Rietveld method”, Journal of Applied Crystallography,

Vol. 20, No. 6 (1987) 467-474.

Guittard M., Rivet J., Mazurier A., Jaulmes S., Fourcroy

P.H.: “Systeme Ag2 Te-Ga2 Te3. phases intermediaires.

determinations structurales. diagramme de phase Ag2 Te-Ga2 Te3 system intermediate phase”, Materials Research Bulletin, Vol. 23, No. 2 (1988) 217-225

Mora A.J., Delgado G.E., Pineda C., Tinoco T.:

“Synthesis and structural study of the AgIn5 Te8 compound by X-ray powder diffraction”, Physica Status Solidi (a), Vol. 201, No. 7 (2004) 1477-1483.

Delgado G.E., Mora A.J., Contreras J.E., Betancourt L.: “Synthesis and characterization of ternary compound, Mn2 SnTe4”. Bulletin of Materials Science, Vol. 33, No. 3 (2010) 247-249.

Delgado G.E., Quintero E., Tovar R., Grima-Gallardo

P., Quintero M.: “Synthesis and crystal structure of

the quaternary compound AgFe2 GaTe4 ”, Journal of

Alloys and Compounds, Vol. 613, No. 1 (2014) 143-

Delgado G.E., Mora A.J., Pineda C., Ávila R.,

Paredes S.: “X-ray powder diffraction data and

Rietveld refinement of the ternary semiconductor

chalcogenides AgInSe2 and AgInTe2”. Revista

Latinoamericana de Metalurgia y Materiales, Vol. 35,

No. (1) (2015) 110-117.

Publicado
2019-06-11
Cómo citar
Delgado, G.-E., Pirela, M., Velásquez, A., Villarreal, M., Fernández, B. y Grima-Gallardo, P. (2019) «Síntesis, análisis térmico y caracterización estructural del compuesto ternario Ag2SnTe3. / Synthesis, thermal analysis and structural characterization of the ternary compound Ag2SnTe3.», Revista Técnica de la Facultad de Ingeniería. Universidad del Zulia, 41(3), pp. 140-146. Disponible en: https://mail.produccioncientificaluz.org/index.php/tecnica/article/view/24190 (Accedido: 24noviembre2024).
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Artículos de Investigación

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