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Abstrakty
Good-quality semiorganic single crystals of bis(glycine) strontium dichloride trihydrate (GSC) were grown by slow evaporation technique. The lattice parameters of the grown crystal were verified through single crystal X-ray diffraction. Besides, the crystallinity of the material was analyzed with powder X-ray diffraction. The fingerprint of functional groups of this material was analyzed by FT-IR technique. The UV transparency cutoff wavelength of GSC was found to be 240 nm and the crystal exhibited 80 % transmission in the entire visible region. All intermolecular and intramolecular interactions of the grown crystal were interpreted by Hirshfeld surface analysis, and the strength of the interactions was graphically illustrated by fingerprint graphs. The intramolecular charge transfers of the crystal were assessed through frontier molecular orbital analysis.
Wydawca
Czasopismo
Rocznik
Tom
Strony
545--552
Opis fizyczny
Bibliogr. 27 poz., rys., tab.
Twórcy
autor
- Materials Science Laboratory, Department of Physics, Periyar University, Salem, Tamil Nadu-636011, India
autor
- Department of Physics, ERK College of Arts and Science, Dharmapuri, Tamil Nadu-636905, India
- Materials Science Laboratory, Department of Physics, Periyar University, Salem, Tamil Nadu-636011, India
Bibliografia
- [1] WILLIAMS D.J., Nonlinear Optical effects in molecules and polymers, Wiley, New York, 1991.
- [2] CHEMLA D.S., ZYSS J., 1987 Nonlinear Optical Properties of Organic Molecules and Crystals,Academic Press, New York, 1987.
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- [4] GHAZARYAN V.V., FLECK M., PETROSYAN A.M., J. Mol. Struct., 977 (2010), 117.
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- [6] BALAKRISHNAN T., RAMAMURTHI K., Mater. Lett., 62 (2008), 65.
- [7] MARUDHU G., KRISHNAN S., THILAK T., SAMUEL P., VINITHA G., PASUPATHI G., J. Nonlinear Opt. Phys. Mater., 22 (2013), 1350043.
- [8] NATARAJAN S., MUTHUKRISHNAN C., BAHADUR S.A., RAJARAM R.K., RAJAN S.S., Z. Krist. – New Cryst. Struct., 198 (1992) 265.
- [9] LENIN M., BHAVANNARAYANA G., RAMASAMY P., Opt. Commun., 282 (2009) 1202.
- [10] RISCOB B., SHAKIR M., GANESH V., VIJAYAN N., WAHAB M.A., BHAGAVANNARAYANA G., J. Therm. Anal. Calorim., 110 (2012) 1225.
- [11] NARAYANA MOOLYA B., DARMAPRAKASH S.M., J. Cryst. Growth, 293 (2006), 86.
- [12] UMA B., RAJNIKANT, MURUGESAN K.S., KRISHNAN S., BOAZ B.M., Prog. Nat. Sci. Mater. Int., 24 (2014), 378.
- [13] FRISCH M.J., TRUCKS G.W., SCHLEGEL H.B., SCUSERIA G.E., ROBB M.A., CHEESEMAN J.R., SCALMANI G., BARONE V., MENNUCCI B., PETERSSON G.A., NAKATSUJI H., CARICATO M., LI X., HRATCHIAN H.P., IZMAYLOV A.F., BLOINO J., ZHENG G., SONNENBERG J.L., HADA M., EHARA M., TOYOTA K., FUKUDA R., HASEGAWA J., ISHIDA M., NAKAJIMA T., HONDA Y., KITAO O., NAKAI H., VREVEN T., MONTGOMERY-JR J.A., PERALTA J.E., OGLIARO F., BEARPARK M., HEYD J.J., BROTHERS E., KUDIN KN., STAROVEROV V.N,. KEITH T., KOBAYASHI R., NORMAND J., RAGHAVACHARI K., RENDELL A., BURANT J.C., IYENGAR S.S., TOMASI J., COSSI M., REGA N., MILLAM J.M., KLENE M., KNOX JE., CROSS J.B., BAKKEN V., ADAMO C., JARAMILLO J., GOMPERTS R., STRATMANN R.E., YAZYEV O., AUSTIN A.J., CAMMI R., POMELLI C., OCHTERSKI J., W, MARTIN R.L., MOROKUMA K., ZAKRZEWSKI V.G., VOTH G.A., SALVADOR P., DANNENBERG J.J., DAPPRICH S., DANIELS A.D, FARKAS O., FORESMAN J.B., ORTIZ J.V., CIOSLOWSKI J. FOX D.J., Gaussian 09, Rev A.02, Gaussian, Inc., Wallingford CT, 2010.
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- [18] RAJASEKAR M., MUTHU K., ADITYA PRASAD A., MEENAKSHISUNDARAM S.P., J. Mol. Struct., 1085(2015), 147.
- [19] TOUNSI A., ELLEUCH S., HAMDI B., ZOUARI R., SALAH A.BEN., J. Mol. Struct., 1141 (2017), 512.
- [20] MUTHU K., MEENATCHI V., RAJASEKAR M., ADITYA PRASAD A., MEENA K., AGILANDESHWARI R., KANAGARAJAN V., MEENAKSHISUNDARAM S., J. Mol. Struct., 1091 (2015), 210.
- [21] TURNER M.J., MCKINNON J.J., WOLFF S.K., GRIMWOOD D.J., SPACKMAN P.R., JAYATILAKA D., SPACKMAN M.A., Crystal Explorer17, Univ. West. Aust., 2017.
- [22] SPACKMAN M.A., JAYATILAKA D., CrystEngComm., 11 (2009), 19.
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- [24] HEREN Z., PAŞAOĞLU H., KAŞTAŞ G., KESER C., YEŞILEL O.Z., BÜYÜKGÜNGÖR O., Z. Anorg. Allg. Chemie, 632 (2006), 1578.
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Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-da1b1c05-0e2e-47ec-b92a-dde3ff40ccd6