Academic literature on the topic 'Crystal structure of tin(II)'

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Journal articles on the topic "Crystal structure of tin(II)"

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Khanderi, Jayaprakash, Bambar Davaasuren, Buthainah Ameen Alshankiti, and Alexander Rothenberger. "Tin(ii) ketoacidoximates: synthesis, X-ray structures and processing to tin(ii) oxide." Dalton Transactions 44, no. 46 (2015): 19820–28. http://dx.doi.org/10.1039/c5dt03103f.

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The synthesis and crystal structure of novel tin(ii) ketoacidoximates and their utility in forming SnO particles and thin films with a high level of oxidation control under ambient conditions are described.
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Hennings, Erik, Horst Schmidt, Martin Köhler, and Wolfgang Voigt. "Crystal structure of tin(II) perchlorate trihydrate." Acta Crystallographica Section E Structure Reports Online 70, no. 12 (2014): 474–76. http://dx.doi.org/10.1107/s1600536814024283.

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The title compound, [Sn(H2O)3](ClO4)2, was synthesized by the redox reaction of copper(II) perchlorate hexahydrate and metallic tin in perchloric acid. Both the trigonal–pyramidal [Sn(H2O)3]2+cations and tetrahedral perchlorate anions lie on crystallographic threefold axes. In the crystal, the cations are linked to the anions by O—H...O hydrogen bonds, generating (001) sheets.
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Batchelor, R. J., T. Birchall, and J. P. Johnson. "The crystal structure of Sn6O2(CF3CO2)8•CF3CO2H." Canadian Journal of Chemistry 65, no. 9 (1987): 2187–93. http://dx.doi.org/10.1139/v87-366.

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The X-ray crystal structure of Sn6O2(CF3CO2)8•CF3CO2H has been determined: R1 = 0.0519. The crystals were orthorhombic, space group Pna21, a = 18.327(4) Å, b = 12.209(3) Å, c = 19.218(3) Å, fw = 1762.29, and Z = 4. The structure consists of two sets of three tin(II) atoms, each set linked by a μ3-oxo bridge. The tin atoms are further linked by trifluoroacetate groups to form an extended structure in which the tin atoms can be described as having either SnX4E or SnX5E coordination.
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Archer, Steven J., Klaus R. Koch, and Luigi R. Nassimbeni. "Pentacoordinated tin(II); crystal structure of dichloro-[2,2??6?,2?-terpyridyl]-tin(II)." Journal of Crystallographic and Spectroscopic Research 16, no. 4 (1986): 449–58. http://dx.doi.org/10.1007/bf01161033.

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Chang, J. H., and J. Köhler. "Crystal structure of tin(II)dioxodecafluorostannate(IV), Sn4O2F10." Zeitschrift für Kristallographie - New Crystal Structures 214, no. 2 (1999): 147–48. http://dx.doi.org/10.1515/ncrs-1999-0204.

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Stafeeva, Varvara S., Alexander S. Mitiaev, Artem M. Abakumov, Alexander A. Tsirlin, Artem M. Makarevich, and Evgeny V. Antipov. "Crystal structure and chemical bonding in tin(II) acetate." Polyhedron 26, no. 18 (2007): 5365–69. http://dx.doi.org/10.1016/j.poly.2007.08.010.

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Hennings, Erik, Horst Schmidt, Martin Koehler, and Wolfgang Voigt. "ChemInform Abstract: Crystal Structure of Tin(II) Perchlorate Trihydrate." ChemInform 46, no. 18 (2015): no. http://dx.doi.org/10.1002/chin.201518003.

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Reuter, H. "Crystal structure of tin(II) acetate acetylacetonate, Sn(C5H7O2)(C2H3O2)." Zeitschrift für Kristallographie - New Crystal Structures 219, no. 1-4 (2004): 119–20. http://dx.doi.org/10.1524/ncrs.2004.219.14.119.

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Reuter, H. "Crystal structure of tin(II) acetate acetylacetonate, Sn(C5H7O2)(C2H3O2)." Zeitschrift für Kristallographie - New Crystal Structures 219, no. 2 (2004): 109–10. http://dx.doi.org/10.1524/ncrs.2004.219.2.109.

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Abrahams, Isaac, Stephen J. Clark, John D. Donaldson, Zahida I. Khan, and Jeffrey T. Southern. "Hydrolysis of tin(II) fluoride and crystal structure of Sn4OF6." Journal of the Chemical Society, Dalton Transactions, no. 17 (1994): 2581. http://dx.doi.org/10.1039/dt9940002581.

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Dissertations / Theses on the topic "Crystal structure of tin(II)"

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Christoforou, M. "Lone-pair effects in tin (II) materials." Thesis, City University London, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.233894.

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Fontaine, Christophe. "Hétéroépitaxie par jets moléculaires de semiconducteurs II-VI." Grenoble 1, 1986. http://www.theses.fr/1986GRE10062.

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Etude de l'heteroepitaxie de cdte, cd::(1-x)zn::(x)te et cd::(x)hg::(1-x)te sur cdznte, insb et gaas (001) et (111) et des differents parametres qui gouvernent la qualite cristalline. Il s'avere que la croissance (001) est meilleure que la croissance (111). L'interet d'une interface graduelle est demontre a fort desaccord de maille. A faible desaccord de mailles les contraintes dans les couches epitaxiques ont ete mesurees. Dans ces conditions experimentales, la relaxatioon des couches est gouvernee par un mecanisme de generation de dislocations et non par l'activation thermique des dislocatio
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Janin, Emmanuelle. "Adsorption and bonding on platinum : influence of the surface structure and chemical composition." Doctoral thesis, KTH, Physics, 2000. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-3079.

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<p>This thesis deals with the influence of the structure andchemical composition of platinum surfaces on the adsorption ofsome molecules. Three main lines can be distinguished : 1) thecharacterisation of clean/modified surfaces, 2) the adsorptionof some simple atoms and molecules on these surfaces andfinally 3) the adsorption of 2-butenal, a bi-functionalmolecule containing a C=C group conjugated with a C=O group.The main tools used in this work are scanning tunnellingmicroscopy, photoelectron spectroscopy and high-resolutionelectron energy loss spectroscopy, in combination with quantumchemica
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Horsefield, Rob. "The crystal structure of complex II and analysis of its quinone binding site." Thesis, Imperial College London, 2005. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.416597.

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Beck, Urs Heinrich Georg. "Synthesen und NMR-spektroskopische Untersuchungen von Ruthenium(II)phosphinkomplexen ; Crystal and molecular structure of /." [S.l : s.n.], 1987. http://www.ub.unibe.ch/content/bibliotheken_sammlungen/sondersammlungen/dissen_bestellformular/index_ger.html.

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Letcher, Robert J. (Robert James) Carleton University Dissertation Chemistry. "(1,3-bis(2'-pyridylimino)isoindolinato)Ni(II) complexes of phenylcyanamido ligands: crystal structure, solution and spectroscopic properties." Ottawa, 1991.

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Diller, Thomas Cabot. "Crystal structure of a deletion mutant of the type II[beta] regulatory subunit of cAMP-dependent protein kinase /." Diss., Connect to a 24 p. preview or request complete full text in PDF format. Access restricted to UC campuses, 2000. http://wwwlib.umi.com/cr/ucsd/fullcit?p9970670.

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Maurer, Joshua Ahab Grubbs Robert H. Dougherty Dennis A. "I. Structure-function analysis of the mechanosensitive channel of large conductance. : II. Design of novel magnetic materials using crystal engineering /." Diss., Pasadena, Calif. : California Institute of Technology, 2003. http://resolver.caltech.edu/CaltechETD:etd-10202002-002307.

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Marko, Rodić. "Kompleksi Co(III), Ni(II) i Cu(II) sa hidrazonima nekih 2-piridil-ketona." Phd thesis, Univerzitet u Novom Sadu, Prirodno-matematički fakultet u Novom Sadu, 2015. https://www.cris.uns.ac.rs/record.jsf?recordId=95722&source=NDLTD&language=en.

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U disertaciji su opisane sinteze i fizičko-hemijske karakterizacije 32 kompleksa kobalta(III), nikla(II) i bakra(II) sa ligandima S-metilizotiosemikarbazonom 2-acetilpiridina (HL&sup1;), bis(S-metilizotiosemikarbazonom) 2,6-diacetilpiridina (H₂L&sup2;), tiosemikarbazonom-S-metilizotiosemikarbazonom 2,6-diacetilpiridina (HL&sup3;), 1-adamantoilhidrazonom 2-acetilpiridina (HL⁴) i 1-adamantoilhidrazonom di(2-piridil)-ketona (HL⁵).Kako ligandi HL&sup3;, HL⁴ i HL⁵ do sada nisu bili sintetisani, dobijeni rezultati ujedno predstavljaju i prve iz njihove koordinacione hemije. Iako je sa S-metilizotios
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Castiglione, Michael. "Computer simulation of superionic fluorides." Thesis, University of Oxford, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.365812.

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Books on the topic "Crystal structure of tin(II)"

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Ling, Chen, and SpringerLink (Online service), eds. Structure-Property Relationships in Non-Linear Optical Crystals II: The IR Region. Springer Berlin Heidelberg, 2012.

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Glusker, Jenny Pickworth, and Kenneth N. Trueblood. Crystal Structure Analysis. Oxford University Press, 2010. http://dx.doi.org/10.1093/oso/9780199576340.001.0001.

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This book aims to explain how and why the detailed three-dimensional architecture of molecules can be determined by an analysis of the diffraction patterns obtained when X rays or neutrons are scattered by the atoms in single crystals. Part 1 deals with the nature of the crystalline state, diffraction generally, and diffraction by crystals in particular, and, briefly, the experimental procedures that are used. Part II examines the problem of converting the experimentally obtained data into a model of the atomic arrangement that scattered these beams. Part III is concerned with the techniques f
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Ling, Chen, and Xin-Tao Wu. Structure-Property Relationships in Non-Linear Optical Crystals II: The IR Region. Springer, 2016.

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Geierstanger, Bernhard H. Base specific binding of copper (II) to Z-DNA: 1.3 A single crystal structure of d(m⁵CGUAm⁵CG) soaked with CuCl₂. 1990.

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Dai, Yongshan. X-ray crystallographic studies: Part I, Crystal structures and crystal chemistry of lead-bearing apatites in the vanadinite-pyromorphite-mimetite ternary system, and, Part II, A preliminary study on thermally-induced al-si disorder in the crystal structure of sillimanite. 1990.

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Dai, Yongshan. X-ray crystallographic studies: Part I, Crystal structures and crystal chemistry of lead-bearing apatites in the vanadinite-pyromorphite-mimetite ternary system, and, Part II, A preliminary study on thermally-induced al-si disorder in the crystal structure of sillimanite. 1990.

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Li, Jing, and Xiao-Ying Huang. Nanostructured crystals: An unprecedented class of hybrid semiconductors exhibiting structure-induced quantum confinement effect and systematically tunable properties. Edited by A. V. Narlikar and Y. Y. Fu. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199533053.013.16.

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This article describes the structure-induced quantum confinement effect in nanostructured crystals, a unique class of hybrid semiconductors that incorporate organic and inorganic components into a single-crystal lattice via covalent (coordinative) bonds to form extended one-, two- and three-dimensional network structures. These structures are comprised of subnanometer-sized II-VI semiconductor segments (inorganic component) and amine molecules (organic component) arranged into perfectly ordered arrays. The article first provides an overview of II-VI and III-V semiconductors, II-VI colloidal qu
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Solymar, L., D. Walsh, and R. R. A. Syms. Semiconductors. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198829942.003.0008.

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Both intrinsic and extrinsic semiconductors are discussed in terms of their band structure. The acceptor and donor energy levels are introduced. Scattering is discussed, from which the conductivity of semiconductors is derived. Some mathematical relations between electron and hole densities are derived. The mobilities of III–V and II–VI compounds and their dependence on impurity concentrations are discussed. Band structures of real and idealized semiconductors are contrasted. Measurements of semiconductor properties are reviewed. Various possibilities for optical excitation of electrons are di
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Li, Wai-Kee, Hung Kay Lee, Dennis Kee Pui Ng, Yu-San Cheung, Kendrew Kin Wah Mak, and Thomas Chung Wai Mak. Problems in Structural Inorganic Chemistry. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780198823902.001.0001.

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The First Edition of this book, which appeared in 2013, serves as a problem text for Part I (Fundamentals of Chemical Bonding) and Part II (Symmetry in Chemistry) of the book Advanced Structural Inorganic Chemistry published by Oxford University Press in 2008. A Chinese edition was published by Peking University Press in August in the same year. Since then the authors have received much feedback from users and reviewers, which prompted them to prepare a Second Edition for students ranging from freshmen to senior undergraduates who aspire to attend graduate school after finishing their first de
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Book chapters on the topic "Crystal structure of tin(II)"

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Ladd, M. F. C., and R. A. Palmer. "Crystal Geometry. II." In Structure Determination by X-Ray Crystallography. Springer US, 1985. http://dx.doi.org/10.1007/978-1-4615-7936-6_2.

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Ladd, M. F. C., and R. A. Palmer. "Crystal Geometry. II." In Structure Determination by X-Ray Crystallography. Springer US, 1985. http://dx.doi.org/10.1007/978-1-4615-7939-7_2.

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Ladd, M. F. C., and R. A. Palmer. "Crystal Geometry. II." In Structure Determination by X-ray Crystallography. Springer US, 1993. http://dx.doi.org/10.1007/978-1-4615-1793-1_2.

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Predel, F. "Crystal structure of Mg-Sn (magnesium-tin) system." In Phase Equilibria, Crystallographic and Thermodynamic Data of Binary Alloys. Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-642-24977-8_24.

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Strauch, D. "InN: crystal structure." In New Data and Updates for IV-IV, III-V, II-VI and I-VII Compounds, their Mixed Crystals and Diluted Magnetic Semiconductors. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-14148-5_269.

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Suryanarayana, C., and M. Grant Norton. "Crystal Structure Determination. II: Hexagonal Structures." In X-Ray Diffraction. Springer US, 1998. http://dx.doi.org/10.1007/978-1-4899-0148-4_5.

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Matsukura, F. "Ga1–xMnxSb: crystal structure." In New Data and Updates for III-V, II-VI and I-VII Compounds. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-540-92140-0_278.

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Rössler, U. "Sn1-xEuxSe: crystal structure." In New Data and Updates for several Semiconductors with Chalcopyrite Structure, for several II-VI Compounds and diluted magnetic IV-VI Compounds. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-28531-8_42.

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Matsukura, F. "Ga1-xCrxSb: crystal structure." In New Data and Updates for IV-IV, III-V, II-VI and I-VII Compounds, their Mixed Crystals and Diluted Magnetic Semiconductors. Springer Berlin Heidelberg, 2011. http://dx.doi.org/10.1007/978-3-642-14148-5_198.

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Matsukura, F. "In1–xMnxSb: crystal structure, lattice parameter." In New Data and Updates for III-V, II-VI and I-VII Compounds. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-540-92140-0_301.

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Conference papers on the topic "Crystal structure of tin(II)"

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Harada, Yusuke, and Hiroshi Onoda. "Ohmic Contact in ECRCVD-TiN/Si Structure." In 1993 International Conference on Solid State Devices and Materials. The Japan Society of Applied Physics, 1993. http://dx.doi.org/10.7567/ssdm.1993.s-ii-12.

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Sokol, E. I., O. V. Pirohov, N. P. Klochko, V. A. Novikov, G. S. Khrypunov, and K. S. Klepikova. "Crystal structure of nanoscale tin dioxide films produced by magnetron sputtering." In 2014 IEEE 34th International Conference on Electronics and Nanotechnology (ELNANO). IEEE, 2014. http://dx.doi.org/10.1109/elnano.2014.6873977.

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Tanaka, Ryozo, Takao Sugimoto, Masanori Ryu, Masayoshi Kinugawa, and Koichiro Tsuji. "Continuing Improvements of 20MW-Class GT Kawasaki L20A." In ASME Turbo Expo 2006: Power for Land, Sea, and Air. ASMEDC, 2006. http://dx.doi.org/10.1115/gt2006-90394.

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Kawasaki Heavy Industries launched the first model of L20A gas turbine, rated at 18MW, in 2001 [1]. After the first model was launched, continuing improvements in both performance and durability have been made [2]. This paper describes the latest improvement activities, including cooling improvement of the 1st stage turbine blades using the results from an optical pyrometer thermal mapping system (Rotamap II) and performance improvements achieved by reducing the secondary air flow. In addition, by applying the non-cooled 2nd stage turbine blades made of single crystal material, plus improved r
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DÉNÈS, GEORGES, ABDUALHAFED MUNTASAR, M. CECILIA MADAMBA, and ZHIMENG ZHU. "THE UNIQUE CASE OF TIN(II) FLUORIDE CONTAINING UNEXPECTED SUBSTITUTIONAL SOLID SOLUTIONS: LOCAL STRUCTURE VERSUS GLOBAL STRUCTURE." In MATERIALS CHARACTERISATION 2017. WIT Press, 2017. http://dx.doi.org/10.2495/mc170231.

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Schetty, Rob. "Effects of electrodeposited matte tin crystal orientation and grain structure on tin whisker growth propensity using stress-inducing test methods." In 2014 IEEE 60th Holm Conference on Electrical Contacts (Holm). IEEE, 2014. http://dx.doi.org/10.1109/holm.2014.7031039.

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WANG, GUO PING, and LONG GUAN ZHU. "SYNTHESIS AND CRYSTAL STRUCTURE OF A NEW COPPER(II) COMPLEX CONTAINING FLUOROQUINOLONE." In Proceedings of the International Symposium on Solid State Chemistry in China. WORLD SCIENTIFIC, 2002. http://dx.doi.org/10.1142/9789812776846_0044.

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Tamai, Terutaka, Shigeru Sawada, and Yasuhiro Hattori. "Deformation of Crystal Structure and Distribution of Mechanical Stress in Tin-Plated Layer under Contact Loading." In 2009 Proceedings of the 55th IEEE Holm Conference on Electrical Contacts. IEEE, 2009. http://dx.doi.org/10.1109/holm.2009.5284406.

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You, Liyan, Hui Jiang, and Chaohong Ma. "Syntheses and Crystal Structure of Zinc(II) Complex Constructed from taurine Schiff Base." In 2017 6th International Conference on Energy and Environmental Protection (ICEEP 2017). Atlantis Press, 2017. http://dx.doi.org/10.2991/iceep-17.2017.103.

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Hillard, Elizabeth, Miguel Cortijo, Andrei Rogalev, Fabrice Wilhelm, Philippe Sainctavit, and Patrick Rosa. "Tris(ethylenediamine) Cobalt(II) and Manganese(II) Nitrates: Synthesis, structure and crystal handedness mapping by X-ray circular dichroism." In The 2nd International Online Conference on Crystals. MDPI, 2020. http://dx.doi.org/10.3390/iocc_2020-07320.

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Boopathi, K., S. Moorthy Babu, and P. Ramasamy. "Synthesis, crystal structure, thermal and nonlinear optical properties of new metal-organic single crystal: Tetrabromo (piperazinium) zincate (II) (TBPZ)." In DAE SOLID STATE PHYSICS SYMPOSIUM 2017. Author(s), 2018. http://dx.doi.org/10.1063/1.5028979.

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