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Online since: January 2012
Authors: Heng Li
Synthesis of Li0.6Zn1.2PO4 and Its Selectivity to Li+ Exchange Jinhe Jiang MicroScale Science Institute , Department of Chemistry and Chemical Engineering ,Weifang University, Weifang, 261061,China jiangjinhe2012@126.com Keywords: Complex oxide, Lithium, Ion exchange, Li0.6Zn1.2PO4 Abstract.
The researches of lithium-ion which has a specific selective memory function inorganic ion exchanger are carried out actively, especially the lithium titanium oxide with spinel structure showed the exchange memory to Li+[3-4].
The structure of compound metal oxide Li0.6Zn1.2PO4 crystallized at 750℃ was much perfect.
Rare Metal, 2007,26(6),121 [2] Y.F.Liu, Kenta Ooi: Inoranic ion exchanger with ion-memery ability, J.Ion Exchange and Adsorption. 1994,10(3),246 [3] D.Q.Dong, J.Zhong, D.L.Liu, Y.F.Liu: LiCu0.5Mn1.5O4 synthesis and Li+ extraction/reaction with it in the aqueous phase, J.China Journal of Applied Chemistry . 1998,15(3),11 [4] Zhong h..
Prpperty of H2TiO3 type ion-exchangers and extraction of lithium from brine of natural gas wells J.Chinese Journal of Applied Chemistry.2000,17(3),307
Online since: January 2012
Authors: Heng Li
Synthesis of Al0.6667Ti(PO4)2 and Its Selectivity to Li+ Exchange Jin He Jiang MicroScale Science Institute, Department of Chemistry and Chemical Engineering, Weifang University, Weifang, 261061,China Corresponding author.
The researches of lithium-ion which has a specific selective memory function inorganic ion exchanger are carried out actively, especially the lithium titanium oxide with spinel structure showed the exchange memory to Li+[3-4].
The structure of compound metal oxide Al0.6667Ti(PO4)2 crystallized at 770℃ was much perfect.
Rare Metal, 2007,26(6),121 [2] Y.F.Liu, Kenta Ooi: Inoranic ion exchanger with ion-memery ability, J.Ion Exchange and Adsorption. 1994,10(3),246 [3] D.Q.Dong, J.Zhong, D.L.Liu, Y.F.Liu: LiCu0.5Mn1.5O4 synthesis and Li+ extraction/reaction with it in the aqueous phase, J.China Journal of Applied Chemistry . 1998,15(3),11 [4] Zhong h..
Prpperty of H2TiO3 type ion-exchangers and extraction of lithium from brine of natural gas wells J.Chinese Journal of Applied Chemistry.2000,17(3),307
Online since: June 2017
Authors: A.V. Kirichek, V.V. Ivanov, N.S. Dontsov
Mechanical Zinc Coating Procedure under Conditions of Vibration Mechanical-Chemical Impact IVANOV V.V.1,a, DONTSOV N.S.1,b, KIRICHEK А.V.2,c 1Don State Technical University, 1, Gagarin Sq, Rostov-upon-Don, 344000, Russia 2Bryansk State Technical University, 7, 50-Years of October Boulevard, Bryansk, 241035, Russia аvivanov_dstu@mail.ru, bndontsov@dstu.edu.ru, cavkbgtu@gmail.com Keywords: zinc coating, mechanical-chemistry, vibro-wave technological system, free-moving indenter Abstract.
There are offered engineering and technological solutions for realization of technological regulations for zinc coatings and their structures in vibro-wave technological systems and also a coating mechanism and the methodology for their choice and control at the stage of technological preparation.
Shudaley, Vibration Mechanical Chemistry in Processes of Finishing – Hardening Working and Coatings of Machinery.
Online since: October 2014
Authors: Napaporn Rattanat, Kanjana Yodmora
Moreover, the heating also causes isomerization reaction that deforms the structure of b-carotene.
Tejada: Food Chemistry Vol. 95 (2006), p. 328-336 [3] M.
Srinivasan: Food Chemistry Vol. 122 (2010), p. 668-672 [6] R.
Larque: Food Chemistry Vol. 134 (2012), p. 127-133 [7] M.G.
Oliveira: Food Chemistry Vol. 156 (2014), p. 37-41 [8] M.G.
Online since: December 2014
Authors: P. Guto, P.G.L. Baker, G. Kamau, I. Iwuoha, M.O. Oyagi, Immaculate N. Michira
Iwuoha2,b 1 Department of Chemistry, University of Nairobi, P.O.
Box 00100-30197, Nairobi, Kenya. 2 Sensor research Laboratory, Department of Chemistry, University of the Western Cape, Private bag, Bellville, South Africa.
In Fig. 6 (b) a HRTEM image of one of the rooibos tea synthesized AgNP displays that it is comprised of equal distance layers highlighting a well organized fringe lattice characteristic of crystalline metallic structures.
Similarly, the AgNPs were sperical structures with dense cores and lighter peripheries highlighting the presence of the stabilizing and capping templates.
Sharma, Green Synthesis of Silver Nanoparticles Using Extracts of Ananas comosus, Green and Sustainable Chemistry 2 (2012) 141-147
Online since: August 2009
Authors: Wei Zhang, Qing Xun Zhao, Bo Geng, Li Guan, Qiang Li, Jian Xin Guo, Bao Ting Liu, Li Tao Jin
Atomic and electronic structure of LaAlO3 and LaAlO3:Mg from first-principles calculations Li Guan, Litao Jin, Wei Zhang, Qiang Li, Jianxin Guo, Bo Geng, Qingxun Zhao, Baoting Liu College of Physics Science & Technology, Hebei University, Baoding, China Key words: First principle, LaAlO3, electronic structure, Doping Abstract: In the present paper, the lattice structure, band structure and density of state of LaAlO3 and LaAlO3:Mg are calculated by first-principle method based on density functional theory.
To deeply understand the electronic structure of LaAlO3, a 2×1×1 super-cell structure is established and the doping concentration of Mg at Al sites is 25%.
Energy band structure of LaAlO3 is shown in Fig. 4.
In this work, a 2×1×1 super-cell structure is built.
Fung: Journal of Physics and Chemistry of Solids.
Online since: November 2018
Authors: Mirvari X. Hasanova, Samira F. Safaraliieva, Patrick Theato, Dilgam B. Taghiyev, Maria G. Raucci, Shamo Zokhrab Tapdiqov, Nizami A. Zeynalov
The structure of product was characterized by FT-IR, UV-Vis, NMR, SEM, TGA, DTA and elemental analysis was determined.
However in these studies molecular structure of products, reaction mechanism, details of reduction process during stepwise course of N-alkylation reaction have not been shown.
High sensitive method has been used in the discovery of the molecular structure of these polymer modifications.
The exact molecular structure of the derivatives from the reaction and the presence of the functional groups were studied using the 1H and 13C NMR spectroscopy.
The breakdown of the surface structure after alkylation results in formation of non-coincidental zones [32].
Online since: September 2015
Authors: Dmitriy A. Ivanov, Kseniia N. Grafskaia, Denis V. Anokhin, Jaime J. Hernandez Rueda
Film structure characterization was carried out by grazing-incidence small-angle scattering (GISAXS).
The formation of the lamellar structure was not revealed.
Elyashevitch, Photochromic LC-polymer composites containing azobenzene chromophores with thermally stable Z-isomer, Journal of Materials Chemistry 2 (2014) 4482-4489
Ivanov, M Moeller, A Diacetylene-Containing Wedge-Shaped Compound: Synthesis, Morphology, and Photopolymerization, Chemistry - A European Journal 19 13 (2013) 4300-4307
Madsen, Humidity-Modulated Phase Control and Nanoscopic Transport in Supramolecular Assemblies, Journal of Physical Chemistry B 118 11 (2014) 3207-3217
Online since: December 2016
Authors: Ivan Bochkov, Remo Merijs Meri, Janis Zicans, Guna Vugule, Kristiana Korsaka-Mille
Rheological Properties of Multi-Component Composites Based on Polymer-Polymer Matrix and Nano-Structured Zinc Oxide Ivan Bochkov*, Remo Merijs Meri, Guna Vugule, Kristiana Korsaka-Mille and Janis Zicans Institute of Polymer Materials, Faculty of Material Science and Applied Chemistry, Riga Technical University, Latvia *ivans.bockovs@gmail.com Keywords: Polypropylene, elastomer, zinc oxide, capillary rheometry.
Nano structured tetrapod shaped ZnO particles were synthesized in Institute of Inorganic Chemistry of Faculty of Material Science and Applied Chemistry of Riga Technical University.
If to compare pure materials, PP have less shear rate dependent structure, while EOC have high shear rate dependence.
Extensional viscosity relationships give valuable information about the materials structure and it sensitivity.
Structure changes, in its turn, considerably affect processing of polymers, blends and composites.
Online since: December 2023
Authors: Jothi Sudagar, M. Naga Sravanthi, A. Selva Kumar
The Journal of Physical Chemistry B 107.25 (2003): 6122-6130
The Journal of Physical Chemistry B 107.38 (2003): 10398-10404
Chemistry of materials 16.4 (2004): 662-669
Chemistry of Materials 16.11 (2004): 2287-2292
Chemistry of Materials 15.11 (2003): 2280-2286