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Online since: September 2013
Authors: Cui Yang, Yong Xiong, Chun Yan Zhao
Bioinformatic Analysis of rbcL Gene in Lilium
Yong Xiong1,a , Chunyan Zhao2,b, Cui Yang1,c
1 Key Laboratory of Ethnic Medicine Resource Chemistry/State Ethnic Affairs Commission & Ministry of Education, Yunnan University of Nationalities, Kunming 650500, P.R.China
2 Kunming Edible Fungi Institute of All China Federation of Supply and Marketing Cooporatives, Kunming 650221, P.R.China
a17639121@qq.com, b99558737@qq.com,cyangynni@163.com
Key words: Lilium;rbcL;Bioinformatic Analysis;Protein structure
Abstract: Used sequence diversity of chloroplast rbcL gene sequence to analyze Lilium phylogeny, structured model of the rbcL protein secondary structure and tertiary structure form Lilium superbum.
This study used sequences diversity of chloroplast rbcL gene to analyze lilium phylogeny, structured protean secondary structure and tertiary structure of Lilium rbcL gene.
Modeling of the 3D structure of rbcL protein was structured by homology comparative modeling [9].
We used RasTop software to show its 3D structure.
Acknowledgements This work was carried out with the key Laboratory of chemistry in Ethnic Medicinal Resource, Yunnan University of nationalities open fund (MZY1116 and MZY100106).
This study used sequences diversity of chloroplast rbcL gene to analyze lilium phylogeny, structured protean secondary structure and tertiary structure of Lilium rbcL gene.
Modeling of the 3D structure of rbcL protein was structured by homology comparative modeling [9].
We used RasTop software to show its 3D structure.
Acknowledgements This work was carried out with the key Laboratory of chemistry in Ethnic Medicinal Resource, Yunnan University of nationalities open fund (MZY1116 and MZY100106).
Online since: November 2012
Authors: Ye Zhou, Hui Min Han, Jing Wang, Peng Qu, Jing Xu, Chi Zhang
The chemical structure and thermal stability of grafted copolymer (EC-g-PA) were analyzed by FT-IR and TGA, respectively, and compared with those of EC.
In current work, an EC-based graft copolymer (EC-g-PA) was prepared by catalyst -free-esterification (CFE) reaction in organic solvent, the structures and thermal degradation properties of EC-g-PA were characterized by FT-IR and TGA, respectively.
Chemistry of Natural Compounds, 2005, 41(1): 88-90 [5] N.Shigeo, A.Masato.
Journal of Polymer Science Part A: Polymer Chemistry, 1997, 35(16):3359-3363
Stannett, Permeation, sorption, and diffusion of water in ethyl cellulose, Polymer Chemistry[J],1966,4(3):593-602 [9] G.S.
In current work, an EC-based graft copolymer (EC-g-PA) was prepared by catalyst -free-esterification (CFE) reaction in organic solvent, the structures and thermal degradation properties of EC-g-PA were characterized by FT-IR and TGA, respectively.
Chemistry of Natural Compounds, 2005, 41(1): 88-90 [5] N.Shigeo, A.Masato.
Journal of Polymer Science Part A: Polymer Chemistry, 1997, 35(16):3359-3363
Stannett, Permeation, sorption, and diffusion of water in ethyl cellulose, Polymer Chemistry[J],1966,4(3):593-602 [9] G.S.
Online since: August 2021
Authors: Geetha Manivasagam, Jithin Vishnu
Coordination Chemistry Reviews. 2011;255:2727-45
Analytical Chemistry. 1957;29:760-2
Chemistry of Materials. 1999;11:3113-20
Atomic-scale control of TiO6 octahedra through solution chemistry towards giant dielectric response.
Russian Journal of Physical Chemistry A. 2016; 90: 567-71
Analytical Chemistry. 1957;29:760-2
Chemistry of Materials. 1999;11:3113-20
Atomic-scale control of TiO6 octahedra through solution chemistry towards giant dielectric response.
Russian Journal of Physical Chemistry A. 2016; 90: 567-71
Online since: October 2009
Authors: Shaun Hamer
With this strategy, the entire casthouse, business model and management structure is focused on the
production of high strength aluminium alloys and dedicated to sales and market growth in that
specific sector.
However quality control of the chemistry of the hot metal transfer to the hard alloy line is extremely difficult to regulate and certify from heat to heat.
Primary aluminium with correct iron / silicon ratios is critical for 2000 and 7000 series alloy production in order to stay in specification in the final chemistry analysis.
The primary metal must also have a chemistry map showing limited alkali metal content (sodium, lithium, calcium) and rare metal content.
Scrap charging as with all secondary remelt plants is an important technique to master to ensure correct chemistry, minimize melt losses and ensure casthouse safety.
However quality control of the chemistry of the hot metal transfer to the hard alloy line is extremely difficult to regulate and certify from heat to heat.
Primary aluminium with correct iron / silicon ratios is critical for 2000 and 7000 series alloy production in order to stay in specification in the final chemistry analysis.
The primary metal must also have a chemistry map showing limited alkali metal content (sodium, lithium, calcium) and rare metal content.
Scrap charging as with all secondary remelt plants is an important technique to master to ensure correct chemistry, minimize melt losses and ensure casthouse safety.
Online since: May 2011
Authors: Bei Hai He, Ben Ping Lin, Guang Lei Zhao
Lignin is an amorphous polymer with a chemical structure that distinctly differs from the other macromolecular constituents of wood.
(ed.): Pulp and Paper Chemistry and Chemical Technology vol.
Journal of Wood Chemistry and Technology (2004), 24(2),p.169-181
Cellulose Chemistry and Technology (2005), 39, p.3-4
Journal of Wood Chemistry and Technology (2004). 24(4), p.302-321
(ed.): Pulp and Paper Chemistry and Chemical Technology vol.
Journal of Wood Chemistry and Technology (2004), 24(2),p.169-181
Cellulose Chemistry and Technology (2005), 39, p.3-4
Journal of Wood Chemistry and Technology (2004). 24(4), p.302-321
Online since: May 2012
Authors: Jin He Jiang
Synthesis of Mg0.5Ti0.5PO4 and Its Selectivity to Li+ Exchange
Jinhe 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 Mg0.5Ti0.5PO4 crystallized at 750℃ was much perfect.
Jiang, C.R.Wan, H.C.Gao: Advance on extraction lithium from salt lake, J.Chemistry Online. 1997,(12),11 [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] J.H.
Li: Synthesis of Li4Mn0.5Ti0.5O4 and its selectivity to Li+ exchange, J.Chinese Journal of Applied Chemistry.2006,23(4),357
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 Mg0.5Ti0.5PO4 crystallized at 750℃ was much perfect.
Jiang, C.R.Wan, H.C.Gao: Advance on extraction lithium from salt lake, J.Chemistry Online. 1997,(12),11 [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] J.H.
Li: Synthesis of Li4Mn0.5Ti0.5O4 and its selectivity to Li+ exchange, J.Chinese Journal of Applied Chemistry.2006,23(4),357
Online since: February 2014
Authors: Lenita Herawaty, Eti Rohaeti, Charlena Charlena, Sulistioso Giat Sukaryo
HAp has a hexagonal structure with the chemical formula of Ca10(PO4)6(OH)2.
As the structural and microstructural the HAp nanoparticles highly affect the mechanical properties, these structure should be elaborated in detail.
The intrinsic characteristic of the product were studied in terms of crystal structure, microstructure, crystallite size, and particle size.
The XRD pattern of the as-prepared HAp The X-ray diffraction pattern (Fig. 3) was used to identify the crystal structure of the product.
Laborde, Synthesis,characterization and thermal behaviour of apatite tricalcium phosphate /Materials Chemistry and Physics, 2003, No. 80, pp. 269 – 277
As the structural and microstructural the HAp nanoparticles highly affect the mechanical properties, these structure should be elaborated in detail.
The intrinsic characteristic of the product were studied in terms of crystal structure, microstructure, crystallite size, and particle size.
The XRD pattern of the as-prepared HAp The X-ray diffraction pattern (Fig. 3) was used to identify the crystal structure of the product.
Laborde, Synthesis,characterization and thermal behaviour of apatite tricalcium phosphate /Materials Chemistry and Physics, 2003, No. 80, pp. 269 – 277
Online since: October 2008
Authors: Guo Sheng Gai, Xiao Hua Liu, Xing Dong Lü
(3) Liquid phase process
In this process, precursors are firstly formed in liquid phase, and then sintered to form nano-sized
powders with specific crystal structure.
In this method, Ca(OH)2 latex is used as reaction liquid, and CO2 as carbon resource, and carbonization retort is used as reactor, and additives are added to control crystal structure and grain size.
It must be pointed out that the ultra-gravity reactor was also designed out with unique structure for this method.
References [1] Xu Hong, Cai Honghua and Luo Zhongkuan: Chinese Journal of Innorganic Chemistry Vol.9(2003), p627 [2] Yu Jianqun, Jia Dianzen and Zhang Hu: Chinese Chemistry Vol. 6(1998), p35 [3] Zhang Yaohua, Zhang Shicheng and Li Xingguo: Chinese Journal of Innorganic Chemistry Vol. 19(2003), p41 [4] Lu Nianduan, Song Xiaoyan, Zhang Jiuxing, Li Erdong, Yue Ming, Zeng Hong and Yan Xiangquan: Chinese Powder Metallurgy Technology Vol. 25(2007), p424 [5] Zhang Weihua, Wang Hongli and Liu Hui: Journal of Qinghai University (Nature Science) Vol. 25(2007), p79 [6] Jiang Honggang, Tong Huayu and Ding Bingzhe, C.N.
Patent 1, 096,061A. (1994) [7] Dong Jun, Yang Hongjun and Li Chunzhong : Chineses Chemistry World Vol. 3(2003), p119 [8] Mao Gaojun: Journal of Yangzhou University Nataral Science Edition Vol. 1(1998), p20 [9] Xin Xianshuan, Zhou Baibin and Shao Chunhong: Chinese Chemistry and Adhesion Vol. 6(2002), p261 [10] Chen Ymin, He Xumin and Lan Weiguang: Chinese Chemistry Vol. 66(2003), p441 [11] Chen Gairong, Xu Shaohong and Yang Jun: Chinese Journal of Functional Materials Vol. 33(2002), p521 [12] Zhao Lili, Wang Xuewen and Zhang Zhiyong,: Chinese Journal of Functional Materials Vol. 33(2002), p410 [13] Wei Gang, Huang Haiyan and Xiong Rongchun: Chinese Journal of Functional Materials Vol. 33(2002), p471 [14] Tang Zilong, Zhang Junyin and Chen Zhe: Chinese Journal of Functional Materials Vol. 33(2002), p542 [15] Zan Ling, Zhong Jiacheng and Liu Zhongshi: Chinese Journal of Functional Materials Vol. 32(2001), p332 [16] Liu Zhiping, Huang Huimin, Deng Shuhua and
In this method, Ca(OH)2 latex is used as reaction liquid, and CO2 as carbon resource, and carbonization retort is used as reactor, and additives are added to control crystal structure and grain size.
It must be pointed out that the ultra-gravity reactor was also designed out with unique structure for this method.
References [1] Xu Hong, Cai Honghua and Luo Zhongkuan: Chinese Journal of Innorganic Chemistry Vol.9(2003), p627 [2] Yu Jianqun, Jia Dianzen and Zhang Hu: Chinese Chemistry Vol. 6(1998), p35 [3] Zhang Yaohua, Zhang Shicheng and Li Xingguo: Chinese Journal of Innorganic Chemistry Vol. 19(2003), p41 [4] Lu Nianduan, Song Xiaoyan, Zhang Jiuxing, Li Erdong, Yue Ming, Zeng Hong and Yan Xiangquan: Chinese Powder Metallurgy Technology Vol. 25(2007), p424 [5] Zhang Weihua, Wang Hongli and Liu Hui: Journal of Qinghai University (Nature Science) Vol. 25(2007), p79 [6] Jiang Honggang, Tong Huayu and Ding Bingzhe, C.N.
Patent 1, 096,061A. (1994) [7] Dong Jun, Yang Hongjun and Li Chunzhong : Chineses Chemistry World Vol. 3(2003), p119 [8] Mao Gaojun: Journal of Yangzhou University Nataral Science Edition Vol. 1(1998), p20 [9] Xin Xianshuan, Zhou Baibin and Shao Chunhong: Chinese Chemistry and Adhesion Vol. 6(2002), p261 [10] Chen Ymin, He Xumin and Lan Weiguang: Chinese Chemistry Vol. 66(2003), p441 [11] Chen Gairong, Xu Shaohong and Yang Jun: Chinese Journal of Functional Materials Vol. 33(2002), p521 [12] Zhao Lili, Wang Xuewen and Zhang Zhiyong,: Chinese Journal of Functional Materials Vol. 33(2002), p410 [13] Wei Gang, Huang Haiyan and Xiong Rongchun: Chinese Journal of Functional Materials Vol. 33(2002), p471 [14] Tang Zilong, Zhang Junyin and Chen Zhe: Chinese Journal of Functional Materials Vol. 33(2002), p542 [15] Zan Ling, Zhong Jiacheng and Liu Zhongshi: Chinese Journal of Functional Materials Vol. 32(2001), p332 [16] Liu Zhiping, Huang Huimin, Deng Shuhua and
Online since: March 2015
Authors: Xing Fa Ma, Guang Li, Xiao Chun He, Ming Jun Gao, Bo Zhang
These peaks belong to CeO2 face-centered cubic structure.
Wang: Journal of Solid State Chemistry Vol.215 (2014), p. 160 [54] Y.
Oh: Journal of Industrial and Engineering Chemistry Vol.20(2014), p.1035 [57 ] M.
Xu: Journal of. physical chemistry Vol.117(2013), p.4292 [60] J.
Bai: Materials Chemistry and Physics Vol.98 (2006), p.241 [65] X.
Wang: Journal of Solid State Chemistry Vol.215 (2014), p. 160 [54] Y.
Oh: Journal of Industrial and Engineering Chemistry Vol.20(2014), p.1035 [57 ] M.
Xu: Journal of. physical chemistry Vol.117(2013), p.4292 [60] J.
Bai: Materials Chemistry and Physics Vol.98 (2006), p.241 [65] X.
Electrical Properties of Nano Zinc Ferrites Prepared by Solution Combustion and Hydrothermal Methods
Online since: January 2012
Authors: B. Daruka Prasad, A.P. Gnana Prakash, H. Nagabhushana, R.P.S. Chakradar, B. Rudraswamy, D.M. Jnaneshwara, C. Shivakumara, N.C. Shivaprakash, Bhangi Mutta Nagabhushana
Gnana Prakash8
1Department of Physics, Sai Vidya Institute of Technology, Bangalore – 560 064, India.
2Department of chemistry, M.S.
The PXRD showed cubic phase, spinel structure, and particle size in nano scale.
The spinel structure allows the introduction of different metallic ions, this changes the electrical properties considerably.
The Zinc ferrite (ZF) spinels adopt normal spinel structure with Zn2+ cations occupy tetrahedral sites.
Harikrishna.R. of Department of Chemistry, MSRIT, Mr.K.C.Praveen from Department of Physics, University of Mysore and Mrs.
The PXRD showed cubic phase, spinel structure, and particle size in nano scale.
The spinel structure allows the introduction of different metallic ions, this changes the electrical properties considerably.
The Zinc ferrite (ZF) spinels adopt normal spinel structure with Zn2+ cations occupy tetrahedral sites.
Harikrishna.R. of Department of Chemistry, MSRIT, Mr.K.C.Praveen from Department of Physics, University of Mysore and Mrs.