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Online since: January 2013
Authors: W. W. Zhao, J. Q. Gao, D. H. Liu, Z. X. Li
Lid
(Department of Chemistry and Chemical Engineering, Baoji University of Arts and Sciences,
Baoji 721013, Shaanxi, China)
a gengts@163.com, b113119322@qq.com, c liudh801@nenu.edu.cn ,d mingtian8001@163.com
Keywords: thermodynamics; kinetics; cisplatin; etoposide
Abstracts: The dissolution enthalpy of Cisplatin and Etoposide in the appropriate solvent were measured by RD496-2000 microcalorimeter under the conditions of atmospheric pressure and 309.65 K.
Introduction Cisplatin is a cell cycle non-specific drug, has a strong broad-spectrum anti-cancer effect with a cytotoxic, can inhibit DNA replication process of the cancer cells and damage the cell membrane structure.
Chinese Journal of Inorganic Chemistry , 2002,18, 362-366).
Introduction Cisplatin is a cell cycle non-specific drug, has a strong broad-spectrum anti-cancer effect with a cytotoxic, can inhibit DNA replication process of the cancer cells and damage the cell membrane structure.
Chinese Journal of Inorganic Chemistry , 2002,18, 362-366).
Online since: January 2013
Authors: Li Ming Jiang
The Synthesis of Ag doped TiO2 Powders and Enhanced Photocatalytic Activity for Degradation of Organic Dye in Waste Waters
LiMing Jiang
Chemistry Center, Harbin University of Commerce, Harbin 150076,China
jlm.032349@yahoo.com.cn
Keywords:Sol-gel method; Silver doped; TiO2; Photocatalytic activity
Abstract.The Ag/TiO2 powders with different Ag contents were synthesized with tetrabutyl titanate as a titanium source and silver nitrate as silver source by sol-gel method, and the Ag contents in the Ag/TiO2 powders were 0.1%, 0.3%, 0.5 %, 0.8%, 1%, 1.5%, 2%, 2.5%, 3%, and 4% (mole ratio) respectively.
It clearly shows the presence of nanocrystalline anatase structure, because five high intensity crystal peaks at 2θ=25~65° could be observed and indexed as (101), (004), (200), (105), and (211), respectively [6].
JournalofPhysical Chemistry C113(2009)21635–21641
It clearly shows the presence of nanocrystalline anatase structure, because five high intensity crystal peaks at 2θ=25~65° could be observed and indexed as (101), (004), (200), (105), and (211), respectively [6].
JournalofPhysical Chemistry C113(2009)21635–21641
Online since: July 2017
Authors: Elena S. Parfenova
The implanted impurities can meet internal surface separating several areas with different structure or orientation.
There are a lot studies aimed to investigation of changes of morphology, roughness, surface chemistry and adhesion strength of the system coating/substrate after ion implantation, for example [7-8].
Konukhov, Nanostructured coatings based on multicomponent nitrides and produced by vacuum-arc ion-plasma deposition, Protection of metals and physical chemistry of surfaces, 48 No.6 (2012) 649-655
There are a lot studies aimed to investigation of changes of morphology, roughness, surface chemistry and adhesion strength of the system coating/substrate after ion implantation, for example [7-8].
Konukhov, Nanostructured coatings based on multicomponent nitrides and produced by vacuum-arc ion-plasma deposition, Protection of metals and physical chemistry of surfaces, 48 No.6 (2012) 649-655
Online since: February 2013
Authors: Ai Jun Xue, Ji Hong Pan, Mao Cheng Tian
(2).CaO in the pellets closely adhere to the surface and pore structure of biomass, thus decrease the
Fig.4 Yield of gas as a function of the
final pyrolysis temperature
heating rate of the pellets.
References [1] Jianchun Jiang: Chemistry and Industry of Forest Products,22-2 ( 2002) 75- 80.
(In Chinese) [2] Ersan Putun,et al: Bioresource Technology 97 (2006) 701-710 [3] Yi Yang, et al: Bioresource Technology 102 (2011) 11027-11033 [4] Carin Myren, et al: Biomass and Bioenergy 23 (2002) 217 – 227 [5] CHEN Hong- wei, et al: Energy Conservation 300(2007)21-23(In Chinese) [6] G.Chen, et al: Energy Conversion and Management 44 (2003) 2289-2296 [7] Funda Ates, et al: Fuel 85 (2006) 1851–1859 [8] Jayeeta Chattopadhyay, et al: Industrial and Engineering Chemistry 15 (2009) 72-76 [9] Daniel Neves,et al: Progress in Energy and Combustion Science 37 (2011) 611-630 [10] Xie Yurong, et al: Acta Energlae Solaris Sinica 29(2008)888-893(In Chinese)
References [1] Jianchun Jiang: Chemistry and Industry of Forest Products,22-2 ( 2002) 75- 80.
(In Chinese) [2] Ersan Putun,et al: Bioresource Technology 97 (2006) 701-710 [3] Yi Yang, et al: Bioresource Technology 102 (2011) 11027-11033 [4] Carin Myren, et al: Biomass and Bioenergy 23 (2002) 217 – 227 [5] CHEN Hong- wei, et al: Energy Conservation 300(2007)21-23(In Chinese) [6] G.Chen, et al: Energy Conversion and Management 44 (2003) 2289-2296 [7] Funda Ates, et al: Fuel 85 (2006) 1851–1859 [8] Jayeeta Chattopadhyay, et al: Industrial and Engineering Chemistry 15 (2009) 72-76 [9] Daniel Neves,et al: Progress in Energy and Combustion Science 37 (2011) 611-630 [10] Xie Yurong, et al: Acta Energlae Solaris Sinica 29(2008)888-893(In Chinese)
Online since: March 2012
Authors: Gang Liu, Hui Li, Yuan Ming Tu
Synthesis and Properties of A New Unsymmetrical Diarylethene Bearing Two Thiophene Rings
Hui Li, Yuanming Tu, Gang Liu*
College of Chemistry and Chemical Engineering, Jiangxi Science and Technology Normal University, Nanchang 330013, P.
The structure of diarylethene 1o was confirmed by NMR. 1H NMR (400 MHz, CDCl3, TMS): δ 1.84 (s, 3H, -CH3), 1.94 (s, 3H, -CH3), 2.41 (s, 3H, -CH3), 6.74 (s, 1H, thienyl-H), 7.34 (s, 1H, thienyl-H), 7.63-7.66 (m, 4H, phenyl-H).
Kawai, Organic chemistry: A digital fluorescent molecular photoswitch, Nature, 420 (2002) 759–760
The structure of diarylethene 1o was confirmed by NMR. 1H NMR (400 MHz, CDCl3, TMS): δ 1.84 (s, 3H, -CH3), 1.94 (s, 3H, -CH3), 2.41 (s, 3H, -CH3), 6.74 (s, 1H, thienyl-H), 7.34 (s, 1H, thienyl-H), 7.63-7.66 (m, 4H, phenyl-H).
Kawai, Organic chemistry: A digital fluorescent molecular photoswitch, Nature, 420 (2002) 759–760
Online since: November 2014
Authors: Xin Lu, Jian Tian, Bing Jun Shen, Li Hong Jin, Xin Le Zhao, Xing Ye Wang, Wu Shou Zhang, Dan Zhou, Ling Yu Li
Excess Heat Power Measurement by Heat-flow Calorimeter in a D/Pd Gas-loading System
Bingjun Shen1,a , Xingye Wang1 , Wushou Zhang2,b, Lihong Jin1, Xinle Zhao1,Dan Zhou1, Xin Lu3, Lingyu Li1 and Jian Tian1,c
1Changchun University of Science and Technology, Changchun 130022, China
2Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China
3Changchun University, Changchun, 130022, China
ashenbj@cust.edu.cn, bwszhang@iccas.ac.cn, ctianjian@cust.edu.cn (corresponding author)
Keywords: D/Pd gas-loading system, current triggering, heat-flow calorimeter, excess heat power.
The chamber structure was the same as before.
Acknowledgements This work was financially supported by National Natural Science Foundation of China (21153003) and thanks to The State Key Laboratory of Physical Chemistry of Solid Surfaces in Xiamen University who gives us generous help for building the heat-flow calorimeter.
The chamber structure was the same as before.
Acknowledgements This work was financially supported by National Natural Science Foundation of China (21153003) and thanks to The State Key Laboratory of Physical Chemistry of Solid Surfaces in Xiamen University who gives us generous help for building the heat-flow calorimeter.
Online since: May 2013
Authors: Yue Jing Zhao, Feng Shan Huang, Zhi Lin Zhao
It has some advantages like simple structure, occupied less, long conveying road, low maintenances cost and energy consumed less [1].
Chemistry and Industry Equipment Technology. 2000,21(2),p12 [J].
Chemistry industry press. 1989.
Chemistry and Industry Equipment Technology. 2000,21(2),p12 [J].
Chemistry industry press. 1989.
Online since: December 2014
Authors: Jun Fei Wu, Xu Ping Zhang, Shi Chen Guo, Zhi Li, Jin Mei Kan
This paper laid a foundation for the further study of tire safety performance.
1 Finite element model of radial tire
1.1 Selection of element types
Radial tire is a complex structure consisting of a plurality of materials, it includes different material properties of rubber, steel and rubber-cord composites.These types of materials are nonlinear material, so it is not easy to get the analysis of tire and material parameters.
Rubber Chemistry and Technology, 1981, 54(4): 751-766
Rubber chemistry and technology, 1985, 58(4): 785-805.
Rubber Chemistry and Technology, 1981, 54(4): 751-766
Rubber chemistry and technology, 1985, 58(4): 785-805.
Online since: April 2016
Authors: Miroslava Dušková Smrčková, Anton Osvald, Linda Makovická Osvaldová, Patrik Mitrenga, Dana Chmelíková
Non-normalized Evaluation Methods of Retarding Effects of Fire Retardants for Wood
Anton Osvald1,a* Linda Makovická Osvaldová1,b Patrik Mitrenga1,c
Miroslava Dušková Smrčková2,d Dana Chmelíková2,e
1University of Žilina, Faculty of safety engineering, Department of fire engineering, ul. 1 mája 32, 010 26 Žilina, Slovak Republic
2The Institute of Macromolecular Chemistry of the Academy of Sciences, Heyrovského nám. 2, 162 06 Praha 6, Czech Republic
aanton.osvald@fbi.uniza.sk, blinda.osvaldova@fbi.uniza.sk, cpatrik.mitrenga@fbi.uniza.sk, dm.duskova@imc.cas.cz, echmelik@imc.cas.cz
Keywords: wood, fire, fire retardant for wood.
Intoduction The task of the Department of Fire Engineering of Faculty of Safety Engineering of the University of Žilina was an anonymous testing of the retardants efficiency, which were available at the Institute of Macromolecular Chemistry of Academy of Sciences of the Czech Republic in Prague.
Gašpercová, Ways of increasing the fire resistance of wooden structures, in: Environmental and safety aspects of fires and accidents, Materiálovotechnologická fakulta STU Trnava, AlumnilPress, 2010, pp.71-78.
Intoduction The task of the Department of Fire Engineering of Faculty of Safety Engineering of the University of Žilina was an anonymous testing of the retardants efficiency, which were available at the Institute of Macromolecular Chemistry of Academy of Sciences of the Czech Republic in Prague.
Gašpercová, Ways of increasing the fire resistance of wooden structures, in: Environmental and safety aspects of fires and accidents, Materiálovotechnologická fakulta STU Trnava, AlumnilPress, 2010, pp.71-78.
Online since: October 2012
Authors: J. Santhanalakshmi, Lakshmikanthan Parimala
Santhanalakshmib
Department of Physical Chemistry, University of Madras
Maraimalai Campus, Chennai 25, Tamil Nadu, India.
The typical XRD pattern of CuO nps is presented in the Fig. 2, the peak positions are in accordance with the JCPDS data file of phase pure monoclinic copper oxide structure.
Klabunde, Nanoscale Materials in Chemistry , John Wiley and Sons, New York, 2001
The typical XRD pattern of CuO nps is presented in the Fig. 2, the peak positions are in accordance with the JCPDS data file of phase pure monoclinic copper oxide structure.
Klabunde, Nanoscale Materials in Chemistry , John Wiley and Sons, New York, 2001