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Online since: June 2014
Authors: Wei Li, Yan Shi, Chun Li Song
Optimize the Energy Structure and Improve Energy Efficiency.
Coal accounts for 70% in the structure of China's energy consumption, while oil, natural gas and other clean energy have a very low proportion.
Adjust the current energy structure and reduce total coal consumption.
Atmospheric Chemistry and Physics, 2011, 11(15): 8205-8214
Atmospheric Chemistry and Physics, 2011, 11(15): 8205-8214
Coal accounts for 70% in the structure of China's energy consumption, while oil, natural gas and other clean energy have a very low proportion.
Adjust the current energy structure and reduce total coal consumption.
Atmospheric Chemistry and Physics, 2011, 11(15): 8205-8214
Atmospheric Chemistry and Physics, 2011, 11(15): 8205-8214
Online since: July 2011
Authors: Yong Jiang Yu, Xiao Jun Zhao, Li Zhong Zhang, Lin Lin Xu, Guo Dong Shi
Then, this metal structure was connected appropriately according to the body-centered cubic structure to from a new type of spherical porous metal.
Step three: control the structure of closed and through hole by using stamping die.
Step four: welding the hemisphere shell to a spherical pore layer structure.
The 8-layer hemispheric layers can be linked into a cubic structure which is similar to a body-centered cubic structure, and then a porous metal with a flat layer can be obtained, as shown in Fig. 2 and Fig. 3.
Science in China, (Series B:Chemistry). 34(2004) 168-176
Step three: control the structure of closed and through hole by using stamping die.
Step four: welding the hemisphere shell to a spherical pore layer structure.
The 8-layer hemispheric layers can be linked into a cubic structure which is similar to a body-centered cubic structure, and then a porous metal with a flat layer can be obtained, as shown in Fig. 2 and Fig. 3.
Science in China, (Series B:Chemistry). 34(2004) 168-176
Online since: November 2011
Authors: Bin Zhang, Xiao Ning Tang
Other advantages of this material are its loose and dispersive structure.
Morphological Structure.
The morphological structure of Ag-La-inorganic antibacterial material is loose and dispersive.
Structure and antibacterial activity of Ce3+ exchanged montmorillonites.
European Journal of Medicinal Chemistry, In Press, Accepted Manuscript, Available online 29 March 2010 [7] Sarah Fox, Tom S.
Morphological Structure.
The morphological structure of Ag-La-inorganic antibacterial material is loose and dispersive.
Structure and antibacterial activity of Ce3+ exchanged montmorillonites.
European Journal of Medicinal Chemistry, In Press, Accepted Manuscript, Available online 29 March 2010 [7] Sarah Fox, Tom S.
Online since: September 2013
Authors: Shao Yin Zhang, Li Jian Liu, Da Zhi Wang, Tong Kuan Xu, Lin Jia, Feng Ding
The chemical structures of PASAs were characterized by FTIR, 1HNMR.
The chemical structures of wholly Aromatic PASAs were characterized by FTIR, 1HNMR.
The structures of obtained PASAs were demonstrated by FTIR, 1HNMR.
The investigation indicated that these functional polymers in which there are both amide and sulfonamide linkages along the polymer main chains possessed distinctive structure as well as unique properties such as thermal properties.
Chinese Journal of Synthetic Chemistry 2007; 15: 378~379
The chemical structures of wholly Aromatic PASAs were characterized by FTIR, 1HNMR.
The structures of obtained PASAs were demonstrated by FTIR, 1HNMR.
The investigation indicated that these functional polymers in which there are both amide and sulfonamide linkages along the polymer main chains possessed distinctive structure as well as unique properties such as thermal properties.
Chinese Journal of Synthetic Chemistry 2007; 15: 378~379
Online since: February 2015
Authors: Yan Yan Pang, Ying Zhao, Yu Yang, Chang Feng Sun
China
2College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, P.
The uncoordinated water molecules are stabilized in the structure through hydrogen bonds (Fig. 1c).
Fig. 1, Crystal structure of 1.
(b) The 1D chain structure.
The uncoordinated water molecules are stabilized in the structure through hydrogen bond interactions, which have reinforced the 2D network structure.
The uncoordinated water molecules are stabilized in the structure through hydrogen bonds (Fig. 1c).
Fig. 1, Crystal structure of 1.
(b) The 1D chain structure.
The uncoordinated water molecules are stabilized in the structure through hydrogen bond interactions, which have reinforced the 2D network structure.
Online since: April 2025
Authors: Madhavi Sharad Darekar, Praveen Beekanahalli Mokshanatha
The surface chemistry of the nanoparticles can be tailored to achieve specific functionalities by selecting appropriate non-aqueous solvents and capping agents.
The XRD spectra were recorded to confirm the crystal structure and phase purity of the nanoparticles.
The XRD analysis of Mn doped Cu2S thin films showed their polycrystalline nature and the hexagonal-wurtzite structure.
Zhang, Wet-chemical synthesis and applications of non-layer structured two-dimensional nanomaterials, Nat.
V-Nestor, I.G-Orozco, Copper sulphide nanoparticles produced by the reaction of N-alkyldithiocarbamatecopper(II) complexes with sodium borohydride, Materials Chemistry and Physics 269 (2021) 124743
The XRD spectra were recorded to confirm the crystal structure and phase purity of the nanoparticles.
The XRD analysis of Mn doped Cu2S thin films showed their polycrystalline nature and the hexagonal-wurtzite structure.
Zhang, Wet-chemical synthesis and applications of non-layer structured two-dimensional nanomaterials, Nat.
V-Nestor, I.G-Orozco, Copper sulphide nanoparticles produced by the reaction of N-alkyldithiocarbamatecopper(II) complexes with sodium borohydride, Materials Chemistry and Physics 269 (2021) 124743
Online since: February 2021
Authors: Rashed T. Rasheed, Liblab S. Jassim, Shaymaa H. Khazaal, Hamsa A. Easa
Khazaal1,d
1Applied Chemistry Branch, Applied Sciences Department, University of Technology, Baghdad, Iraq.
Atomic Force Microscopy (AFM), Scanning Electron Microscopy (SEM), Fourier Transform Infrared Spectroscopy (FTIR), and UV-Visible Spectroscopy spectrum was used to define the structure, average crystallize, and morphology.
We characterized the structures of CuO powders using X-ray diffraction (XRD) (Fig. 1) at different annealing temperatures (100 °C to 600 °C) at room temperature for (6 hours).
Ackmowledgements All authors thank the University of Technology, Department of Applied Sciences/ Division of Applied Chemistry for all helps to complete this research.
Song, One-step self-assembled synthesis of CuO with tunable hierarchical structures and their electrocatalytic properties for nitrite oxidation in aqueous media.
Atomic Force Microscopy (AFM), Scanning Electron Microscopy (SEM), Fourier Transform Infrared Spectroscopy (FTIR), and UV-Visible Spectroscopy spectrum was used to define the structure, average crystallize, and morphology.
We characterized the structures of CuO powders using X-ray diffraction (XRD) (Fig. 1) at different annealing temperatures (100 °C to 600 °C) at room temperature for (6 hours).
Ackmowledgements All authors thank the University of Technology, Department of Applied Sciences/ Division of Applied Chemistry for all helps to complete this research.
Song, One-step self-assembled synthesis of CuO with tunable hierarchical structures and their electrocatalytic properties for nitrite oxidation in aqueous media.
Online since: May 2021
Authors: A.S. Zhukov, V.N. Klimov, A.N. Skvortsova
At various scanning speeds and laser powers, samples were made to study the structure, magnetic and mechanical parameters.
These data made it possible to select the necessary range of elements and their concentrations for the analyzer in the "wet chemistry" method.
Surface etching to reveal the structure was performed in a 10% aqueous solution of oxalic acid [15].
The fractures of the samples have a pronounced crystalline structure.
Adkins et al., Influence of processing conditions on structure and compressive properties of cellular lattice structures fabricated by selective laser melting, Materials Science & Engineering A628 (2015) 188–197
These data made it possible to select the necessary range of elements and their concentrations for the analyzer in the "wet chemistry" method.
Surface etching to reveal the structure was performed in a 10% aqueous solution of oxalic acid [15].
The fractures of the samples have a pronounced crystalline structure.
Adkins et al., Influence of processing conditions on structure and compressive properties of cellular lattice structures fabricated by selective laser melting, Materials Science & Engineering A628 (2015) 188–197
Online since: January 2005
Authors: Wing Yiu Yeung, Richard Wuhrer, M. Berkahn, E.J. Van Der Kolff
Yeung
1
1Department of Chemistry, Materials and Forensic Science,
2
Microstructural Analysis Unit, University
of Technology, Sydney, P.O.
Nano- and submicron-structured aluminium was produced by equal channel angular extrusion with a total strain of ~17.
After subsequent heat treatments, the grain structures of the metal became well defined and equiaxed.
The typical grain structure after annealing at 100 o C was shown in Figure 2(b).
Transmission electron microscopy also revealed that a fine grained structure was retained.
Nano- and submicron-structured aluminium was produced by equal channel angular extrusion with a total strain of ~17.
After subsequent heat treatments, the grain structures of the metal became well defined and equiaxed.
The typical grain structure after annealing at 100 o C was shown in Figure 2(b).
Transmission electron microscopy also revealed that a fine grained structure was retained.
Online since: April 2013
Authors: Xu Zhang, Meng Chen, Jiang Bo Duan, Chang Yu, Jieshan Qiu
It has been found that the MCSs materials with hierarchical porous structure can be synthesized only from the pre-oxidized porous starch by the catalytic carbonization technique, evidenced that the pre-oxidation of carbon source is a dominating factor governing the formation of MCs with hierarchical pore structure.
It has been found that the key factors impacting the performances of the MCs are their porous structure and surface chemistry properties.
This leads to the new possibility of making carbon materials with different structures and properties, which has been partly demonstrated by the fact that carbon materials with mesoporous structure and good catalytic performances are successfully synthesized from the starch [11, 12].
These pores on the MCSs surface are the macropores of MCSs with hierarchical pore structure.
The pore structure parameters of the as-made MCs samples are summarized in Table 1.
It has been found that the key factors impacting the performances of the MCs are their porous structure and surface chemistry properties.
This leads to the new possibility of making carbon materials with different structures and properties, which has been partly demonstrated by the fact that carbon materials with mesoporous structure and good catalytic performances are successfully synthesized from the starch [11, 12].
These pores on the MCSs surface are the macropores of MCSs with hierarchical pore structure.
The pore structure parameters of the as-made MCs samples are summarized in Table 1.