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Online since: November 2011
Authors: Yu Ping Ge
In this paper, a new micro-flow control structure was designed firstly.
The cofferdam structure in Fig3 was prepared and was shown in Fig. 4.
Fig. 3 Designed NEMS micro-control cofferdam structure on PS material Fig. 4 The prepared cofferdam structure System Analysis Modeling and Implementation.
By ANSYS simulation the micro fluidic cofferdam structure can be optimized.
Materials Chemistry and Physics., Vol.82, (2003): 134-139
The cofferdam structure in Fig3 was prepared and was shown in Fig. 4.
Fig. 3 Designed NEMS micro-control cofferdam structure on PS material Fig. 4 The prepared cofferdam structure System Analysis Modeling and Implementation.
By ANSYS simulation the micro fluidic cofferdam structure can be optimized.
Materials Chemistry and Physics., Vol.82, (2003): 134-139
Online since: July 2020
Authors: Zi Xuan Wang, Hong Xu Niu, Hong Xia Yu, Si Ping Pang, Yu Chuan Li
The zigzag chain structure of 5 is shown in Fig. 3.
In addition to the previously reported crystal structure of 3,5-dibromo-1H-1,2,4-triazole (6), the crystal structure of 3,5-dibromo-4H-1,2,4-triazole (7) was also obtained, both of them formed a cyclic trimer structure.
By intermolecular hydrogen bonding, 5 formed a rarely reported tortuous chain structure, while 6 and 7 form a cyclic trimeric structure.
Klapötke, D.G.Piercey, et al., Synthesis of 5-aminotetrazole-1N-oxide and its azo derivative: a key step in the development of new energetic materials, Chemistry (Weinheim an der Bergstrasse, Germany) 19 (14) (2013) 4602-4613
Brown, et al., Metal–Organic Frameworks (MOFs) as Safer, Structurally Reinforced Energetics, Chemistry (Weinheim an der Bergstrasse, Germany) 19 (5) (2013) 1706-1711
In addition to the previously reported crystal structure of 3,5-dibromo-1H-1,2,4-triazole (6), the crystal structure of 3,5-dibromo-4H-1,2,4-triazole (7) was also obtained, both of them formed a cyclic trimer structure.
By intermolecular hydrogen bonding, 5 formed a rarely reported tortuous chain structure, while 6 and 7 form a cyclic trimeric structure.
Klapötke, D.G.Piercey, et al., Synthesis of 5-aminotetrazole-1N-oxide and its azo derivative: a key step in the development of new energetic materials, Chemistry (Weinheim an der Bergstrasse, Germany) 19 (14) (2013) 4602-4613
Brown, et al., Metal–Organic Frameworks (MOFs) as Safer, Structurally Reinforced Energetics, Chemistry (Weinheim an der Bergstrasse, Germany) 19 (5) (2013) 1706-1711
Online since: June 2010
Authors: Iskandar Idris Yaacob, Seoh Hian Teh
Crystallographic structures of the Fe-Pt films were investigated using a Philips X'pert MPD PW3040
XRD with Cu-Kα (λ= 1.5418Å) radiation.
This may be a result of Co atom occupying Fe site in Co-Fe-Pt alloy crystal structure (rFe=0.126nm, rCo=0.125nm) [7].
SEM images (Fig. 2) show that all the Fe-Pt and Co-Fe-Pt alloy films form granular structures.
Cheetham: The Chemistry of Nanomaterials, Vol 1, Wiley-VCH Verlag CmbH & Co., Germany, (2004), p.1
Holler, Fundamental of Analytical Chemistry, 7th ed., Saunders College Publishing, Philadelphia, (1996), p.
This may be a result of Co atom occupying Fe site in Co-Fe-Pt alloy crystal structure (rFe=0.126nm, rCo=0.125nm) [7].
SEM images (Fig. 2) show that all the Fe-Pt and Co-Fe-Pt alloy films form granular structures.
Cheetham: The Chemistry of Nanomaterials, Vol 1, Wiley-VCH Verlag CmbH & Co., Germany, (2004), p.1
Holler, Fundamental of Analytical Chemistry, 7th ed., Saunders College Publishing, Philadelphia, (1996), p.
Online since: November 2016
Authors: Soumya Ranjan Patra, B. Mallick, S.K. Samal, S.C. Mishra, P. Pattojoshi, T.N. Tiwari
The sizes of the dot-in-rods structures were determined by high- resolution microscopic analysis.
The dark and bright regions of the SEM micrograph clearly indicate the two-phase structure of the fibre sample.
The bright part of the magnified fibre image shows high crystalline structure (Figure 3).
The CdSe-CdS quantum dot-in-rods coated M. pudica fibres show a honeycomb structure of the nano-material.
Pierce, C.Amiot, X.Zhao, Synthesis and Reactivity in Inorganic Metal-Organic and Nano-Metal Chemistry.35 (2005)661-668
The dark and bright regions of the SEM micrograph clearly indicate the two-phase structure of the fibre sample.
The bright part of the magnified fibre image shows high crystalline structure (Figure 3).
The CdSe-CdS quantum dot-in-rods coated M. pudica fibres show a honeycomb structure of the nano-material.
Pierce, C.Amiot, X.Zhao, Synthesis and Reactivity in Inorganic Metal-Organic and Nano-Metal Chemistry.35 (2005)661-668
Online since: April 2005
Authors: Milan Svoboda, Petr Lukáš, Ludvík Kunz, J. Čadek
Effect of Structure on Creep Behaviour of Superalloy Single Crystals
P.
Dislocation structure after creep exposure is shown in Fig.5 for CMSX-4 and in Fig.6 for CM186LC.
Dislocation structure in crept specimen of CMSX-4; σa = 500 MPa.
Dislocation structure in crept specimen of CM186LC; σa = 500 MPa.
Chemistry Physics Vol. 81 (2003), p. 427
Dislocation structure after creep exposure is shown in Fig.5 for CMSX-4 and in Fig.6 for CM186LC.
Dislocation structure in crept specimen of CMSX-4; σa = 500 MPa.
Dislocation structure in crept specimen of CM186LC; σa = 500 MPa.
Chemistry Physics Vol. 81 (2003), p. 427
Online since: November 2012
Authors: Bożena Jasińska, Irena Wawrzycka-Gorczyca, Maciej Tydda, Anna E. Kozioł
Marii Curie Sklodowskiej 1,
20-031 Lublin, Poland,
2Faculty of Chemistry, Maria Curie Sklodowska University, Pl.
Molecules located inside the voids in the structure caused the changing of the o-Ps lifetime and intensity.
After removing the n-butanol●H2O molecules, the materials returned to its initial structure.
It can also be useful in the investigation of any kind of voids in the material, such as vacancy type defects, imperfections of the structure near the admixtures in the matrix, or natural free spaces in the crystalline structure.
Crystallographic structure of olanzapine, form II.
Molecules located inside the voids in the structure caused the changing of the o-Ps lifetime and intensity.
After removing the n-butanol●H2O molecules, the materials returned to its initial structure.
It can also be useful in the investigation of any kind of voids in the material, such as vacancy type defects, imperfections of the structure near the admixtures in the matrix, or natural free spaces in the crystalline structure.
Crystallographic structure of olanzapine, form II.
Online since: October 2011
Authors: K.A. Iskakova, R.F. Akhmaltdinov
(Abstract)
Crystallographic structure of Fe is BCC addiction bars [1].
These groups are limited to ten sphere structure.
In the ionic compound NaCl Na and Cl atoms make up the lattice FCC-structure (although the crystal structure of Na is BCC-structure, and the Cl — complex structure).
Iskakova K.A., Ahmaltdinov R.F., Possibilities of the modifications of the method of calculation of wave function and zonal spectrum of crystal structure, PCI-2010 «12th International Conference on the Physics and Chemistry of Ice».
Iskakova K.A., Ahmaltdinov R.F., Modelling and calculation of FCC structures and principles of the algorithm structure Si, 88th annual meeting of the German Mineralogical Society, 19–22.
These groups are limited to ten sphere structure.
In the ionic compound NaCl Na and Cl atoms make up the lattice FCC-structure (although the crystal structure of Na is BCC-structure, and the Cl — complex structure).
Iskakova K.A., Ahmaltdinov R.F., Possibilities of the modifications of the method of calculation of wave function and zonal spectrum of crystal structure, PCI-2010 «12th International Conference on the Physics and Chemistry of Ice».
Iskakova K.A., Ahmaltdinov R.F., Modelling and calculation of FCC structures and principles of the algorithm structure Si, 88th annual meeting of the German Mineralogical Society, 19–22.
Composition Limy Binder with the Use of the Synthesized Aluminosilicates for Dry Construction Blends
Online since: June 2014
Authors: Valentina Loganina, Ludmila V. Makarova, Roman V. Tarasov, Marija A. Sadovnikova
Structures with the water lily relation W/L equal W/L=1/1 was prepared.
Davydova: The limy finishing structures based on sol-gel technology.
Papsheva: The influence of technology of synthesis of silicate fillers on properties of limy finishing structures.
Sadovnikova: Limy finishing structures with use of the synthesized aluminosilicates.
Yustratov: The colloid chemistry.
Davydova: The limy finishing structures based on sol-gel technology.
Papsheva: The influence of technology of synthesis of silicate fillers on properties of limy finishing structures.
Sadovnikova: Limy finishing structures with use of the synthesized aluminosilicates.
Yustratov: The colloid chemistry.
Online since: November 2011
Authors: An Ning Zhou, Bo Liu, Wei Xu
Effects of coal on the structure and properties of coal/LDHs composites
AN Ning Zhou1, a, BO Liu1, b and WEI Xu1, c
1 College of Chemistry and Chemical Engineering, Xi’an University of Science and Technology, Xi’an, Shaanxi 710054, China
azhouanning2004@yahoo.com.cn, bboliu_xust@yahoo.cn, cw7468369@163.com
Keywords: LDHs, Coal, Template synthesis, Thermal stability
Abstract.
Coal has complicated macromolecular network structure, porous structure and various acidic functional groups [4].
Due to the basic network structure of organic residues, particle agglomeration was found in the recovery products.
ZnAl-LDOs with layer structure can be seen in the products calcined at 450℃, while the heat-resistant coal char covered the solid particles at 420℃, and ZnAl-LDHs were predicted to decomposition with the layer structure collapsed at 500℃.
Li, Development of coal structure, Coal Convers. 24 (2001), 1-6
Coal has complicated macromolecular network structure, porous structure and various acidic functional groups [4].
Due to the basic network structure of organic residues, particle agglomeration was found in the recovery products.
ZnAl-LDOs with layer structure can be seen in the products calcined at 450℃, while the heat-resistant coal char covered the solid particles at 420℃, and ZnAl-LDHs were predicted to decomposition with the layer structure collapsed at 500℃.
Li, Development of coal structure, Coal Convers. 24 (2001), 1-6
Online since: October 2011
Authors: Lu Ning Xu, Jun Biao Liu, Han Li
Otherwise, the state of this series structure is ‘OFF’.
The numbers in Fig.4 denote the series valves structure (401), the row control line of the series structure (402), and the column control line of the series structure (403) separately.
If the state of its ‘column valve’ is ‘ON’, the final state of this series structure is ‘ON’, the input of the series valves structure can go through.
Analytical Chemistry(2005) 77(7): p. 2266-2271
Analytical Chemistry(2005) 77(15): p. 4726-4733.
The numbers in Fig.4 denote the series valves structure (401), the row control line of the series structure (402), and the column control line of the series structure (403) separately.
If the state of its ‘column valve’ is ‘ON’, the final state of this series structure is ‘ON’, the input of the series valves structure can go through.
Analytical Chemistry(2005) 77(7): p. 2266-2271
Analytical Chemistry(2005) 77(15): p. 4726-4733.