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Online since: July 2019
This conference focused on advanced materials research in the forward-looking R&D domains where the intersection of key technologies in areas such as nano and micro-technology, biotechnology, stealth materials, smart materials and structures, and energy generation and storage is being explored.
He is the head of the Fibrous Materials Research Group of the same university with expertise in advanced materials (nano, smart, composites) and structures (3D, auxetic, multiscale) with 45 researchers.
He has been a key researcher in developing ‘multi-functional and bio-based hierarchical composites’ and high performance ‘auxetic structures and composites’ for personal protection applications.
Rana has edited a number of books on advanced textile and composite materials with the leading publishers, among which “Advanced Composites in Aerospace Engineering” (Woodhead Publishing), “Braided Structures and Composites” (CRC Press), “Fibrous and Textile Materials for Composite Applications” (Springer) received well recognition within the scientific community.
Journal of Nanomaterials, Key Engineering Materials, International Journal of Polymer Science, Journal of Biobased Materials and Bioenergy, Advances in Polymer Technology, etc.) and is a potential reviewer for numerous scientific journals including Green Chemistry, Carbohydrate Polymers, Composite Science and Technology, Composites Part A & B, Dyes and Pigments, RSC Advances, Composite Interfaces, Journal of Composite Materials, Journal of Reinforced Plastics and Composites, Powder Technology, Journal of Nanomaterials, Journal of Applied Polymer Science, Fibres and Polymers, and so on.
He is the head of the Fibrous Materials Research Group of the same university with expertise in advanced materials (nano, smart, composites) and structures (3D, auxetic, multiscale) with 45 researchers.
He has been a key researcher in developing ‘multi-functional and bio-based hierarchical composites’ and high performance ‘auxetic structures and composites’ for personal protection applications.
Rana has edited a number of books on advanced textile and composite materials with the leading publishers, among which “Advanced Composites in Aerospace Engineering” (Woodhead Publishing), “Braided Structures and Composites” (CRC Press), “Fibrous and Textile Materials for Composite Applications” (Springer) received well recognition within the scientific community.
Journal of Nanomaterials, Key Engineering Materials, International Journal of Polymer Science, Journal of Biobased Materials and Bioenergy, Advances in Polymer Technology, etc.) and is a potential reviewer for numerous scientific journals including Green Chemistry, Carbohydrate Polymers, Composite Science and Technology, Composites Part A & B, Dyes and Pigments, RSC Advances, Composite Interfaces, Journal of Composite Materials, Journal of Reinforced Plastics and Composites, Powder Technology, Journal of Nanomaterials, Journal of Applied Polymer Science, Fibres and Polymers, and so on.
Online since: February 2011
Authors: Zhan Sheng Lu, Kersti Hermansson, Zong Xian Yang
First-principles electronic structures calculations of the adsorption properties of Cu and Ni on the ceria(111) surface are presented.
The structure optimizations were performed until the force on each atom less than 0.02 eV/Å.
The slab was cut from the bulk cubic fluorite-type (Fm3m) structure with a lattice parameter of 5.480 Å (at the PBE+U level).
It turns out that some of the trial adsorption sites converged to the same final structures, resulting in several different final structures for the Cu-ceria and Ni-ceria systems, respectively.
Hermansson, The Journal of Physical Chemistry C, Vol. 114 (2010), p. 4486
The structure optimizations were performed until the force on each atom less than 0.02 eV/Å.
The slab was cut from the bulk cubic fluorite-type (Fm3m) structure with a lattice parameter of 5.480 Å (at the PBE+U level).
It turns out that some of the trial adsorption sites converged to the same final structures, resulting in several different final structures for the Cu-ceria and Ni-ceria systems, respectively.
Hermansson, The Journal of Physical Chemistry C, Vol. 114 (2010), p. 4486
Online since: May 2023
Authors: Fereshteh Fathi, Nazanin Farhadyar, Mohammad Shokrzadeh, Farzaneh Motafeghi
The peaks at 1639.49 and 1458.18cm-1indicated the existence of carbonate group in the structure.
Fig. 4 indicates the pure nHAP has more packed surface with rugged surface structure.
As can be seen in the SEM image Fig. 4b, many cluster-shaped aggregations with distributed pore structures are found in the composite scaffold.
Fabrication of Hydroxyapatite/Cellulose Fiber Composite with Sheet-Like Structure, Key Engineering Materials, (2018), Trans Tech Publ
Journal of Materials Chemistry B. 2018;6(45):7427-38
Fig. 4 indicates the pure nHAP has more packed surface with rugged surface structure.
As can be seen in the SEM image Fig. 4b, many cluster-shaped aggregations with distributed pore structures are found in the composite scaffold.
Fabrication of Hydroxyapatite/Cellulose Fiber Composite with Sheet-Like Structure, Key Engineering Materials, (2018), Trans Tech Publ
Journal of Materials Chemistry B. 2018;6(45):7427-38
Online since: July 2019
Authors: Tomasz Tański, Weronika Smok, Wiktor Matysiak
These requirements are met by natural polymers that have a similar or almost identical macromolecular structure to substances found in the human body.
Reller, Photoinducted reactivity of titanium dioxide, Progress in Solid State Chemistry, 32 (2004) 33-177
Azman, Study of electrospun PVA-based concentrations nanofibre filled with Bi2O3 or WO3 as potential x-ray shielding material, Radiation Physics and Chemistry, 156 (2019) 272-282
Hilal, A review on membrane fabrication: structure, properties s and performance relationship.
Ko, Electrospun nanofibrous structure: a novel scaffold for tissue engineering, Journal of Biomedical Materials Research, 60 (2002) 612-621
Reller, Photoinducted reactivity of titanium dioxide, Progress in Solid State Chemistry, 32 (2004) 33-177
Azman, Study of electrospun PVA-based concentrations nanofibre filled with Bi2O3 or WO3 as potential x-ray shielding material, Radiation Physics and Chemistry, 156 (2019) 272-282
Hilal, A review on membrane fabrication: structure, properties s and performance relationship.
Ko, Electrospun nanofibrous structure: a novel scaffold for tissue engineering, Journal of Biomedical Materials Research, 60 (2002) 612-621
Online since: February 2019
Authors: Jaraslak Pechwang, Uraiwan Werapun
In addition, iron ions can be incorporated into the TiO2 crystal structure.
Photobiol., A: Chemistry, 106 (1997) 51-56
Photobiol., A: Chemistry, 165 (2004) 241-246
Photobiol., A: Chemistry, 222 (2011) 159-165
Photobiol., A: Chemistry, 202 (2009) 92-98.
Photobiol., A: Chemistry, 106 (1997) 51-56
Photobiol., A: Chemistry, 165 (2004) 241-246
Photobiol., A: Chemistry, 222 (2011) 159-165
Photobiol., A: Chemistry, 202 (2009) 92-98.
Online since: February 2023
Authors: Bin Hu, Ting Wang, Yan Zhang, Shi Ping Luo, Xiao Xing He
And many industrial structures cannot install optical system due to the limitation of testing equipment.
Chemistry of Materials, 2015, 27(21): 7481-7489
Physical Chemistry Chemical Physics, 2016, 19(2):1190-1208
Journal of Materials Chemistry C, 2019, 7: 8070-8078
Chinese Journal of Organic Chemistry, 2020, 40(11):17
Chemistry of Materials, 2015, 27(21): 7481-7489
Physical Chemistry Chemical Physics, 2016, 19(2):1190-1208
Journal of Materials Chemistry C, 2019, 7: 8070-8078
Chinese Journal of Organic Chemistry, 2020, 40(11):17
Online since: April 2008
Authors: D.A. Chinakhov, E.P. Agrenich
. +7(384-51) 6-26-83,
zver73@rambler.ru
Keywords: welding of alloyed steels, model, thermo-mechanical processes, simulation of weld
geometry, structure, properties.
Structure and properties of welding joints made from the steel 30ХГСА are connected with technological process of welding and depend on rates chosen (welding rate, arc voltage, welding current capacity, preheating temperature, heat treatment temperature etc.)
The model can be used to investigate the influence of processing factors on the processes in the welding pool, structure and operating properties of welds, forecasting operating properties of welds in industry and engineering design of welded structures and in training students of technological higher educational institutions.
Theory of welding processes (with fundamentals of physical chemistry).
Structure and properties of welding joints made from the steel 30ХГСА are connected with technological process of welding and depend on rates chosen (welding rate, arc voltage, welding current capacity, preheating temperature, heat treatment temperature etc.)
The model can be used to investigate the influence of processing factors on the processes in the welding pool, structure and operating properties of welds, forecasting operating properties of welds in industry and engineering design of welded structures and in training students of technological higher educational institutions.
Theory of welding processes (with fundamentals of physical chemistry).
Online since: June 2011
Authors: Jiang Shen, Chuan Hui Zhang, Qi Pen
It is well known that metal clusters are attraction today in physics and chemistry because of their novel geometry structures and electronic properties, as the size of the clusters grows, it bridges the gap between bulk and atomic properties of matter [1].
So whether the high symmetry structures are the ground state structures of Lun clusters, it needs to be discussed.
Their BE are all larger than tetrahedron structure, so these structures are unstable.
But (14-d) and (14-e) have large distortions, the initial structure of (14-d) is a layered structure of bicapped on the initial structure of (12-b), and the initial structure of (14-e) is a hexagonal prism with two atoms capped on top and bottom sides.
Lide: CRC Handbook of Chemistry and Physics 78th ed (CRC, Boca Raton, FL, USA 1997) [30] W.J.
So whether the high symmetry structures are the ground state structures of Lun clusters, it needs to be discussed.
Their BE are all larger than tetrahedron structure, so these structures are unstable.
But (14-d) and (14-e) have large distortions, the initial structure of (14-d) is a layered structure of bicapped on the initial structure of (12-b), and the initial structure of (14-e) is a hexagonal prism with two atoms capped on top and bottom sides.
Lide: CRC Handbook of Chemistry and Physics 78th ed (CRC, Boca Raton, FL, USA 1997) [30] W.J.
Online since: April 2018
Authors: Deepika Jamwal, Dolly Rana, Ashish Soni, Anita Sharma, Akash Katoch
In sp2 hybridization, carbon can form a variation of wonderful structures.
The first such structure i.e.
Viswanath, The processing of CdSe/polymer nanocomposites via solution organometallic chemistry,Mater.
Chvalun, Structure of nanocomposites based on lead sulfide and poly-p-xylylene, J.
Single walled and multi walled carbon nanotube structure, synthesis and applications.
The first such structure i.e.
Viswanath, The processing of CdSe/polymer nanocomposites via solution organometallic chemistry,Mater.
Chvalun, Structure of nanocomposites based on lead sulfide and poly-p-xylylene, J.
Single walled and multi walled carbon nanotube structure, synthesis and applications.
Online since: October 2024
Authors: Aorigele Bohnuud, Gerile Naren, Wen Hui Liu, Jia Rui Zhang
The compositions, structures, and photophysical properties of these compounds were tested.
Their compositions, structures, and photophysical properties were tested and characterized.
Their composition, structure, and optical properties were analyzed using XRD, UV-Vis, SEM, FT-IR, and other techniques.
Study of the Electronic Structure and Optical Properties of Rare Earth Luminescent Materials.
Arabian Journal of Chemistry, 14(2021)1-11
Their compositions, structures, and photophysical properties were tested and characterized.
Their composition, structure, and optical properties were analyzed using XRD, UV-Vis, SEM, FT-IR, and other techniques.
Study of the Electronic Structure and Optical Properties of Rare Earth Luminescent Materials.
Arabian Journal of Chemistry, 14(2021)1-11