ÇáÃÈÍÇË ÇáãäÔæÑÉ (ÇáÍÏíËÉ)
Publications
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1.
“Precursor-route ZnO films from a mixed casting
solvent for high performance aqueous electrolyte -gated transistors”, Phys.
Chem. Chem. Phys., 2015,17, 31247-31252
2. “Hydrogen
Oxidation Reaction on Pd(111) Electrode in
Alkaline Media: Ab-Initio DFT Study of OH Effects”, Computational and
Theoretical Chemistry (Elsevier), 1063(63), 2015, [DOI:10.1016/j.comptc.2015.03.026]
3. “Hydrogen
Evolution Reaction on Pd(111) Electrode in Acidic Media: Ab-initio DFT Study of
Approaching H Effects”, submitted in Journal of Theoretical and
Computational Chemistry, Jan-2016.
4. United
States Patent issued and published on “Method of fastening lamellae of
a lamellar material to a suitable substrate”, US2010/0236706, dt. 23-09-2010, DOI: US 20130000833A1 (2013)
5. World
Patent issued and published on “Fixing lamella of layered material e.g.
graphite on borosilicate glass substrate, by placing sample of layered
material against substrate surface, dissociating oxides of substrate, and
subjecting substrate and sample to electric field”, WO 2009/074755, dt. 18-06-2009. French patent issued (FR2922125-A1)
dt.17-4-2009.
6. World
Patent issued and published on “A nanorod-based
device for obtaining a self-sustaining gas discharge at very low voltages”,
WO/2008/029416 dt 08-03-2008
7.
“Ambient Zinc K-Edge Extended X-Ray Absorption Fine Structure Studies on
Solid Solution Hardening of the Zn1−xBexSe Ternary Alloys”, ISRN
Spectroscopy (Hindawi), vol.2012, 623409,
2012, [DOI:10.1155/2013/623409]
8.
“EXAFS studies of novel impulsive hardening in the Be–Zn–Se semiconductor
alloys”, Accepted in Advances in Synchrotron Radiation, World
Scientific (Singapore and USA), Volume 03, 1450004 (2014) [13 pages] [DOI:
10.1142/S179361791450004X]
9. “Synthesis and characterization of two dimensional graphene
lamellae based PAn nanocomposites”, Thin Solid
Films, Vol. 519, Issue 3, 1059-1065, 2010 [DOI: 10.1016/j.tsf.2010.08.044]
10.
“High pressure x-ray diffraction and extended x-ray absorption fine
structure studies on ternary alloy Zn(1−x)BexSe”,
J. Appl. Phys. 108, 083533 (2010) [DOI:10.1063/1.3493850]
11.
“Lattice relaxation in the highly-contrasted Zn(1−x)BexSe alloy: An extended x-ray absorption fine
structure study”, J. Appl. Phys. 108, 083539 (2010) [DOI:10.1063/1.3483944]
12.
“An EXAFS study of the structure of the Zn1-xBexSe alloy system”, J.
Phys. Condensed Matter 190, 012064, 2009 [DOI: 10.1088/1742-6596/190/1/012064]
13.
“Graphene made easy: High quality, large-area samples”, Solid State
Communications, Vol 149, Issues 17-18, 718-721, 2009 [DOI:10.1016/j.ssc.2009.02.007]
14.
“Universal, geometry-driven hydrophobic behavior of bare metal nanowire
clusters”, Nanotechnology, 19, 075709, 2008 [DOI: 10.1088/0957-4484/19/7/075709]
15.
“Strained ZnSe nanostructures investigated by
x-ray diffraction, atomic force microscopy, transmission electron
microscopy and optical absorption and luminescence spectroscopy”, Nanotechnology,
15(5), 572-580, 2004 [DOI: 10.1088/0957-4484/15/5/030]
16.
“In-situ atomic force microscopic study of reverse pulse plated Cu/Co-Ni-Cu
films “, Journal of Material Science, Volume 39, Issue 5, pp.
1615-1620, 2004 [DOI: 10.1023/B:JMSC.0000016160.97771.44]
17.
“Investigation of Size Dependent Optical and Morphological Properties of Nanocrystalline ZnSe Films”, Physica (E), 16, 209, 2003 [DOI:10.1016/S1386-9477(02)00664-1]
18.
“Investigations of the alloy hardening among the Zinc-Beryllium-Selenide
ternary solid solutions”, Ultra Scientist (Phy.
Sc.), 24 (3)B, 445-451, 2012, [ISSN 2231-346X]
19.
“Studies of extended x-ray absorption fine structures of the
Zinc-Beryllium-Selenide”, Ultra Scientist (Phy.
Sc.), 24 (3)B, 405-410, 2012, [ISSN 2231-346]
20. “Extended X-ray Absorption Fine Structure Studies
of Impulsive-type Hardening in the Heavily Be-doped ZnSe
Ternaries”, Journal of Korean Physical Society (Springer), Vol. 64,
No. 4, 548-590, 2014 [DOI:10.3938/jkps.64.584]
Books and Chapters Published:
1. Javed Mazher (2012),
“Energy bands and transport phenomena among Graphene Nanostructures:
Towards understanding the Nanoelectronics of
novel Graphene Nanoribbons”, pp 1-196, Academic Verlag, Germany, ISBN: 978-3-659-28957-6, 2012
2. Javed Mazher, Asefa A. Desta
and Shabina Khan, Chapter: “PAn-Graphene-nanoribbon
composite materials for Organic Photovoltaics: A DFT Study of their
electronic and charge transport properties”, Solar Cell
Nanotechnology, Wiley (USA) (Ed. A Tiwari et. al.), pp 357-407, ISBN-13:
978-1118686256, 2014
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