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Showing 10 out of a total of 45 results for community: Materials Science and Engineering.
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Role of Interface(s) for the Growth of Ultra-Thin Amorphous Oxides on Al–Si Alloys: A Thermodynamic Analysis
Panda, Emila
;
Manwani, Krishna
(
Wiley
,
2014-02
)
Role of interface(s) for the growth of ultra-thin amorphous oxides on Al-Si alloys
Panda, Emila
;
Manwani, Krishna
(
2013-06-30
)
Epitaxial ferroelectric Pb(Mg1/3Nb2/3)O3-PbTiO3 thin films on La0.7Sr0.3MnO3 bottom electrode
Chopra, A.
;
Panda, Emila
;
Kim, Y.
;
Arredondo, M.
;
Hesse, D.
(
Springer
,
2014-06
)
A high-resolution transmission electron microscopy analysis to understand the growth of multi phase oxide-films due to thermal oxidation of Al-Mg alloys
Panda, Emila
(
Electron Microscope Society of India
,
2014-07
)
Thermodynamics of interface formation between Hexa-Peri Hexabenzocoronene and Cupric oxide
Manwani, Krishna
;
Panda, Emila
(
Elsevier
,
2015-02
)
Study of nanoscale local conductance of Al doped ZnO thin films with varying substrate temperature using Conducting probe atomic force microscopy
Patel, Tvarit
;
Singh, Chetan C.
;
Panda, Emila
(
European Materials Research Society
,
2014-09-15
)
Relation between surface and bulk electronic properties of Al doped ZnO films deposited at varying substrate temperature by radio frequency magnetron sputtering
Singh, Chetan C.
;
Patel, Tvarit
;
Panda, Emila
(
AIP Publishing
,
2015-06
)
Stability of ultra-thin oxide overgrowths on binary Al–Si alloy substrate
Ajmera, Darshan
;
Panda, Emila
(
Springer US
,
2016-05
)
Interpreting the surface electrical heterogeneity of Al-doped ZnO films
Singh, Chetan C.
;
Patel, Tvarit
;
Panda, Emila
(
Indian Institute of Science
,
2015-12
)
Relating surface and bulk electronic properties of Al-doped ZnO films deposited at varying substrate temperature by RF magnetron sputtering
Singh, Chetan C.
;
Patel, Tvarit
;
Panda, Emila
(
Materials Research Society
,
2015-07
)
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Panda, Emila (45)
Patel, Tvarit (12)
Manwani, Krishna (10)
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Al-doped ZnO (3)
Oxidation (3)
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Conductive AFM (2)
Electronic structure (2)
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