Zobrazeno 1 - 10
of 26
pro vyhledávání: '"Mallya, RM"'
Publikováno v:
IndraStra Global.
Because of the wide variety of projected applications of ultrapure nitrides in advanced technologies, there is interest in developing new cost-effective methods of synthesis. Explored in this study is the use of ammonia and hydrazine for the synthesi
Publikováno v:
IndraStra Global.
Hydrogen plasma can be used for deoxidation of functional materials containing reactive metals in both bulk and thin film forms. Since the different species in the plasma are not in thermodynamic equilibrium, application of classical thermodynamics t
Publikováno v:
IndraStra Global.
Oxidation of silver using microwave-induced oxygen plasma and oxygen-ozone gas mixture was studied as a function of temperature and partial pressure. The oxide $Ag_2O$ was formed at temperatures well above its normal decomposition temperature in oxyg
Publikováno v:
IndraStra Global.
Publikováno v:
IndraStra Global.
Sintering of titanium in its high temperature beta phase was studied by isothermal dilatometry. The sintering shrinkage y did not follow the normal time exponent type of behaviour, instead being described by the equation y = Kt(m)/[1-(A+Bt)(2)], wher
Publikováno v:
IndraStra Global.
Novel ferroelectric bismuth vanadate, {Bi_2VO_{5.5}} (BVO), thin films have been grown between lattice matched metallic {LaNiO_3} (LNO) layers deposited on {SrTiO_3} (STO) by the pulsed laser deposition technique. LNO/BVO/LNO/STO and Au/BVO/LNO/STO t
Autor:
Satyalakshmi, KM, Mallya, RM, Ramanathan, KV, Wu, XD, Brainard, B, Gautier, DC, Vasanthacharya, NY, Hegde, MS
Publikováno v:
IndraStra Global.
Epitaxial LaNiO3(LNO) thin films on LaAlO3(LAO), SrTiO3(STO), and YSZ are grown by pulsed laser deposition method at 350 mTorr oxygen partial pressure and 700 °C substrate temperature. As‐deposited LNO films are metallic down to 10 K. c‐axis ori
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Publikováno v:
IndraStra Global.
Commercial-grade En40B steel has been ion nitrided in the temperature range 475–550°C in a 25%N2–75%H2 gas mixture. The nature of the compound layer formed was studied by the X-ray diffraction technique and optical metallography. It was observed
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=issn23813652::7334d3d005189653f94912aba9d34546
http://eprints.iisc.ac.in/22579/1/http___www.sciencedirect.com_science__ob=MImg&_imagekey=B759M-48K78XB-9R-1&_cdi=12958&_user=512776&_orig=search&_coverDate=02%2F28%2F1986&_sk=999219998&view=c&wchp=dGLzVzz-zSkzV&md5=cc0fe24ed2a2e.pdf
http://eprints.iisc.ac.in/22579/1/http___www.sciencedirect.com_science__ob=MImg&_imagekey=B759M-48K78XB-9R-1&_cdi=12958&_user=512776&_orig=search&_coverDate=02%2F28%2F1986&_sk=999219998&view=c&wchp=dGLzVzz-zSkzV&md5=cc0fe24ed2a2e.pdf
Publikováno v:
IndraStra Global.
Our AES study on the Ni-4.9at%Ru alloy shows Ru segregation to the surface with an enthalpy of segregation of −4 kJ/mol. On exposing the alloy to oxygen at 300 K, XPS and UPS studies show two types of oxygen species, $O^{2−}$ (529.4 eV) and $O^{1