1 |
Interface reaction-governed heteroepitaxial growth of YBa2Cu3O7-delta film on CeO2-buffered technical substrate Chu JY, Zhao Y, Ji YT, Wu W, Shi JT, Hong ZY, Ma L, Suo HL, Jin ZJ Journal of the American Ceramic Society, 102(10), 5705, 2019 |
2 |
Cathodic behaviour and oxoacidity reactions of samarium (III) in two molten chlorides with different acidity properties: The eutectic LiCl-KCl and the equimolar CaCl2-NaCl melt Castrillejo Y, de la Fuente C, Vega M, de la Rosa F, Pardo R, Barrado E Electrochimica Acta, 97, 120, 2013 |
3 |
Predominance diagrams of uranium and plutonum species in both lithium chloride-potassium chloride eutectic and calcium chloride Brown LD, Abdulaziz R, Simons S, Inman D, Brett DJL, Shearing PR Journal of Applied Electrochemistry, 43(12), 1235, 2013 |
4 |
Determination of E-pO(2-) diagram for lanthanum in LiCl melt at 923 K Sakamura Y Electrochimica Acta, 80, 308, 2012 |
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An investigation into the electrochemical recovery of rare earth ions in a CsCl-based molten salt Jiao SQ, Zhu HM Journal of Hazardous Materials, 189(3), 821, 2011 |
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Potentiometric study of the interaction of Cr3+ and O2- ions in fused NaCl-2CsCl eutectic Smolenski VV, Novoselova AV, Luk'yanova YM, Mayorshin AA, Osipenko AG, Kormilitsyn MV Electrochimica Acta, 55(17), 4960, 2010 |
7 |
Advanced control of dissolved oxygen concentration in fed batch cultures during recombinant protein production Kuprijanov A, Gnoth S, Simutis R, Lubbert A Applied Microbiology and Biotechnology, 82(2), 221, 2009 |
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Electrodeposition of Lu on W and Al electrodes: Electrochemical formation of Lu-Al alloys and oxoacidity reactions of Lu(III) in the eutectic LiCl-KCl Bermejo MR, Barrado E, Martinez AM, Castrillejo Y Journal of Electroanalytical Chemistry, 617(1), 85, 2008 |
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Solid solubility and electrical conduction mechanisms in 3-layer Aurivillius ceramics Henriques EI, Kim HJ, Haluska MS, Edwards DD, Misture ST Solid State Ionics, 178(19-20), 1175, 2007 |
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Long-term continuous monitoring of dissolved oxygen in cell culture medium for perfused bioreactors using optical oxygen sensors Gao FG, Jeevarajan AS, Anderson MM Biotechnology and Bioengineering, 86(4), 425, 2004 |