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Functional Li-M (Ti, Al, Co, Ni, Mn, Fe)-O Energy Materials
In Yea Kim, Seo Yoon Shin, Jea Hwan Ko, Kang Soo Lee, Sung Pil Woo, Dong Kyu Kim, Young Soo Yoon
J. Korean Ceram. Soc.. 2017;54(1):9-22.   Published online 2017 January 31    DOI: https://doi.org/10.4191/kcers.2017.54.1.11

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ChemInform Abstract: BORON-RICH PHASES GROWN FROM AL-M-B MELTS (M = LI,TI,V,CR,MN,FE,CO,NI,CU)
Chemischer Informationsdienst. 1982;13(5):   Crossref logo
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Search for Perovskite-Type New Borides in the Sc?TM?B (TM: Ti, V, Cr, Mn, Fe, Co, and Ni) Systems.
ChemInform. 2005;36(7):   Crossref logo
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Electronic Specific Heat of Dilute Alloys: Fe(Ti), Fe(V), Fe(Cr), Fe(Mn), Fe(Co), Fe(Ni), Fe(Al), Fe(Si), Fe(Mo), Fe(W), and Ag(Au)
Physical Review. 1966;152(2):611-622   Crossref logo
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Effect of B-site doing on thermal cycle shrinkage for LaSrMnMO perovskites (M=Mg, Al, Ti, Mn, Fe, Co, Ni; 0??0.1)
Solid State Ionics. 2004;174(1-4):1-8   Crossref logo
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Provenance and accumulation rates of opaline silica, Al, Ti, Fe, Mn, Cu, Ni and Co in Pacific pelagic sediments
Chemical Geology. 1973;11(2):123-148   Crossref logo
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Functional Li-M (Ti, Al, Co, Ni, Mn, Fe)-O Energy Materials
Journal of the Korean Ceramic Society. 2017;54(1):9-22   Crossref logo
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Preparation and characterization of monetites co-doped with Ni/Al, Ni/Mn and Al/Mn
Materials Letters. 2017;201:39-42   Crossref logo
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Influence of ageing on wear resistance of an Fe–Mn–Si–Cr–Ni–Ti–C shape memory alloy
Materials & Design. 2011;32(5):2969-2973   Crossref logo
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Low-temperature fission-neutron disordering of Fe-Co and Fe-Co-X (X = Mn, V, Ti) ordered alloys
Journal of Nuclear Materials. 1983;118(2-3):333-341   Crossref logo
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New Al-based amorphous alloys with high mechanical strength in the AlNiM and AlCoM (M = Mn, Fe, Co, Ni) systems
Materials Science and Engineering: A. 1994;179-180:596-599   Crossref logo
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