Showing results 1 to 20 of 90
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Issue Date | Title | Author(s) |
9-Apr-2013 | A (3 + 3)-dimensional “hypercubic” oxide-ionic conductor: type ii bi2o3–nb2o5 | Ling, CD; Schmid, S; Blanchard, PER; Petříček, V; McIntyre, GJ; Sharma, N; Maljuk, A; Yaremchenko, AA; Kharton, VV; Gutmann, MJ; Withers, RL |
18-Aug-2020 | Alkali metal-modified P2 NaxMnO2: crystal structure and application in sodium-ion batteries | Sehrawat, D; Rawal, A; Cheong, S; Avdeev, M; Ling, CD; Kimpton, JA; Sharma, N |
22-Dec-2020 | Biphasic P2/O3-Na2/3Li0.18Mn0.8Fe0.2O2: a structural investigation | Stansby, JH; Avdeev, M; Brand, HEA; Gonzalo, E; Drewett, NE; Ortiz-Vitoriano, N; Sharma, N; Rojo, T |
1-Sep-2011 | Br-doped Li4Ti5O12 and composite TiO2 anodes for Li-ion batteries: synchrotron x-ray and in situ neutron diffraction studies | Du, GD; Sharma, N; Peterson, VK; Kimpton, JA; Jia, DZ; Guo, ZP |
23-Mar-2017 | Capacity enhancement of the quenched Li-Ni-Mn-Co oxide high-voltage Li-ion battery positive electrode | Jena, A; Lee, CH; Pang, WK; Peterson, VK; Sharma, N; Wang, CC; Song, YF; Lin, CC; Chang, H; Liu, RS |
4-Jan-2019 | Chromium segregation in Cr-doped TiO2 (rutile): impact of oxygen activity | Rahman, KA; Sharma, N; Atanacio, AJ; Bak, T; Wachsman, ED; Moffit, M; Nowotny, J |
16-Jan-2008 | Coexistence of ferroelectricity and magnetism in transition-metal-doped n = 3 aurivillius phases | Sharma, N; Kennedy, BJ; Elcombe, MM; Liu, Y; Ling, CD |
18-Dec-2014 | Comparison of the so-called CGR and NCR cathodes in commercial lithium-ion batteries using in situ neutron powder diffraction | Alam, M; Hanley, TL; Pang, WK; Peterson, VK; Sharma, N |
2-Sep-2015 | A comprehensive picture of the current rate dependence of the structural evolution of P2-Na2/3Fe2/3Mn1/3O2 | Sharma, N; Han, MH; Pramudita, JC; Gonzalo, E; Brand, HEA; Rojo, T |
10-Jun-2020 | Consequences of long-term water exposure for bulk crystal structure and surface composition/chemistry of nickel-rich layered oxide materials for Li-ion batteries | Andersen, HL; Cheung, EA; Avdeev, M; Maynard-Casely, HE; Abraham, DP; Sharma, N |
1-Mar-2017 | Correlating cycling history with structural evolution in commercial 26650 batteries using in operando neutron powder diffraction | Goonetilleke, D; Pramudita, JC; Hagan, M; Al Bahri, OK; Pang, WK; Peterson, VK; Groot, J; Berg, H; Sharma, N |
11-Nov-2008 | Crystal structures and phase transitions in a-site deficient perovskites Ln1/3TaO3 | Zhou, QD; Saines, PJ; Sharma, N; Ting, J; Kennedy, BJ; Zhang, Z; Withers, RL; Wallwork, KS |
May-2014 | Crystal structures of orthorhombic, hexagonal, and cubic compounds of the Sm(x)Yb(2−x)TiO5 series | Aughterson, RD; Lumpkin, GR; Reyes, MDI; Sharma, N; Ling, CD; Gault, B; Smith, KL; Avdeev, M; Cairney, JM |
1-Jan-2013 | Current-dependent electrode lattice fluctuations and anode phase evolution in a lithium-ion battery investigated by in situ neutron diffraction | Sharma, N; Peterson, VK |
9-May-2012 | Direct evidence of concurrent solid-solution and two-phase reactions and the nonequilibrium structural eEvolution of LiFePO(4) | Sharma, N; Guo, XW; Du, GD; Guo, ZP; Wang, JZ; Wang, ZX; Peterson, VK |
24-Jun-2021 | Dopant and current rate dependence on the structural evolution of P2-Na2/3Mn0.8Zn0.1M0.1O2 (M=Cu, Ti): an operando study | Stansby, JH; Sharma, N; Avdeev, M; Brand, HEA; Gonzalo, E; Drewett, NE; Ortiz-Vitoriano, N; Rojo, T |
29-Sep-2018 | Electrochemically activated solid synthesis: an alternative solid-state synthetic method | Liu, JN; Andersen, HL; Al Bahri, OK; Bhattacharyya, S; Rawal, A; Brand, HEA; Sharma, N |
30-Sep-2020 | Elucidation of the high-voltage phase in the layered sodium ion battery cathode material P3–Na0.5Ni0.25Mn0.75O2 | Liu, JT; Didier, C; Sale, M; Sharma, N; Guo, ZP; Peterson, VK; Ling, CD |
5-Feb-2014 | Evidence of solid-solution reaction upon lithium insertion into cryptomelane K0.25Mn2O4 material | Pang, WK; Peterson, VK; Sharma, N; Zhang, CF; Guo, ZP |
14-Jan-2013 | Expanding the applications of the ilmenite mineral to the preparation of nanostructures: TiO2 nanorods and their photocatalytic properties in the degradation of oxalic acid | Tao, T; Chen, Y; Zhou, D; Zhang, HZ; Liu, S; Amal, R; Sharma, N; Glushenkov, AM |