Iron and manganese pyrophosphates as cathodes for lithium-ion batteries H Zhou, S Upreti, NA Chernova, G Hautier, G Ceder, MS Whittingham Chemistry of Materials 23 (2), 293-300, 2011 | 165 | 2011 |
Can Vanadium Be Substituted into LiFePO4? F Omenya, NA Chernova, S Upreti, PY Zavalij, KW Nam, XQ Yang, ... Chemistry of Materials 23 (21), 4733-4740, 2011 | 143 | 2011 |
Vanadium modified LiFePO4 cathode for Li-ion batteries J Hong, CS Wang, X Chen, S Upreti, MS Whittingham Electrochemical and Solid-State Letters 12 (2), A33, 2008 | 118 | 2008 |
Lithium-ion batteries and beyond: Celebrating the 2019 Nobel Prize in chemistry–a virtual issue PV Kamat ACS Energy Letters 4 (11), 2757-2759, 2019 | 105 | 2019 |
Comparative study of the capacity and rate capability of LiNiyMnyCo1–2yO2 (y= 0.5, 0.45, 0.4, 0.33) Z Li, NA Chernova, M Roppolo, S Upreti, C Petersburg, FM Alamgir, ... Journal of the Electrochemical Society 158 (5), A516, 2011 | 104 | 2011 |
Cobalt Coordination Induced Functionalized Molecular Clefts: Isolation of {CoIII−ZnII} Heterometallic Complexes and Their Applications in Beckmann … A Mishra, A Ali, S Upreti, R Gupta Inorganic chemistry 47 (1), 154-161, 2008 | 104 | 2008 |
Stability and rate capability of Al substituted lithium-rich high-manganese content oxide materials for Li-ion batteries Z Li, NA Chernova, J Feng, S Upreti, F Omenya, MS Whittingham Journal of The Electrochemical Society 159 (2), A116, 2011 | 87 | 2011 |
An Organic Coprecipitation Route to Synthesize High Voltage LiNi0.5Mn1.5O4 J Feng, Z Huang, C Guo, NA Chernova, S Upreti, MS Whittingham ACS applied materials & interfaces 5 (20), 10227-10232, 2013 | 86 | 2013 |
Electrochemical performance of Al–Si–graphite composite as anode for lithium–ion batteries W Zhou, S Upreti, MS Whittingham Electrochemistry Communications 13 (2), 158-161, 2011 | 78 | 2011 |
Novel bile acid-based cyclic bisimidazolium receptors for anion recognition VK Khatri, S Upreti, PS Pandey Organic Letters 8 (9), 1755-1758, 2006 | 77 | 2006 |
Design, synthesis, and self-assembling properties of novel triazolophanes V Haridas, K Lal, YK Sharma, S Upreti Organic Letters 10 (8), 1645-1647, 2008 | 75 | 2008 |
Cobalt Complex as Building Blocks: Synthesis, Characterization, and Catalytic Applications of {Cd2+−Co3+−Cd2+} and {Hg2+−Co3+−Hg2+} Heterobimetallic … A Mishra, A Ali, S Upreti, MS Whittingham, R Gupta Inorganic chemistry 48 (12), 5234-5243, 2009 | 73 | 2009 |
Schiff bases functionalized with PPh2 and SPh groups and their Ni (II) and Pd (II) complexes: Synthesis, crystal structures and applications of a Pd complex for Suzuki–Miyaura … PR Kumar, S Upreti, AK Singh Polyhedron 27 (6), 1610-1622, 2008 | 67 | 2008 |
High performance Si/MgO/graphite composite as the anode for lithium-ion batteries W Zhou, S Upreti, MS Whittingham Electrochemistry Communications 13 (10), 1102-1104, 2011 | 59 | 2011 |
Shaping the cavity of calixarene architecture for molecular recognition: synthesis and conformational properties of new azocalix [4] arenes HM Chawla, SP Singh, SN Sahu, S Upreti Tetrahedron 62 (33), 7854-7865, 2006 | 55 | 2006 |
Towards understanding the rate capability of layered transition metal oxides LiNiyMnyCo1− 2yO2 Z Li, C Ban, NA Chernova, Z Wu, S Upreti, A Dillon, MS Whittingham Journal of Power Sources 268, 106-112, 2014 | 54 | 2014 |
Convenient Direct Synthesis of Bisformylated Calix[4]arenes via Ipso Substitution HM Chawla, N Pant, B Srivastava, S Upreti Organic letters 8 (11), 2237-2240, 2006 | 53 | 2006 |
Role of nonbonding interactions in the crystal growth of phenazinediamine tetrahydrate: new insights into the occurrence of 2D water layers in crystal hydrates S Upreti, A Datta, A Ramanan Crystal growth & design 7 (5), 966-971, 2007 | 51 | 2007 |
Electrochemical performances of LiMnPO 4 synthesized from non-stoichiometric Li/Mn ratio J Xiao, NA Chernova, S Upreti, X Chen, Z Li, Z Deng, D Choi, W Xu, Z Nie, ... Physical Chemistry Chemical Physics 13 (40), 18099-18106, 2011 | 49 | 2011 |
Structure-Directing Role of Hydrogen-Bonded Dimers of Phenylenediammonium Cations: Supramolecular Assemblies of Octamolybdate-Based Organic− Inorganic Hybrids S Upreti, A Ramanan Crystal growth & design 5 (5), 1837-1843, 2005 | 48 | 2005 |