UCL Discovery
UCL home » Library Services » Electronic resources » UCL Discovery

Browse by UCL people

Group by: Type | Date
Jump to: Article | Thesis
Number of items: 6.

Article

Bauer, D; Roberts, AJ; Matsumi, N; Darr, JA; (2017) Nano-sized Mo- and Nb-doped TiO2 as anode materials for high energy and high power hybrid Li-ion capacitors. Nanotechnology , 28 (19) 10.1088/1361-6528/aa69df. Green open access
file

Bauer, D; Roberts, AJ; Patnaik, SG; Brett, DJL; Shearing, PR; Kendrick, E; Matsumi, N; (2018) High power sodium-ion batteries and hybrid electrochemical capacitors using Mo or Nb-doped nano-titania anodes. Journal of the Electrochemical Society , 165 (9) A1662-A1670. 10.1149/2.0341809jes. Green open access
file

Bauer, D; Roberts, AJ; Starkey, CL; Vedarajan, R; Brett, DJL; Shearing, PR; Matsumi, N; (2018) TiO2/MoO2 Nanocomposite as Anode Materials for High Power Li-ion Batteries with Exceptional Capacity. International Journal of Electrochemical Science , 13 (5) pp. 5120-5140. 10.20964/2018.05.37. Green open access
file

Evans, GP; Powell, MJ; Johnson, ID; Howard, DP; Bauer, D; Darr, JA; Parkin, IP; (2017) Room temperature vanadium dioxide–carbon nanotube gas sensors made via continuous hydrothermal flow synthesis. Sensors and Actuators B: Chemical , 255 (Part 1) pp. 1119-1129. 10.1016/j.snb.2017.07.152. Green open access
file

Xu, Y; Bauer, D; Lübke, M; Ashton, TE; Zong, Y; Darr, JA; (2018) High-power sodium titanate anodes; a comparison of lithium vs sodium-ion batteries. Journal of Power Sources , 408 pp. 28-37. 10.1016/j.jpowsour.2018.10.038. Green open access
file

Thesis

Bauer, Dustin; (2018) Continuous Hydrothermal Synthesis of Pseudocapacitive Nanomaterials for High Power Electrochemical Energy Storage. Doctoral thesis (Ph.D), UCL (University College London). Green open access
file

This list was generated on Sat Jan 10 23:33:12 2026 GMT.