1 - 13 |
Green and high performance all-solid-state supercapacitors based on MnO2/Faidherbia albida fruit shell derived carbon sphere electrodes Mohammed AA, Chen C, Zhu Z |
14 - 20 |
Towards high energy-high power dendrite-free lithium metal batteries: The novel hydrated vanadium oxide/graphene vertical bar vertical bar silicon nitride/lithium system Tian ZY, Li N, Xie K, Niu CM |
21 - 28 |
CoMoSx@Ni-CoMoSx double-shelled cage-in-cage hollow polyhedron as enhanced Pt-free catalytic material for high-efficiency dye-sensitized solar cell Qian X, Wu WM, Zhuang JH, Niu YD, Huang J, Hou L |
29 - 41 |
Modelling and experiments to identify high-risk failure scenarios for testing the safety of lithium-ion cells Finegan DP, Darst J, Walker W, Li QB, Yang CB, Jervis R, Heenan TMM, Hack J, Thomas JC, Rack A, Brett DJL, Shearing PR, Keyser M, Darcy E |
42 - 52 |
Ta-doped PrBa0.94Co2-xTaxO5+delta as promising oxygen electrodes: A focused study on catalytic oxygen reduction reaction activity, stability and CO2-durability Lu FF, Xia T, Li Q, Sun LP, Huo LH, Zhao H |
53 - 60 |
Novel methodology for ex situ characterization of iridium oxide catalysts in voltage reversal tolerant proton exchange membrane fuel cell anodes Moore CE, Eastcott J, Cimenti M, Kremliakova N, Gyenge EL |
61 - 69 |
Highly efficient flexible organic photovoltaics using quasi-amorphous ZnO/Ag/ZnO transparent electrodes for indoor applications Lee BR, Goo JS, Kim YW, You YJ, Kim H, Lee SK, Shim JW, Kim TG |
70 - 75 |
Anion-regulated solid polymer electrolyte enhances the stable deposition of lithium ion for lithium metal batteries Niu CQ, Liu J, Chen GP, Liu C, Qian T, Zhang JJ, Cao BK, Shang WY, Chen YB, Han JL, Du J, Chen Y |
76 - 82 |
Effects of doping with yttrium on the hydrogen storage performances of the La2Mg17 alloy surface Zhang HW, Fu L, Qi JB, Ji Z |
83 - 89 |
Enhanced cyclability of organic redox flow batteries enabled by an artificial bipolar molecule in neutral aqueous electrolyte Zhu YZ, Yang F, Niu ZH, Wu HX, He Y, Zhu HF, Ye J, Zhao Y, Zhang XH |
90 - 98 |
N- and S- co-doped graphene sheet-encapsulated Co9S8 nanomaterials as excellent electrocatalysts for the oxygen evolution reaction Zhong JW, Wu T, Wu Q, Du S, Chen DC, Chen B, Chang ML, Luo XH, Liu YL |
99 - 107 |
Siloxene: A potential layered silicon intercalation anode for Na, Li and K ion batteries Loaiza LC, Monconduit L, Seznec V |
108 - 116 |
Laser printer patterned sacrificed layer for arbitrary design and scalable fabrication of the all-solid-state interdigitated in-planar hydrous ruthenium oxide flexible micro supercapacitors Huang KC, Lin CH, Anuratha KS, Huang TY, Lin JY, Tseng FG, Hsieh CK |
117 - 124 |
Highly effective and stable doped carbon catalyst with three-dimensional porous structure and well-covered Fe3C nanoparticles prepared with C3N4 and tannic acid as template/precursors Deng YJ, Wang GH, Sun KL, Chi B, Shi XD, Dong YY, Zheng L, Zeng JH, Li XH, Liao SJ |
125 - 131 |
All-solid-state cells with Li4Ti5O12/carbon nanotube composite electrodes prepared by infiltration with argyrodite sulfide-based solid electrolytes via liquid-phase processing Yubuchi S, Nakamura W, Bibienne T, Rousselot S, Taylor LW, Pasquali M, Dolle M, Sakuda A, Hayashi A, Tatsumisago M |
132 - 144 |
A multi-fault diagnostic method based on an interleaved voltage measurement topology for series connected battery packs Kang YZ, Duan B, Zhou ZK, Shang YL, Zhang CH |
145 - 149 |
Study of solid alkaline electrolyte under high temperatures and its application in electrochemical capacitors for AC line-filtering Li J, Gao H, Miller JR, Outlaw RA, Butler S, Lian K |
150 - 158 |
Investigation on electrolyte-immersed properties of lithium-ion battery cellulose separator through multi-scale method Xie WG, Liu WY, Dang YP, Tang AM, Deng T, Qiu WP |
159 - 175 |
Direct urea fuel cells: Challenges and opportunities Sayed ET, Eisa T, Mohamed HO, Abdelkareem MA, Allagui A, Alawadhi H, Chae KJ |
176 - 187 |
Nanophotonic enhancement and improved electron extraction in perovskite solar cells using near-horizontally aligned TiO2 nanorods Thakur UK, Zeng S, Kumar P, Patel S, Kisslinger R, Zhang Y, Kar P, Goswami A, Thundat T, Meldrum A, Shankar K |
188 - 192 |
An easy-to-implement multi-point impedance technique for monitoring aging of lithium ion batteries Zhou X, Pan ZQ, Han XB, Lu LG, Ouyang MG |
193 - 206 |
Modelling voltametric data from electrochemical capacitors Fellows HM, Forghani M, Crosnier O, Donne SW |