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Zn Electrochemistry in 1‐Ethyl‐3‐Methylimidazolium and N ‐Butyl‐ N ‐Methylpyrrolidinium Dicyanamides: Promising New Rechargeable Zn Battery Electrolytes
Author(s) -
Simons Tristan J.,
MacFarlane Douglas R.,
Forsyth Maria,
Howlett Patrick C.
Publication year - 2014
Publication title -
chemelectrochem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.182
H-Index - 59
ISSN - 2196-0216
DOI - 10.1002/celc.201402177
Subject(s) - ionic liquid , dicyanamide , electrolyte , electrochemistry , overpotential , chemistry , nucleation , zinc , context (archaeology) , inorganic chemistry , glassy carbon , electrode , cyclic voltammetry , organic chemistry , catalysis , paleontology , biology
We have studied both 1‐ethyl‐3‐methylimidazolium (C 2 mim) and N ‐butyl‐ N ‐methylpyrrolidinium (C 4 mpyr) dicyanamide (dca) ionic liquids (ILs) containing 3 wt % H 2 O and 9 mol % Zn(dca) 2 salt for their ability to support Zn 0/2+ electrochemistry in the context of a rechargeable Zn battery. Despite the similarities of the two IL electrolyte systems [identical H 2 O and Zn(dca) 2 contents], the system based on [C 2 mim] supported much higher current densities for Zn electrochemistry at greatly reduced overpotentials [−0.23 V vs. Zn pseudo‐reference, 32 mA cm −2 (red) and 61 mA cm −2 (ox)] compared to the [C 4 mpyr]‐based electrolyte [−0.84 V vs. Zn pseudo‐reference, 8 mA cm −2 (red) and 15 mA cm −2 (ox)]. The overpotential for Zn deposition is reduced by 0.13 V on Zn metal surfaces compared to glassy carbon (GC), regardless of the electrolyte used. The morphologies of the Zn deposits on both GC and Zn surfaces were also studied. The Zn surfaces promote a deposition that displays a smooth morphology, resulting from an instantaneous nucleation mechanism demonstrated by chronoamperometric experiments. Finally, both [C 2 mim] and [C 4 mpyr] electrolytes were tested in symmetrical Zn|Zn cells, where it was determined that the [C 2 mim] system could sustain over 90 cycles at 0.1 mA cm −2 , whereas the [C 4 mpyr] based system could only achieve 15 cycles at the more modest current density of 0.05 mA cm −2 .