The effect of storage time on the cyclability of lithium electrodes in an ionic liquid electrolyte, namely 0.5m LiBF4 in N-methyl-N-propyl pyrrolidinium bis(fluorosulfonyl)imide, [C3mpyr+][FSI-], was investigated. A chemical interaction was observed which is time dependent and results in a morphology change of the Li surface due to build up of passivation products over a 12-day period. The formation of this layer significantly impacts on the Li electrode resistance before cycling and the charging/discharging process for symmetrical Li|0.5m LiBF4 in [C3mpyr+][FSI-]|Li coin cells. Indeed it was found that introducing a rest period between cycling, and thereby allowing the chemical interaction between the Li electrode and electrolyte to take p...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
The ionic liquid, l-Ethyl-3-methylimidazolium bis- (trifluoromethylsulfonyl)-imide (EMITFSI) was stu...
An understanding of the solid electrolyte interphase (SEI) that forms on the lithium-metal surface i...
The effect of storage time on the cyclability of lithium electrodes in an ionic liquid electrolyte, ...
The repetitive cycling of lithium metal electrodes in Li metal | ionic liquid electrolytes | Li meta...
The electrodeposition of lithium metal from room temperature ionic liquid (RTIL) electrolytes consis...
The electrodeposition of lithium metal from room temperature ionic liquid (RTIL) electrolytes consis...
Three cyclic vinyl based additives, based respectively on oxygen, sulphur and fluorine, are tested f...
The ionic liquid (IL) N-methyl-N-butylmorpholinium bis(fluorosulfonyl)imide (C4mmor FSI) is examined...
This thesis explores the use of ionic liquids as electrolytes for rechargeable lithium metal batteri...
Electrolyte solutions containing lithium-cyclo-difluoromethane-1,1-bis(sulfonyl)imide (LiDMSI) as an...
Rechargeable Li metal batteries are currently limited by safety concerns, continuous electrolyte dec...
Copper, nickel, carbon, aluminium, gold and platinum microdisc electrodes (radii 4-40 μm) have be...
We have investigated the formation of the solid electrolyte interphase (SEI) on lithium electrodes i...
A thorough understanding of the lithium deposition behavior will facilitate the commercialization of...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
The ionic liquid, l-Ethyl-3-methylimidazolium bis- (trifluoromethylsulfonyl)-imide (EMITFSI) was stu...
An understanding of the solid electrolyte interphase (SEI) that forms on the lithium-metal surface i...
The effect of storage time on the cyclability of lithium electrodes in an ionic liquid electrolyte, ...
The repetitive cycling of lithium metal electrodes in Li metal | ionic liquid electrolytes | Li meta...
The electrodeposition of lithium metal from room temperature ionic liquid (RTIL) electrolytes consis...
The electrodeposition of lithium metal from room temperature ionic liquid (RTIL) electrolytes consis...
Three cyclic vinyl based additives, based respectively on oxygen, sulphur and fluorine, are tested f...
The ionic liquid (IL) N-methyl-N-butylmorpholinium bis(fluorosulfonyl)imide (C4mmor FSI) is examined...
This thesis explores the use of ionic liquids as electrolytes for rechargeable lithium metal batteri...
Electrolyte solutions containing lithium-cyclo-difluoromethane-1,1-bis(sulfonyl)imide (LiDMSI) as an...
Rechargeable Li metal batteries are currently limited by safety concerns, continuous electrolyte dec...
Copper, nickel, carbon, aluminium, gold and platinum microdisc electrodes (radii 4-40 μm) have be...
We have investigated the formation of the solid electrolyte interphase (SEI) on lithium electrodes i...
A thorough understanding of the lithium deposition behavior will facilitate the commercialization of...
Capacity loss of lithium ion batteries develop over the period of a few years at room temperature an...
The ionic liquid, l-Ethyl-3-methylimidazolium bis- (trifluoromethylsulfonyl)-imide (EMITFSI) was stu...
An understanding of the solid electrolyte interphase (SEI) that forms on the lithium-metal surface i...