Bereket Woldegbreal Taklu, Tsung‐I Yeh, Chia-Yu Chang, Teklay Mezgebe Hagos, Yosef Nikodimos, Saravanan Ashok Vallal, Anna Windmüller, Chun‐Chi Chang, Kassie Nigus Shitaw, Tripti Agnihotri, Rehbar Hasan, Zabish Bilew Muche, Yu‐Chun Huang, Sheng‐Chiang Yang, Wei‐Nien Su, Bing‐Joe Hwang
High Resolution Image Download MS PowerPoint Slide Capacity fading caused by polysulfide (PS) shuttling is a challenge in lithium–sulfur batteries. Anode-free lithium–sulfur batteries (AFLSBs) with zero excess Li are limited by dendrite and PS-induced reactions from soluble PS-shuttling, which affect cycle life. Here, the Cu current collector (Cu-CC) prone to PS-induced corrosion was studied using a liquid metal, GaIn, as a coating material. GaIn with self-healing properties fortifies uniform nucleation sites, alleviates dendrite growth, and overcomes the corrosion of Cu-CC. Operando confocal OM, in situ XRD, XPS, CV, and morphological-examinations revealed the mitigation of dendritic Li growth and alloy–dealloying mechanisms. The GaIn-Cu-CC under an asymmetric cell with a PS additive exhibits insignificant heat evolution and improved Li reversibility compared to Cu-CC, as revealed by operando heat evolution tests. Ex situ PS treatment resulted in severe corrosion in Cu-CC with substantial morphological alterations, and Cu 2 S formation was confirmed by XPS and synchrotronic XAS wavelet transform. The extent of in situ PS on AFLSB’s cell was studied under single-step activation (STA) and two-step activation (TSA) of the Li 2 S cathode. The STA-cathode delivers a capacity retention (CR) of 54.12% and 63.11% using Cu-CC and GaIn-Cu-CC, respectively, after 200 cycles. TSA of the cathode upon GaIn-Cu-CC leads to a 50.11% CR after 250 cycles. The adverse effect of PS on Cu-CC resulted in 33.15% CR after 100 cycles. Formulating a corrosion-tolerant and uniform nucleation site from a coating material in a facile approach enhances the feasibility of Cu-CC in sulfur-rich environments, making capable AFLSBs.