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151. Dental resin monomer enables unique NbO2 /carbon lithium?ion battery negative electrode with exceptional performance

153. CO2 treatment enables non-hazardous, reliable, and efficacious recovery of spent Li(Ni0.5Co0.2Mn0.3)O2 cathodes.

154. Improving the cyclability performance of lithium-ion batteries by introducing lithium difluorophosphate (LiPO2F2) additive

155. Direct Recycling of Spent LiNi0.5Co0.2Mn0.3O2Cathodes Based on Single Oxalic Acid Leaching and Regeneration under Mild Conditions Assisted by Lithium Acetate

156. Continuous fast pyrolysis synthesis of TiO2/C nanohybrid lithium‐ion battery anode.

158. New perspective to understand the effect of electrochemical prelithiation behaviors on silicon monoxide

159. Dental Resin Monomer Enables Unique NbO 2 /Carbon Lithium‐Ion Battery Negative Electrode with Exceptional Performance

161. Corrigendum: Role of Nickel Nanoparticles in High‐Performance TiO 2 /Ni/Carbon Nanohybrid Lithium/Sodium‐Ion Battery Anodes

162. MnO/Metal/Carbon Nanohybrid Lithium‐Ion Battery Anode With Enhanced Electrochemical Performance: Universal Facile Scalable Synthesis and Fundamental Understanding

163. Role of Nickel Nanoparticles in High‐Performance TiO 2 /Ni/Carbon Nanohybrid Lithium/Sodium‐Ion Battery Anodes

168. Ultrafine SnO2/Sn Nanoparticles Embedded into an In SituGenerated Meso-/Macroporous Carbon Matrix with a Tunable Pore Size

170. SnO2/Sn/Carbon nanohybrid lithium‐ion battery anode with high reversible capacity and excellent cyclic stability.

171. Silicon/carbon lithium-ion battery anode with 3D hierarchical macro-/mesoporous silicon network: Self-templating synthesis via magnesiothermic reduction of silica/carbon composite

173. High-Efficiency All-Ambient Air, All-Solution and Low-Temperature Processed Nonfullerene Photovoltaics with Layer-by-Layer Co-Doped Polymeric Anodes

174. Super‐Small TiO2 Nanoparticles Homogeneously Embedded in Mesoporous Carbon Matrix Based on Dental Methacrylates and KOH Activation.

175. Mutual Performance Enhancement within Dual N‐doped TiO2/Si/C Nanohybrid Lithium‐Ion Battery Anode.

176. Poly(siloxane imide) Binder for Silicon‐Based Lithium‐Ion Battery Anodes via Rigidness/Softness Coupling.

177. In Situ Incorporation of Super‐Small Metallic High Capacity Nanoparticles and Mesoporous Structures for High‐Performance TiO2/SnO2/Sn/Carbon Nanohybrid Lithium‐Ion Battery Anodes.

182. Sulfur is a New High-Performance Additive toward High-Voltage LiNi0.5Co0.2Mn0.3O2Cathode: Tiny Amount, Huge Impact

184. Scalable in Situ Synthesis of Li4Ti5O12/Carbon Nanohybrid with Supersmall Li4Ti5O12 Nanoparticles Homogeneously Embedded in Carbon Matrix

185. Si/Ag/C Nanohybrids with in Situ Incorporation of Super-Small Silver Nanoparticles: Tiny Amount, Huge Impact

189. Role of Nickel Nanoparticles in High‐Performance TiO2/Ni/Carbon Nanohybrid Lithium/Sodium‐Ion Battery Anodes.

195. Gas-solid interfacial modification of oxygen activity in layered oxide cathodes for lithium-ion batteries.

198. Erratum to “Porous titania/carbon hybrid microspheres templated by in situ formed polystyrene colloids” [J. Colloid Interface Sci. 469 (2016) 242–256]

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