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101. Crystal structure and spectroscopic properties of LixNi1 − yTiyO2 and their electrochemical behavior

102. Influence of Solid Electrolyte Interphase Stabilization on Cycling Performance of Silicon-Graphite Composite Battery Anodes

103. Electrochemical Characterization and Interfacial Chemistry of Tin-Based Anode Materials for Mg-Ion Batteries

104. Enhanced High-Voltage Stability of LiNi0.6Co0.2Mn0.2O2 Cathode By Using Electrolyte Additive

105. Investigation of Interfacial Phenomena of High-Voltage Li-Ion Battery with Li-Rich Layered Oxide Cathode

106. Improved Low-Temperature Performance of Li-Ion Battery of LiCoO2//Graphite By Electrolyte Control

107. Cycling Performance and Interfacial Phenomena of High-Energy Li-Ion Battery with Sulfur-Based Cathode and Silicon-Based Anode

108. Interfacial Phenomena of 4.7V Li-Ion Battery of Li-Rich Layered Oxide/Graphite at Elevated Temperature

109. Understanding Interfacial Chemistry and Stability for Performance Enhancement of 4.55V Li-Ion Battery of LiNi0.5Co0.2Mn0.3O2//Silicon-Graphite Using FEC-Based Electrolyte

110. Electrochemical Characterization of Advanced Sulfur Cathode Materials for Li-S Batteries

111. Amorphous and nanocrystalline Mg2Si thin-film electrodes

112. Cable-type flexible lithium ion battery based on hollow multi-helix electrodes

113. Preparation of single-phase Pb(Mg1/3Nb2/3)O3samples utilizing information from solubility relationships in the Pb–Mg–Nb–citric acid–H2O system

114. One-step hydrothermal synthesis of mesoporous anatase TiO₂ microsphere and interfacial control for enhanced lithium storage performance

115. ChemInform Abstract: Strontium Magnesium Phosphate, Sr2+xMg3-xP4O15 (x ≈ 0.36), from Laboratory X-Ray Powder Data

116. ChemInform Abstract: Room-Temperature Fabrication of Lithium Cobalt Oxide Thin-Film Electrodes by Lithium Hydroxide Solution Treatment

117. Enabling High-Energy Battery Performance of 4.8 V Li-Rich Layered Oxide Cathode with a High-Voltage Additive

118. Interfacial Control for Enhanced Cycling Performance of Li-Ion Battery with Silicon-Based Anode and High-Voltage Layered Oxide Cathode

119. Material Characteristics-Dependent Solid Electrolyte Interphase Formation Behavior of Artificial Graphite Anodes.

120. Erratum: Performance Enhancement of 4.8 V Li1.2Mn0.525Ni0.175Co0.1O2Battery Cathode Using Fluorinated Linear Carbonate as a High-Voltage Additive [J. Electrochem. Soc., 161, A2002 (2014)]

121. High-Performance Artificial SEI-Capped Nano-SiO x /Graphite Anode for Rechargeable Lithium Batteries

122. Siloxane-capped amorphous nano-SiOx/graphite with improved dispersion ability and battery anode performance

127. Corrigendum to 'Interfacial structural stabilization on amorphous silicon anode for improved cycling performance in lithium-ion batteries' [Electrochim. Acta 55 (2010) 3026–3033]

128. ERRATUM

129. Batteries: Cable-Type Flexible Lithium Ion Battery Based on Hollow Multi-Helix Electrodes (Adv. Mater. 38/2012)

133. Stabilized cycling performance of silicon oxide anode in ionic liquid electrolyte for rechargeable lithium batteries

141. Publisher’s Note: Impacts of Surface Mn Valence on Cycling Performance and Surface Chemistry of Li- and Al-Substituted Spinel Battery Cathodes [J. Electrochem. Soc., 158, A458 (2011)]

142. Impacts of Surface Mn Valence on Cycling Performance and Surface Chemistry of Li- and Al-Substituted Spinel Battery Cathodes

148. Cycling-Driven Structural Changes in a Thin-Film Lithium Battery on Flexible Substrate

149. Erratum: Cycling-Driven Structural Changes in a Thin-Film Lithium Battery on Flexible Substrate [Electrochem. Solid-State Lett., 12, A159 (2009)]

150. Silane-Derived SEI Stabilization on Thin-Film Electrodes of Nanocrystalline Si for Lithium Batteries

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