Every reference with a DOI in the deposited reference list resolved to a known
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withdrawal, or removal notice.
The 62 checked references that resolve
resolves10.1002/aenm.201702403Challenges in Developing Electrodes, Electrolytes, and Diagnostics Tools to Understand and Advance Sodium‐Ion Batteries
resolves10.1149/1.1379565The Mechanisms of Lithium and Sodium Insertion in Carbon Materials
resolves10.1002/anie.201403734Use of Graphite as a Highly Reversible Electrode with Superior Cycle Life for Sodium‐Ion Batteries by Making Use of Co‐Intercalation Phenomena
resolves10.1002/aenm.201301584A Sandwich‐Like Hierarchically Porous Carbon/Graphene Composite as a High‐Performance Anode Material for Sodium‐Ion Batteries
resolves10.1021/nl3016957Sodium Ion Insertion in Hollow Carbon Nanowires for Battery Applications
resolves10.1039/c3nr05022jFree-standing and binder-free sodium-ion electrodes with ultralong cycle life and high rate performance based on porous carbon nanofibers
resolves10.1016/j.ensm.2016.07.006Advanced sodium-ion batteries using superior low cost pyrolyzed anthracite anode: towards practical applications
resolves10.1021/nn4025674Electrospun Sb/C Fibers for a Stable and Fast Sodium-Ion Battery Anode
resolves10.1021/acs.nanolett.7b00083New Nanoconfined Galvanic Replacement Synthesis of Hollow Sb@C Yolk–Shell Spheres Constituting a Stable Anode for High-Rate Li/Na-Ion Batteries
resolves10.1002/ange.201209689High Capacity and Rate Capability of Amorphous Phosphorus for Sodium Ion Batteries
resolves10.1021/acsnano.5b00376Red Phosphorus–Single-Walled Carbon Nanotube Composite as a Superior Anode for Sodium Ion Batteries
resolves10.1021/nl303823kUniform Nano-Sn/C Composite Anodes for Lithium Ion Batteries
resolves10.1002/aenm.201200346Electrochemical Performance of Porous Carbon/Tin Composite Anodes for Sodium‐Ion and Lithium‐Ion Batteries
resolves10.1002/adma.201702212Bulk Bismuth as a High‐Capacity and Ultralong Cycle‐Life Anode for Sodium‐Ion Batteries by Coupling with Glyme‐Based Electrolytes
resolves10.1038/nmat3309P2-type Nax[Fe1/2Mn1/2]O2 made from earth-abundant elements for rechargeable Na batteries
resolves10.1002/adma.201601621Graphene‐Rich Wrapped Petal‐Like Rutile TiO<sub>2</sub> tuned by Carbon Dots for High‐Performance Sodium Storage
resolves10.1039/c4ee03759fPyrite FeS
<sub>2</sub>
for high-rate and long-life rechargeable sodium batteries
resolves10.1039/c7ee01100hStructure-designed synthesis of FeS
<sub>2</sub>
@C yolk–shell nanoboxes as a high-performance anode for sodium-ion batteries
resolves10.1002/admi.201701481Ionic Liquid‐Assisted Preparation of Sb<sub>2</sub>S<sub>3</sub>/Reduced Graphene Oxide Nanocomposite for Sodium‐Ion Batteries
resolves10.1002/ange.201400032All Organic Sodium‐Ion Batteries with Na<sub>4</sub>C<sub>8</sub>H<sub>2</sub>O<sub>6</sub>
resolves10.1126/sciadv.1500330Unraveling the storage mechanism in organic carbonyl electrodes for sodium-ion batteries
resolves10.1149/1.1393348High Capacity Anode Materials for Rechargeable Sodium-Ion Batteries
resolves10.1021/nn502045yHigh-Density Sodium and Lithium Ion Battery Anodes from Banana Peels
resolves10.1039/c4ee02986kPeanut shell hybrid sodium ion capacitor with extreme energy–power rivals lithium ion capacitors
resolves10.1016/j.nanoen.2017.01.045A versatile biomass derived carbon material for oxygen reduction reaction, supercapacitors and oil/water separation
resolves10.1039/c5ta05118eFacile synthesis of high performance hard carbon anode materials for sodium ion batteries
resolves10.1002/aenm.201600659Hard Carbon Microtubes Made from Renewable Cotton as High‐Performance Anode Material for Sodium‐Ion Batteries
resolves10.1021/nn404640cCarbon Nanosheet Frameworks Derived from Peat Moss as High Performance Sodium Ion Battery Anodes
resolves10.1039/c6ta04877cA waste biomass derived hard carbon as a high-performance anode material for sodium-ion batteries
resolves10.1039/c7ta00639jKelp-derived hard carbons as advanced anode materials for sodium-ion batteries
resolves10.1021/acsami.6b12542High Temperature Carbonized Grass as a High Performance Sodium Ion Battery Anode
resolves10.1039/c6ee03367aAchieving superb sodium storage performance on carbon anodes through an ether-derived solid electrolyte interphase
resolves10.1039/c7ta02515gBoosting the rate capability of hard carbon with an ether-based electrolyte for sodium ion batteries
resolves10.1039/c3ta12389hCarbon nanofibers derived from cellulose nanofibers as a long-life anode material for rechargeable sodium-ion batteries
resolves10.1039/c6ta00242kLong cycle life microporous spherical carbon anodes for sodium-ion batteries derived from furfuryl alcohol
resolves10.1038/nnano.2014.6A pomegranate-inspired nanoscale design for large-volume-change lithium battery anodes
resolves10.1002/adma.201503221A Sustainable Route from Biomass Byproduct Okara to High Content Nitrogen‐Doped Carbon Sheets for Efficient Sodium Ion Batteries
resolves10.1002/aenm.201703238Low‐Defect and Low‐Porosity Hard Carbon with High Coulombic Efficiency and High Capacity for Practical Sodium Ion Battery Anode
resolves10.1021/am507679xLow-Surface-Area Hard Carbon Anode for Na-Ion Batteries via Graphene Oxide as a Dehydration Agent
resolves10.1039/c4ta05451bAmorphous monodispersed hard carbon micro-spherules derived from biomass as a high performance negative electrode material for sodium-ion batteries
resolves10.1039/c2ee24203fFlexible graphene–polyaniline composite paper for high-performance supercapacitor
resolves10.1088/0957-4484/26/37/374003Freeze-drying for sustainable synthesis of nitrogen doped porous carbon cryogel with enhanced supercapacitor and lithium ion storage performance
resolves10.1016/j.nanoen.2017.12.042Direct chitin conversion to N-doped amorphous carbon nanofibers for high-performing full sodium-ion batteries
resolves10.1002/adfm.201706294N‐Doping and Defective Nanographitic Domain Coupled Hard Carbon Nanoshells for High Performance Lithium/Sodium Storage
resolves10.1039/c3ee41379aTowards high energy density sodium ion batteries through electrolyte optimization
resolves10.1002/adfm.201402984Sodium Storage Behavior in Natural Graphite using Ether‐based Electrolyte Systems
resolves10.1002/anie.201801389A Porous Network of Bismuth Used as the Anode Material for High‐Energy‐Density Potassium‐Ion Batteries
resolves10.1021/acsnano.6b05566Pseudocapacitive Na-Ion Storage Boosts High Rate and Areal Capacity of Self-Branched 2D Layered Metal Chalcogenide Nanoarrays
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