Amanote Research
Register
Sign In
Discover open access scientific publications
Search, annotate, share and cite publications
Publications by Vince Battaglia
Toward High Specific Capacity and High Cycling Stability of Pure Tin Nanoparticles With Conductive Polymer Binder for Sodium Ion Batteries
Journal of Power Sources
Electronic Engineering
Sustainability
Energy Engineering
Renewable Energy
Theoretical Chemistry
Electrical
Power Technology
the Environment
Physical
Related publications
Toward Practical Application of Functional Conductive Polymer Binder for a High-Energy Lithium-Ion Battery Design
Nano Letters
Materials Science
Condensed Matter Physics
Mechanical Engineering
Nanoscience
Bioengineering
Nanotechnology
Chemistry
A Conductive Binder for High-Performance Sn Electrodes in Lithium-Ion Batteries
Rechargeable Batteries: Sandwich-Like MoS2 @SnO2 @C With High Capacity and Stability for Sodium/Potassium Ion Batteries (Small 17/2018)
Small
Materials Science
Nanoscience
Engineering
Biomaterials
Medicine
Biotechnology
Nanotechnology
Chemistry
Mussel-Inspired Conductive Polymer Binder for Si-Alloy Anode in Lithium-Ion Batteries
ACS Applied Materials & Interfaces
Medicine
Materials Science
Nanotechnology
Nanoscience
Mussel-Inspired Conductive Polymer Binder for Si-Alloy Anode in Lithium-Ion Batteries
Sodium‐Ion Batteries: O3‐Type Layered Ni‐Rich Oxide: A High‐Capacity and Superior‐Rate Cathode for Sodium‐Ion Batteries (Small 52/2019)
Small
Materials Science
Nanoscience
Engineering
Biomaterials
Medicine
Biotechnology
Nanotechnology
Chemistry
Safety of Sodium‐Ion Batteries: High‐Safety Nonaqueous Electrolytes and Interphases for Sodium‐Ion Batteries (Small 14/2019)
Small
Materials Science
Nanoscience
Engineering
Biomaterials
Medicine
Biotechnology
Nanotechnology
Chemistry
Expression of Concern: Hollow Amorphous NaFePO4 Nanospheres as a High-Capacity and High-Rate Cathode for Sodium-Ion Batteries
Journal of Materials Chemistry A
Materials Science
Chemistry
the Environment
Sustainability
Renewable Energy
Aqueous Binder Enhanced High-Performance GeP5 Anode for Lithium-Ion Batteries
Frontiers in Chemistry
Chemistry