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Silicon‐Based Anodes: Recent Progress in Advanced Characterization Methods  for Silicon‐Based Lithium‐Ion Batteries (Small Methods 10/2019) - Wu - 2019  - Small Methods - Wiley Online Library
Silicon‐Based Anodes: Recent Progress in Advanced Characterization Methods for Silicon‐Based Lithium‐Ion Batteries (Small Methods 10/2019) - Wu - 2019 - Small Methods - Wiley Online Library

Molecules | Free Full-Text | Recent Progress in Silicon−Based  Materials for Performance−Enhanced Lithium−Ion Batteries
Molecules | Free Full-Text | Recent Progress in Silicon−Based Materials for Performance−Enhanced Lithium−Ion Batteries

A Silicon Monoxide Lithium-Ion Battery Anode with Ultrahigh Areal Capacity  | Nano-Micro Letters
A Silicon Monoxide Lithium-Ion Battery Anode with Ultrahigh Areal Capacity | Nano-Micro Letters

The Evolution of Silicon in Li-ion Batteries | by BatteryBits Editors |  BatteryBits (Volta Foundation) | Medium
The Evolution of Silicon in Li-ion Batteries | by BatteryBits Editors | BatteryBits (Volta Foundation) | Medium

Frontiers | Biomass-Based Silicon and Carbon for Lithium-Ion Battery Anodes
Frontiers | Biomass-Based Silicon and Carbon for Lithium-Ion Battery Anodes

Nano/Microstructured Silicon–Graphite Composite Anode for  High-Energy-Density Li-Ion Battery | ACS Nano
Nano/Microstructured Silicon–Graphite Composite Anode for High-Energy-Density Li-Ion Battery | ACS Nano

Improving the cyclability of silicon anodes for lithium-ion batteries using  a simple pre-lithiation method - ScienceDirect
Improving the cyclability of silicon anodes for lithium-ion batteries using a simple pre-lithiation method - ScienceDirect

Production of high-energy Li-ion batteries comprising silicon-containing  anodes and insertion-type cathodes | Nature Communications
Production of high-energy Li-ion batteries comprising silicon-containing anodes and insertion-type cathodes | Nature Communications

Silicon anodes for lithium-ion batteries produced from recovered kerf  powders - ScienceDirect
Silicon anodes for lithium-ion batteries produced from recovered kerf powders - ScienceDirect

Nanotube Si-anode: 350 Wh/kg, 1300 Wh/l and extended service life
Nanotube Si-anode: 350 Wh/kg, 1300 Wh/l and extended service life

Silicon Anodes Improve Li-ion Batteries - EE Times Asia
Silicon Anodes Improve Li-ion Batteries - EE Times Asia

Molecules | Free Full-Text | Nanostructured Silicon as Potential Anode  Material for Li-Ion Batteries
Molecules | Free Full-Text | Nanostructured Silicon as Potential Anode Material for Li-Ion Batteries

Stable high-capacity and high-rate silicon-based lithium battery anodes  upon two-dimensional covalent encapsulation | Nature Communications
Stable high-capacity and high-rate silicon-based lithium battery anodes upon two-dimensional covalent encapsulation | Nature Communications

Lithium-ion batteries most valuable to solar-plus-storage
Lithium-ion batteries most valuable to solar-plus-storage

Stable high-capacity and high-rate silicon-based lithium battery anodes  upon two-dimensional covalent encapsulation | Nature Communications
Stable high-capacity and high-rate silicon-based lithium battery anodes upon two-dimensional covalent encapsulation | Nature Communications

Robust Micron-Sized Silicon Secondary Particles Anchored by Polyimide as  High-Capacity, High-Stability Li-Ion Battery Anode | ACS Applied Materials  & Interfaces
Robust Micron-Sized Silicon Secondary Particles Anchored by Polyimide as High-Capacity, High-Stability Li-Ion Battery Anode | ACS Applied Materials & Interfaces

Lithium Silicon Battery Market Size, Share, Trends and Industry Analysis  2022 - 2030
Lithium Silicon Battery Market Size, Share, Trends and Industry Analysis 2022 - 2030

New Si–Cu and Si–Ni anode materials for lithium-ion batteries | SpringerLink
New Si–Cu and Si–Ni anode materials for lithium-ion batteries | SpringerLink

Silicon/Carbon Composite Anode Materials for Lithium-Ion Batteries |  SpringerLink
Silicon/Carbon Composite Anode Materials for Lithium-Ion Batteries | SpringerLink

Challenges in Accommodating Volume Change of Si Anodes for Li‐Ion Batteries  - Ko - 2015 - ChemElectroChem - Wiley Online Library
Challenges in Accommodating Volume Change of Si Anodes for Li‐Ion Batteries - Ko - 2015 - ChemElectroChem - Wiley Online Library

Recent Advances in Electrochemical-Based Silicon Production Technologies  with Reduced Carbon Emission | Research
Recent Advances in Electrochemical-Based Silicon Production Technologies with Reduced Carbon Emission | Research

Silicon/Carbon Nanotube/BaTiO3 Nanocomposite Anode: Evidence for Enhanced  Lithium-Ion Mobility Induced by the Local Piezoelectric Potential | ACS Nano
Silicon/Carbon Nanotube/BaTiO3 Nanocomposite Anode: Evidence for Enhanced Lithium-Ion Mobility Induced by the Local Piezoelectric Potential | ACS Nano

In Situ X-ray Diffraction Studies of (De)lithiation Mechanism in Silicon  Nanowire Anodes | ACS Nano
In Situ X-ray Diffraction Studies of (De)lithiation Mechanism in Silicon Nanowire Anodes | ACS Nano

Lithium-ion batteries most valuable to solar-plus-storage
Lithium-ion batteries most valuable to solar-plus-storage

Electrolytes for advanced lithium ion batteries using silicon-based anodes  - Journal of Materials Chemistry A (RSC Publishing)
Electrolytes for advanced lithium ion batteries using silicon-based anodes - Journal of Materials Chemistry A (RSC Publishing)