Advances in carbon materials for sodium and potassium storage

M Liu, Y Wang, F Wu, Y Bai, Y Li… - Advanced Functional …, 2022 - Wiley Online Library
Over the past decades, ground‐breaking techniques and transformative progress have been
achieved on exploring alternative battery candidates beyond lithium‐ion batteries, among …

Alternative binders for sustainable electrochemical energy storage–the transition to aqueous electrode processing and bio-derived polymers

D Bresser, D Buchholz, A Moretti, A Varzi… - Energy & …, 2018 - pubs.rsc.org
In this review, we discuss the most recent developments in the field of green binders for
batteries and supercapacitors and explain how they could decrease cost and environmental …

Sodium-ion battery anodes: Status and future trends

W Zhang, F Zhang, F Ming, HN Alshareef - EnergyChem, 2019 - Elsevier
Lithium-ion batteries (LIBs) have been playing the leading role in energy storage modules of
electric vehicles and hand-held electronics. The application of LIBs in future large-scale …

Porous heterostructured MXene/carbon nanotube composite paper with high volumetric capacity for sodium-based energy storage devices

X Xie, MQ Zhao, B Anasori, K Maleski, CE Ren, J Li… - Nano Energy, 2016 - Elsevier
The global availability of sodium and a possibility to avoid the use of copper current
collectors make electrochemical sodium-ion storage attractive for battery and metal-ion …

Interphases in sodium‐ion batteries

J Song, B Xiao, Y Lin, K Xu, X Li - Advanced Energy Materials, 2018 - Wiley Online Library
Sodium‐ion batteries (SIBs) as economical, high energy alternatives to lithium‐ion batteries
(LIBs) have received significant attention for large‐scale energy storage in the last few …

Electrolytes, SEI formation, and binders: a review of nonelectrode factors for sodium‐ion battery anodes

C Bommier, X Ji - Small, 2018 - Wiley Online Library
Through intense effort in recent years, knowledge of Na‐ion batteries has been advanced
significantly, pertaining to electrodes. Often, such progress has been accompanied by using …

Na‐ion batteries for large scale applications: a review on anode materials and solid electrolyte interphase formation

MÁ Muñoz‐Márquez, D Saurel… - Advanced Energy …, 2017 - Wiley Online Library
The urgent need for optimizing the available energy through smart grids and efficient large‐
scale energy storage systems is pushing the construction and deployment of Li‐ion batteries …

From charge storage mechanism to performance: a roadmap toward high specific energy sodium‐ion batteries through carbon anode optimization

D Saurel, B Orayech, B Xiao, D Carriazo… - Advanced Energy …, 2018 - Wiley Online Library
While sodium‐ion batteries (SIBs) represent a low‐cost substitute for Li‐ion batteries (LIBs),
there are still several key issues that need to be addressed before SIBs become market …

Uniform yolk-shell iron sulfide–carbon nanospheres for superior sodium–iron sulfide batteries

YX Wang, J Yang, SL Chou, HK Liu, W Zhang… - Nature …, 2015 - nature.com
Sodium–metal sulfide battery holds great promise for sustainable and cost-effective
applications. Nevertheless, achieving high capacity and cycling stability remains a great …

Advanced phosphorus‐based materials for lithium/sodium‐ion batteries: recent developments and future perspectives

Y Fu, Q Wei, G Zhang, S Sun - Advanced Energy Materials, 2018 - Wiley Online Library
High‐performance and lost‐cost lithium‐ion and sodium‐ion batteries are highly desirable
for a wide range of applications including portable electronic devices, transportation (eg …