Electrospun nanofibers as a platform for advanced secondary batteries: a comprehensive review

JW Jung, CL Lee, S Yu, ID Kim - Journal of materials chemistry A, 2016 - pubs.rsc.org
Poor electrochemical performances of materials in commercial lithium-ion batteries (LIBs)
make it difficult to realize battery technologies for future electric power applications such as …

[HTML][HTML] Li-ion battery materials: present and future

N Nitta, F Wu, JT Lee, G Yushin - Materials today, 2015 - Elsevier
This review covers key technological developments and scientific challenges for a broad
range of Li-ion battery electrodes. Periodic table and potential/capacity plots are used to …

[HTML][HTML] A review of Li-ion batteries for autonomous mobile robots: Perspectives and outlook for the future

D McNulty, A Hennessy, M Li, E Armstrong… - Journal of Power …, 2022 - Elsevier
The development of advanced autonomous mobile robots (AMRs) is essential for achieving
the flexible work environment necessary for smart manufacturing. Complex perception …

Tuning the electrochemical behaviors of N-doped LiMnxFe1–xPO4/C via cation engineering with metal–organic framework-templated strategy

Y Li, Z Xu, X Zhang, Z Wu, JE Zhou, J Zhang… - Journal of Energy …, 2023 - Elsevier
LiFePO 4, as a prevailing cathode material for lithium-ion batteries (LIBs), still encounters
issues such as intrinsic poor electronic conductivity, inferior Li-ion diffusion kinetic, and two …

Recent Advances of Mn‐Rich LiFe1‐yMnyPO4 (0.5 ≤ y < 1.0) Cathode Materials for High Energy Density Lithium Ion Batteries

Y Deng, C Yang, K Zou, X Qin, Z Zhao… - Advanced Energy …, 2017 - Wiley Online Library
LiMnPO4 (LMP) is one of the most potential candidates for high energy density (≈ 700 W h
kg− 1) lithium ion batteries (LIBs). However, the intrinsically low electronic conductivity and …

Electrospun LiFe1−yMnyPO4/C Nanofiber Composites as Self‐Supporting Cathodes in Li‐Ion Batteries

R Von Hagen, H Lorrmann, KC Möller… - Advanced Energy …, 2012 - Wiley Online Library
Abstract LiFe1− yMnyPO4/C nanofiber composites are applied as cathode materials in Li‐
ion batteries and their electrochemical properties are explored. Nanofiber meshes are …

Synthesis of F-doped LiFePO4/C cathode materials for high performance lithium-ion batteries using co-precipitation method with hydrofluoric acid source

C Gao, J Zhou, G Liu, L Wang - Journal of Alloys and Compounds, 2017 - Elsevier
F-doped LiFePO 4/C materials were first synthesized using a co-precipitation method
followed by high-temperature treatment with hydrofluoric acid source. The structure …

Overview of olivines in lithium batteries for green transportation and energy storage

K Zaghib, A Mauger, CM Julien - Journal of Solid State Electrochemistry, 2012 - Springer
We present the progress on the physical chemistry of the olivine compounds since the
pioneering work of Prof. John Goodenough. This progress has allowed LiFePO 4 to become …

Precursor-based methods for low-temperature synthesis of defectless NaMnPO 4 with an olivine-and maricite-type structure

V Koleva, T Boyadzhieva, E Zhecheva, D Nihtianova… - …, 2013 - pubs.rsc.org
We report precursor-based methods for low-temperature synthesis of two structure
modifications of NaMnPO4. The maricite phase is thermodynamically more stable, while the …

In situ green synthesis of MnFe2O4/reduced graphene oxide nanocomposite and its usage for fabricating high-performance LiMn1/3Fe2/3PO4/reduced graphene …

K Wu, G Hu, Z Peng, Y Cao, K Du - Electrochimica Acta, 2016 - Elsevier
MnFe 2 O 4/reduced graphene oxide nanocomposite (MnFe 2 O 4/rGO) has been
synthesized via a green reduction-coprecipitation method for the first time, which involved in …