LiFePO4/carbon nanowires with 3D nano-network structure as potential high performance cathode for lithium ion batteries

N Bai, K Xiang, W Zhou, H Lu, X Zhao, H Chen - Electrochimica Acta, 2016 - Elsevier
LiFePO 4/carbon nanowires with three-dimensional (3D) nano-network structure were
successfully synthesized via evaporative self-assembly method induced by amylose. The …

Freeze-drying synthesis of three-dimensional porous LiFePO4 modified with well-dispersed nitrogen-doped carbon nanotubes for high-performance lithium-ion …

X Tu, Y Zhou, Y Song - Applied Surface Science, 2017 - Elsevier
The three-dimensional porous LiFePO 4 modified with uniformly dispersed nitrogen-doped
carbon nanotubes has been successfully prepared by a freeze-drying method. The …

In situ constructed (010)-oriented LiFePO4 nanocrystals/carbon nanofiber hybrid network: Facile synthesis of free-standing cathodes for lithium-ion batteries

Z Cao, M Sang, S Chen, J Jia, M Yang, H Zhang, X Li… - Electrochimica …, 2020 - Elsevier
A free-standing LiFePO 4/carbon nanofiber hybrid (LFP/CF) electrode with (010)-oriented
LiFePO 4 nanocrystals was in-situ constructed by a one-pot electrospinning method. It is …

Facile low-temperature polyol process for LiFePO4 nanoplate and carbon nanotube composite

G Wu, Y Zhou, X Gao, Z Shao - Solid state sciences, 2013 - Elsevier
Crystalline LiFePO 4 nanoplates were incorporated with 5 wt.% multi-walled carbon
nanotubes (CNTs) via a facile low temperature polyol process, in one single step without …

The morphology controlled synthesis of 3D networking LiFePO 4 with multiwalled-carbon nanotubes for Li-ion batteries

G Qin, S Xue, Q Ma, C Wang - CrystEngComm, 2014 - pubs.rsc.org
3D hierarchical LiFePO4 particles networked with electronically conducting multi-walled
carbon nanotubes (MWCNT) including particle-like nanoparticles, shuttle-like nanoparticles …

Rational design of mesoporous LiFePO4@ C nanofibers as cathode materials for energy storage

Y Hu, P Guo, J Thompson, Z Wang - Ceramics International, 2017 - Elsevier
In this work, the mesoporous LiFePO 4@ C nanofibers have been successfully fabricated
through a facile electrospinning method. The structure, morphology, chemical composition …

LiFePO4/C composite with 3D carbon conductive network for rechargeable lithium ion batteries

Y Xing, YB He, B Li, X Chu, H Chen, J Ma, H Du… - Electrochimica …, 2013 - Elsevier
A novel LiFePO 4/C composite with 3D carbon network was prepared using Cetyltrimethyl
Ammonium Bromid (CTAB) and starch as carbon sources via a facile method. The 3D …

Solvothermal synthesis of LiFePO4 nanorods as high-performance cathode materials for lithium ion batteries

Y Wang, B Zhu, Y Wang, F Wang - Ceramics International, 2016 - Elsevier
Well-dispersed LiFePO 4 nanorods in diameter of ca. 70 nm and length of 90–150 nm are
prepared via a solvothermal method in the water-ethylene glycol (1: 15, v/v) mixture. The …

A novel nano structured LiFePO4/C composite as cathode for Li-ion batteries

H Zhang, D Liu, X Qian, C Zhao, Y Xu - Journal of Power Sources, 2014 - Elsevier
A novel network LiFePO 4/C composite was prepared by mixing precursor solution with
carbon aerogel (CA) via a simple solution impregnation method, characterized by XRD …

Synthesis of spindle-shaped nanoporous C–LiFePO4 composite and its application as a cathodes material in lithium ion batteries

C Su, L Xu, B Wu, C Zhang - Electrochimica acta, 2011 - Elsevier
In this work, LiFePO4/C composites were prepared in hydrothermal system by using iron
gluconate as iron source, and two feeding sequences during the preparation were …