Construction of heteroatom-doped and three-dimensional graphene materials for the applications in supercapacitors: A review
Z Li, J Lin, B Li, C Yu, H Wang, Q Li - Journal of energy storage, 2021 - Elsevier
Supercapacitor is a promising energy storage device with the advantages of fast response to
electrochemical process, long service life and high-power density. Scientists in the world …
electrochemical process, long service life and high-power density. Scientists in the world …
Graphene transfer methods: A review
Graphene is a material with unique properties that can be exploited in electronics, catalysis,
energy, and bio-related fields. Although, for maximal utilization of this material, high-quality …
energy, and bio-related fields. Although, for maximal utilization of this material, high-quality …
Pore and heteroatom engineered carbon foams for supercapacitors
Carbonaceous materials are attractive supercapacitor electrode materials due to their high
electronic conductivity, large specific surface area, and low cost. Here, a unique hierarchical …
electronic conductivity, large specific surface area, and low cost. Here, a unique hierarchical …
S-Doped N-Rich Carbon Nanosheets with Expanded Interlayer Distance as Anode Materials for Sodium-Ion Batteries.
2D composites with S do** into N-rich carbon nanosheets are fabricated, whose interlayer
distance becomes large enough for Na+ insertion and diffusion. The large surface area and …
distance becomes large enough for Na+ insertion and diffusion. The large surface area and …
N, P, S co-doped hollow carbon polyhedra derived from MOF-based core–shell nanocomposites for capacitive deionization
J Zhang, J Fang, J Han, T Yan, L Shi… - Journal of Materials …, 2018 - pubs.rsc.org
Capacitive deionization (CDI) is a prospective technique for desalination of saline water on
account of its lower cost, lower energy-consumption, and absence of secondary pollution. In …
account of its lower cost, lower energy-consumption, and absence of secondary pollution. In …
Metal organic framework‐MXene nanoarchitecture for fast responsive and ultra‐stable electro‐ionic artificial muscles
Electro‐ionic soft actuators, capable of continuous deformations replacing non‐compliant
rigid mechanical components, attract increasing interest in the field of next‐generation …
rigid mechanical components, attract increasing interest in the field of next‐generation …
High-performance graphdiyne-based electrochemical actuators
C Lu, Y Yang, J Wang, R Fu, X Zhao, L Zhao… - Nature …, 2018 - nature.com
Electrochemical actuators directly converting electrical energy to mechanical energy are
critically important for artificial intelligence. However, their energy transduction efficiency is …
critically important for artificial intelligence. However, their energy transduction efficiency is …
Flexible and stable high-energy lithium-sulfur full batteries with only 100% oversized lithium
Lightweight and flexible energy storage devices are urgently needed to persistently power
wearable devices, and lithium-sulfur batteries are promising technologies due to their low …
wearable devices, and lithium-sulfur batteries are promising technologies due to their low …
Polysulfonated covalent organic framework as active electrode host for mobile cation guests in electrochemical soft actuator
Tailoring transfer dynamics of mobile cations across solid-state electrolyte-electrode
interfaces is crucial for high-performance electrochemical soft actuators. In general …
interfaces is crucial for high-performance electrochemical soft actuators. In general …
Air‐Working Electrochromic Artificial Muscles
Artificial muscles are indispensable components for next‐generation robotics to mimic the
sophisticated movements of living systems and provide higher output energies when …
sophisticated movements of living systems and provide higher output energies when …