Flexible and free-standing electrode materials are prerequisite and key components for next-generation flexible energy storage and conversion devices. However, it is still a chanllenge to fabricate these materials from a continuous, straightforward, and facile method. Herein, we report a flexible composite film with silicon oxides decorated on few-walled carbon nanotubes, which can be continuously fabricated and directly drawn from the hot zone of the reactor. The composite film can be readily used for electrochemical lithium ion storage with high and reversible specific capacity, good rate capability, and excellent cycling performance. These exceptional characteristics make it very promising for flexible energy storage and other emerging a...
Nano-Si/(multi-wall carbon nanotube) (Si/MWCNT) composite paper was prepared as flexible electrode...
Carbon nanotube (CNT) and TiO2 nanofibre composite films are prepared and used as anode materials fo...
Silicon/single-walled carbon nanotube composite paper as a flexible anode material for lithium ion b...
Flexible and free-standing electrode materials are prerequisite and key components for next-generati...
Flexible and free-standing electrode materials are prerequisite and key components for next-generati...
© 2020 Science Press The rapid development of portable and wearable electronics has called for novel...
Silicon is an attractive alloy-type anode material because of its highest known capacity (4200 mAh/g...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
Batteries come in different shapes and sizes. Their capacity also differs. Some may charge and disch...
Thin and lightweight flexible lithium-ion batteries (LIBs) with high volumetric capacities are cruci...
Silicon (Si)-based anodes demonstrate great potential for the revolutionary enhancement in the energ...
An effective, nondestructive, and universal strategy to homogeneously modify freestanding carbon nan...
© 2018 The Royal Society of Chemistry. Ultra-stretchable carbon nanotube (CNT) composite electrodes ...
© 2019 Due to the sufficient ion diffusion channels provided by the large interlayer spacing, layere...
Thin and lightweight flexible lithium-ion batteries (LIBs) with high volumetric capacities are cruci...
Nano-Si/(multi-wall carbon nanotube) (Si/MWCNT) composite paper was prepared as flexible electrode...
Carbon nanotube (CNT) and TiO2 nanofibre composite films are prepared and used as anode materials fo...
Silicon/single-walled carbon nanotube composite paper as a flexible anode material for lithium ion b...
Flexible and free-standing electrode materials are prerequisite and key components for next-generati...
Flexible and free-standing electrode materials are prerequisite and key components for next-generati...
© 2020 Science Press The rapid development of portable and wearable electronics has called for novel...
Silicon is an attractive alloy-type anode material because of its highest known capacity (4200 mAh/g...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
Batteries come in different shapes and sizes. Their capacity also differs. Some may charge and disch...
Thin and lightweight flexible lithium-ion batteries (LIBs) with high volumetric capacities are cruci...
Silicon (Si)-based anodes demonstrate great potential for the revolutionary enhancement in the energ...
An effective, nondestructive, and universal strategy to homogeneously modify freestanding carbon nan...
© 2018 The Royal Society of Chemistry. Ultra-stretchable carbon nanotube (CNT) composite electrodes ...
© 2019 Due to the sufficient ion diffusion channels provided by the large interlayer spacing, layere...
Thin and lightweight flexible lithium-ion batteries (LIBs) with high volumetric capacities are cruci...
Nano-Si/(multi-wall carbon nanotube) (Si/MWCNT) composite paper was prepared as flexible electrode...
Carbon nanotube (CNT) and TiO2 nanofibre composite films are prepared and used as anode materials fo...
Silicon/single-walled carbon nanotube composite paper as a flexible anode material for lithium ion b...