We report the synthesis of a novel three-dimensional anode, based on the core shell Sn-Ni-Cu-alloy@carbon nanorods which was fabricated by pulse nanoelectrodeposition. Li ion batteries equipped with the three-dimensional anode demonstrated almost 100% Capacity retention over 400 cycles at 450 mA g(-1) and excellent rate performance even up to 9000 mA g(-1) for advanced Li-ion battery. Insight of the high performance can be attributed to three key factors, Li-Sn alloys for Li-ion storage, Ni-Cu matrix for the electronic conductive and nanorods structure, and the carbon shell for the,electronic/Li-ion conductive and holding stable solid electrolyte interphase (SEI), because these shells always kept stable volumes after extension of initial ch...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
In this work, we synthesized the SnO2–Ni-carbon nanotube (CNT) (SNC) composite anode material by hyd...
Sn-based alloy materials are strong candidates to replace graphitic carbon as the anode for the next...
New high surface area nano-architectured copper current collectors have been designed based on simpl...
A three-dimensional (3D) architecture design of the battery electrodes is believed to enhance the en...
Lithium ion battery anodes derived from Sn and Sn oxides have been of considerable interest because ...
A Fe2O3@NiO core/shell nanorod array on carbon cloth was prepared with the aid of hydrothermal synth...
Robust and fast lithium energy storage with a high energy density is highly desired to accelerate th...
Nanostructured Sn@C anode is synthesized by carbon coating of nanosized tin for Li-ion battery. The ...
In this work we disclose an electrode based on a formulation which differs from all those previously...
Carbon fiber (CF)-based freestanding intermetallic Ni-Sn alloy is prepared by a facile one-pot elect...
All high‐capacity anodes for lithium‐ion (Li‐ion) batteries, such as those based on tin (Sn) and sil...
A novel nanostructured SneFe2O3eC anode material, prepared by high-energy ball milling, is here orig...
Core-shell type nanoalloys in which the Cu atoms uniformly reside as a shell around a core of Sn nan...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
In this work, we synthesized the SnO2–Ni-carbon nanotube (CNT) (SNC) composite anode material by hyd...
Sn-based alloy materials are strong candidates to replace graphitic carbon as the anode for the next...
New high surface area nano-architectured copper current collectors have been designed based on simpl...
A three-dimensional (3D) architecture design of the battery electrodes is believed to enhance the en...
Lithium ion battery anodes derived from Sn and Sn oxides have been of considerable interest because ...
A Fe2O3@NiO core/shell nanorod array on carbon cloth was prepared with the aid of hydrothermal synth...
Robust and fast lithium energy storage with a high energy density is highly desired to accelerate th...
Nanostructured Sn@C anode is synthesized by carbon coating of nanosized tin for Li-ion battery. The ...
In this work we disclose an electrode based on a formulation which differs from all those previously...
Carbon fiber (CF)-based freestanding intermetallic Ni-Sn alloy is prepared by a facile one-pot elect...
All high‐capacity anodes for lithium‐ion (Li‐ion) batteries, such as those based on tin (Sn) and sil...
A novel nanostructured SneFe2O3eC anode material, prepared by high-energy ball milling, is here orig...
Core-shell type nanoalloys in which the Cu atoms uniformly reside as a shell around a core of Sn nan...
The demand of improvement in lithium-ion battery technology in terms of specific capacity and safety...
A tin-carbon composite synthesized by high energy mechanical milling (HEMM) technique is characteriz...
In this work, we synthesized the SnO2–Ni-carbon nanotube (CNT) (SNC) composite anode material by hyd...
Sn-based alloy materials are strong candidates to replace graphitic carbon as the anode for the next...