The spinel Li4Ti5O12 (LTO) is a promising lithium ion battery anode material with the potential to supplement graphite as an industry standard, but its low electrical conductivity and Li–ion diffusivity need to be overcome. Here, mesoporous LTO microspheres with carbon-coatings were formed by phase separation of a homopolymer from microphase-separated block copolymers of varying molar masses containing sol–gel precursors. Upon heating the composite underwent a sol–gel condensation reaction followed by the eventual pyrolysis of the polymer templates. The optimised mesoporous LTO microspheres demonstrated an excellent electrochemical performance with an excellent specific discharge capacity of 164 mA h g−1, 95% of which was retained after 100...
Topic 1 - Lithium based Electrode Materials 1: abstract MA2016-03 215The high discharge rate perform...
B6 - Poster SessionWhile lithium titanate (LTO) has attracted strong interests for its durability an...
Composite of anatase titania (TiO2) nanospheres and carbon grown and self-assembled into micron-si...
The spinel Li4Ti5O12 (LTO) is a promising lithium ion battery anode material with the potential to s...
Mesoporous titania microspheres (MTMs) have been employed in many applications, including (photo)cat...
Although nanosizing Li4Ti5O12 (LTO) materials is an effective way to improve their rate performances...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
The Li-rich layered cathode material Li1.165Mn0.501Ni0.167Co0.167O2 with porous structure has been s...
Mesoporous Li4Ti5O12 (LTO) thin film is an important anode material for lithium-ion batteries (LIBs)...
In this work, carbon-coated hierarchical acanthosphere-like Li4Ti5O12 microspheres (denoted as AM-LT...
Lithium ion batteries (LIBs) have grabbed increasing attention because they are the dominant power s...
To comprehensively improve the performance of Li4Ti5O12 (LTO), a synergistic method combining compos...
Li4Ti5O12 (LTO)-carbon (C)-reduced graphene oxide (rGO) microspheres are synthesized via in situ sup...
Composite of anatase titania (TiO2) nanospheres and carbon grown and self-assembled into micron-si...
Topic 1 - Lithium based Electrode Materials 1: abstract MA2016-03 215The high discharge rate perform...
B6 - Poster SessionWhile lithium titanate (LTO) has attracted strong interests for its durability an...
Composite of anatase titania (TiO2) nanospheres and carbon grown and self-assembled into micron-si...
The spinel Li4Ti5O12 (LTO) is a promising lithium ion battery anode material with the potential to s...
Mesoporous titania microspheres (MTMs) have been employed in many applications, including (photo)cat...
Although nanosizing Li4Ti5O12 (LTO) materials is an effective way to improve their rate performances...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
The Li-rich layered cathode material Li1.165Mn0.501Ni0.167Co0.167O2 with porous structure has been s...
Mesoporous Li4Ti5O12 (LTO) thin film is an important anode material for lithium-ion batteries (LIBs)...
In this work, carbon-coated hierarchical acanthosphere-like Li4Ti5O12 microspheres (denoted as AM-LT...
Lithium ion batteries (LIBs) have grabbed increasing attention because they are the dominant power s...
To comprehensively improve the performance of Li4Ti5O12 (LTO), a synergistic method combining compos...
Li4Ti5O12 (LTO)-carbon (C)-reduced graphene oxide (rGO) microspheres are synthesized via in situ sup...
Composite of anatase titania (TiO2) nanospheres and carbon grown and self-assembled into micron-si...
Topic 1 - Lithium based Electrode Materials 1: abstract MA2016-03 215The high discharge rate perform...
B6 - Poster SessionWhile lithium titanate (LTO) has attracted strong interests for its durability an...
Composite of anatase titania (TiO2) nanospheres and carbon grown and self-assembled into micron-si...