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Featured researches published by Hua Lan.


Journal of Materials Chemistry | 2017

Electrospun WNb12O33 nanowires: superior lithium storage capability and their working mechanism

Lei Yan; Hua Lan; Haoxiang Yu; Shangshu Qian; Xing Cheng; Nengbing Long; Ruifeng Zhang; Miao Shui; Jie Shu

In this study, WNb12O33 with different morphologies were fabricated using various sample collectors through a facile electrospinning method. The WNb12O33 nanorods (NR-WNb12O33) were synthesized using a rounded roller as the sample collector, and the WNb12O33 nanowires (NW-WNb12O33) were prepared using a stainless steel net as a sample collector for the first time. The possible formation process of different morphologies may depend on the self-aggregation of the precursor. Evaluated as a lithium storage anode, NW-WNb12O33 exhibited higher reversible capacity, longer cycle life, and superior rate performance than NR-WNb12O33. Even when cycled at 700 mA g−1, NW-WNb12O33 could retain capacity retention as high as 86.1% after 700 cycles (only 78.9% for NR-WNb12O33). Moreover, the structural change and lithium storage mechanism were studied via in situ X-ray diffraction. It was found that lithium ions insert into the WNb12O33 structure via three steps, and the total volume change is only 1.55%. In addition, in situ observation results also demonstrated that the lithiation/delithiation behavior of NW-WNb12O33 is highly reversible, which makes it a potential candidate for probable high-rate and long-life anode for lithium-ion batteries.


Nano Energy | 2017

TiNb2O7 hollow nanofiber anode with superior electrochemical performance in rechargeable lithium ion batteries

Haoxiang Yu; Hua Lan; Lei Yan; Shangshu Qian; Xing Cheng; Haojie Zhu; Nengbing Long; Miao Shui; Jie Shu


ACS Sustainable Chemistry & Engineering | 2017

Carbon-Enhanced Electrochemical Performance for Spinel Li5Cr7Ti6O25 as a Lithium Host Material

Lei Yan; Shangshu Qian; Haoxiang Yu; Peng Li; Hua Lan; Nengbing Long; Ruifeng Zhang; Miao Shui; Jie Shu


Journal of Electroanalytical Chemistry | 2017

Lithiation-delithiation kinetics of BaLi2Ti6O14 anode in high-performance secondary Li-ion batteries

Minghe Luo; Xiaoting Lin; Hua Lan; Haoxiang Yu; Lei Yan; Shangshu Qian; Nengbing Long; Miao Shui; Jie Shu


Ceramics International | 2017

Sr1−xNa2xLi2Ti6O14 (0≤x≤1) as anode materials for rechargeable Li-ion batteries

Hua Lan; Shangshu Qian; Qin Wang; Lei Yan; Haoxiang Yu; Peng Li; Nengbing Long; Miao Shui; Jie Shu


Journal of Electroanalytical Chemistry | 2017

Electrochemical kinetics of Na2Ti3O7 as anode material for lithium-ion batteries

Haojie Zhu; Ke Yang; Hua Lan; Shangshu Qian; Haoxiang Yu; Lei Yan; Nengbing Long; Miao Shui; Jie Shu


Electrochimica Acta | 2017

Fabrication of Ba0.95M0.05Li2Ti6O14 (M = Ag, Pb, Al) as high performance anode candidates for lithium secondary batteries

Haoxiang Yu; Lei Yan; Shangshu Qian; Peng Li; Hua Lan; Haojie Zhu; Nengbing Long; Miao Shui; Jie Shu


Journal of Power Sources | 2017

Improve the lithium storage performance of SrLi2Ti6O14 anode material by trivalent metal ion doping

Shangshu Qian; Haoxiang Yu; Lei Yan; Peng Li; Hua Lan; Haojie Zhu; Nengbing Long; Miao Shui; Jie Shu


Electrochimica Acta | 2017

Ba0.9La0.1Li2Ti6O14: Advanced lithium storage material for lithium-ion batteries

Haoxiang Yu; Minghe Luo; Shangshu Qian; Lei Yan; Peng Li; Hua Lan; Nengbing Long; Miao Shui; Jie Shu


Ceramics International | 2017

Strontium nitrate as a stable and potential anode material for lithium ion batteries

Ke Yang; Hua Lan; Peng Li; Haoxiang Yu; Shangshu Qian; Lei Yan; Nengbing Long; Miao Shui; Jie Shu

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