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Dive into the research topics where Ruihan Zhang is active.

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Featured researches published by Ruihan Zhang.


Journal of Materials Chemistry | 2018

Highly efficient and ultra-stable boron-doped graphite felt electrodes for vanadium redox flow batteries

Haoran Jiang; Wei Shyy; Lin Zeng; Ruihan Zhang; Tianshou Zhao

Developing high-performance electrodes with high operating current densities and long-term cycling stability is crucial to the widespread application of vanadium redox flow batteries (VRFBs). In this work, boron-doped graphite felt electrodes are designed, fabricated and tested for VRFBs. The first-principles study first demonstrates that the boron-doped carbon surface possesses highly active and stabilized reaction sites. Based on this finding, boron-doped graphite felt electrodes are fabricated for VRFBs. Testing results show that the batteries with boron-doped graphite felt electrodes achieve energy efficiencies of 87.40% and 82.52% at the current densities of 160 and 240 mA cm−2, which are 15.63% and 19.50% higher than those with the original electrodes. In addition, the batteries can also be operated at high current densities of 320 and 400 mA cm−2 with energy efficiencies of 77.97% and 73.63%, which are among the highest performances in the open literature. More excitingly, the VRFBs with the boron-doped graphite felt electrodes exhibit excellent stability during long-term cycling tests. The batteries can be stably cycled for more than 2000 cycles at 240 mA cm−2 with ultra-low capacity and efficiency decay rates of only 0.028% and 0.0002% per cycle. In addition, after refreshing the electrolytes, the performances of the batteries are nearly recovered regardless of the inevitable decay of the membrane. All these results suggest that highly efficient and ultra-stable boron-doped graphite felts are promising electrodes for VRFBs.


Chinese Science Bulletin | 2017

Ab initio prediction and characterization of phosphorene-like SiS and SiSe as anode materials for sodium-ion batteries

Haoran Jiang; Tianshou Zhao; Yuxun Ren; Ruihan Zhang; Maochun Wu


Applied Energy | 2016

Effects of Moist Air on the Cycling Performance of Non-aqueous Lithium-air Batteries

Peng Tan; Wei Shyy; Tianshou Zhao; Ruihan Zhang; Xingbao Zhu


Electrochimica Acta | 2017

High-performance nitrogen-doped titania nanowire decorated carbon cloth electrode for lithium-polysulfide batteries

Yuxun Ren; Tianshou Zhao; Ming Liu; Lei Wei; Ruihan Zhang


Energy technology | 2018

A Zinc-Bromine Flow Battery with Improved Design of Cell Structure and Electrodes

Maochun Wu; Tianshou Zhao; Ruihan Zhang; Haoran Jiang; Lei Wei


Electrochimica Acta | 2017

Ruthenium dioxide-decorated carbonized tubular polypyrrole as a bifunctional catalyst for non-aqueous lithium-oxygen batteries

Ruihan Zhang; Tianshou Zhao; Peng Tan; Maochun Wu; Haoran Jiang


Journal of Power Sources | 2018

Improved electrolyte for zinc-bromine flow batteries

Maochun Wu; Tianshou Zhao; Lei Wei; Haoran Jiang; Ruihan Zhang


Energy technology | 2018

Paramecium-Like Iron Oxide Nanotubes as a Cost-Efficient Catalyst for Nonaqueous Lithium-Oxygen Batteries

Ruihan Zhang; Tianshou Zhao; Maochun Wu; Peng Tan; Haoran Jiang


Electrochemistry Communications | 2018

NiCo 2 O 4 nanowires@MnO x nanoflakes supported on stainless steel mesh with superior electrocatalytic performance for anion exchange membrane water splitting

Lin Zeng; Tianshou Zhao; Ruihan Zhang; Jianbo Xu


Applied Energy | 2019

A bi-porous graphite felt electrode with enhanced surface area and catalytic activity for vanadium redox flow batteries

Haoran Jiang; Wei Shyy; Maochun Wu; Ruihan Zhang; Tianshou Zhao

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Tianshou Zhao

Hong Kong University of Science and Technology

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Haoran Jiang

Hong Kong University of Science and Technology

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Maochun Wu

Hong Kong University of Science and Technology

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Lei Wei

Hong Kong University of Science and Technology

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Wei Shyy

Hong Kong University of Science and Technology

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Lin Zeng

Hong Kong University of Science and Technology

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Peng Tan

Hong Kong University of Science and Technology

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Yuxun Ren

Hong Kong University of Science and Technology

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Jianbo Xu

Hong Kong University of Science and Technology

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Xingbao Zhu

Hong Kong University of Science and Technology

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