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Showing papers by "Mingming Chen published in 2019"


Journal ArticleDOI
Ranran Ding1, Jizong Zhang1, Jie Zhang1, Zhenhua Li1, Chengyang Wang1, Mingming Chen1 
TL;DR: In this article, a dual-carbon protected Fe2N composite was synthesized by a reliable electrostatic self-assembly strategy, which can guarantee stable electrode structure, reduced electrode resistance and enhanced electrochemical reaction kinetics.

31 citations


Journal ArticleDOI
Kunlin Liu1, Xuewen Zheng1, Keke Wang1, Chengyang Wang1, Mingming Chen1 
01 Nov 2019-Carbon
TL;DR: In this article, a bottom-up strategy to prepare N-doped porous carbons by sodium metal-assisted carbonization of pyrrole is presented, which can increase the charge density and the wettability of electrode materials, to further reinforce the electrochemical performances of energy storage devices.

29 citations


Journal ArticleDOI
TL;DR: Enhanced electrochemical behaviors in lean electrolyte result from a three-in-one strategy realized by defects-included MoP/MoS2@C heterojunction, including incorporating the lithiuphilic and sulfophilic sites for PS confinement and electrocatalysis triggered by abundant S vacancies, Lewis and Brønste acid sites.
Abstract: In response to the concept of "compact energy storage", research on electrolyte dosage dwindling is definitely efficient owing to present electrolyte usage up to 70 wt % in a cell. While less electrolyte usage leads to slow reaction kinetics. Herein, a heterojunction, MoP/MoS2 core with much defects and vacancies coated by porous carbon shell, is synthesized. Besides, the small particle size of MoP/MoS2@C facilitates a close packing to form a dense and porous modified layer on PP-based (F-PP) separator. The heterojunction with defects exposes abundant interfaces and assures an adequate local electrolyte availability and an improved electrolyte affinity that are beneficial for Li+ transfer. When using F-PP separator, Li-S cell performs well in the lean electrolyte. Apart from a high discharging capacity of 517.1 mAh g-1 at 5 C in E/S = 10 (only half benchmark dosage), the cell realizes a favorable stability at C/2 over 500 cycles even in E/S = 7 (0.065% decay per cycle), demonstrating an effective polysulfides (PS) shuttling relief and reversibility of PS-relating chemical conversion. All these enhanced electrochemical behaviors in lean electrolyte result from a three-in-one strategy realized by defects-included MoP/MoS2@C heterojunction, including incorporating the lithiuphilic and sulfophilic sites for PS confinement and electrocatalysis triggered by abundant S vacancies and Lewis and Bronsted acid sites.

23 citations


Journal ArticleDOI
03 Sep 2019-Carbon
TL;DR: In this article, a bottom-up strategy to prepare carbon nanomaterials (PCNMs) by using the potassium-assisted carbonization of pyrrole was proposed, and the obtained materials possess nanorod microstructures with a high degree of graphitization and a high surface area of 2340m2.g−1.

11 citations