Publications by authors named "Ren-Feng Dong"

Lithium-sulfur (Li-S) battery is regarded as one of the most promising next-generation efficient energy storage systems because of its ultrahigh theoretical capacity of 1675 mAh/g and energy density of 2600 Wh/kg accompanied by the environmental benignity and abundance from natural sulfur. However, the insulating nature of sulfur and the dissolution of the polysulfides LiS (4 ≤ n ≤ 8) seriously restrict its practical application. The metastable small sulfur molecules (S) stored in microporous carbon (pore size of <0.

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The removal of acetylene from the industrial feed gas to purify the ethylene is an important and challenging issue. The adsorption-based separation is a more environmentally friendly and cost-effective method compared to the current removal approaches such as partial hydrogenation and solvent extraction, while facing the challenge of developing materials with high CH/CH selectivity and CH capacity. Herein, by expanding mixed-metal organic frameworks (M'MOFs) structure with high CH/CH selectivity, we report a pillar-layered MOF, {[Cd(MPCZ)(BDC)(NO)(HO)]·G} (MECS-5), which not only inherits the sieving effects of M'MOF series but also develops its own characteristic-the 2D layer with expanding space and the plane pore-partition group to "cover" it.

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