煅烧
微型多孔材料
材料科学
多孔性
化学工程
离子液体
草酸
催化作用
碳纤维
热解
十二面体
电导率
传质
电子转移
热液循环
离子键合
离子电导率
纳米结构
微型反应器
多孔介质
纳米技术
还原(数学)
密度泛函理论
过程(计算)
一步到位
作者
Danyan Lin,Jie Yang,Fengfeng Chen,Xi–Shi Tai,Zhongshan Chen,Xinrong Guo,Xiangke Wang,Wen Yao
标识
DOI:10.1002/advs.202518926
摘要
Carbon-based materials derived from metal-organic frameworks typically exhibit microporous structures and low conductivity, which significantly limit their catalytic activity. Herein, an effective strategy to prepare dodecahedral hierarchical porous nitrogen-doped carbon-based composites (d-PNC) by using ZIF-8 encapsulated with ionic liquid as pyrolysis precursors for efficient Cr(VI) reduction is developed. The encapsulated ionic liquid helps to precisely regulate the hierarchically porous structure in d-PNC. This hierarchically porous structure not only creates a favorable reaction microenvironment, facilitating the mass transfer of Cr species and their interaction with active sites, but also enhancing the conductivity of d-PNC and consequently accelerating the electron transfer of •CO2 - radicals to Cr species, thereby speeding up the reduction process of Cr(VI). Additionally, with the calcination temperature increasing, the content of defective C increases, and N species progressively transforms into graphitic-center N (N3). Density functional theory calculations reveal that the defective C active center substantially decreases the free energy change of the rate-determining step (from Cr(IV) to Cr(III)) through the synergistic effect of N3. Given these outstanding characteristics, the optimized d-PNC material can completely reduce Cr(VI) (333.3 mg g-1) in an oxalic acid solution within 2 min, outperforming its counterparts without a hierarchical structure and those calcined at significantly lower temperatures.
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