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Advanced Functional Materials | Vol.26, Issue.47 | | Pages 8650-8650

Advanced Functional Materials

Porous Carbon: Heteroatom (N or N-S)-Doping Induced Layered and Honeycomb Microstructures of Porous Carbons for CO2 Capture and Energy Applications (Adv. Funct. Mater. 47/2016)

Huayang Zhang   Shaobin Wang   Martin Saunders   Moses Tade   Hongqi Sun   Wenjie Tian   Alexandra Suvorova  
Abstract

On page 8651, H. Sun, S. Wang, and co-workers present a facile strategy to synthesize two microstructured porous carbons for CO2 capture and energy applications. Two morphologies, N-doped pillaring layered carbon and N, S co-doped honeycomb carbon are prepared through a one-pot pyrolysis process of the mixture containing glucose, sodium bicarbonate, and urea or thiourea.

Original Text (This is the original text for your reference.)

Porous Carbon: Heteroatom (N or N-S)-Doping Induced Layered and Honeycomb Microstructures of Porous Carbons for CO2 Capture and Energy Applications (Adv. Funct. Mater. 47/2016)

On page 8651, H. Sun, S. Wang, and co-workers present a facile strategy to synthesize two microstructured porous carbons for CO2 capture and energy applications. Two morphologies, N-doped pillaring layered carbon and N, S co-doped honeycomb carbon are prepared through a one-pot pyrolysis process of the mixture containing glucose, sodium bicarbonate, and urea or thiourea.

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Huayang Zhang, Shaobin Wang, Martin Saunders, Moses Tade, Hongqi Sun,Wenjie Tian, Alexandra Suvorova,.Porous Carbon: Heteroatom (N or N-S)-Doping Induced Layered and Honeycomb Microstructures of Porous Carbons for CO2 Capture and Energy Applications (Adv. Funct. Mater. 47/2016). 26 (47),8650-8650.

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