Synthesis of graphene mesosponge via catalytic methane decomposition on magnesium oxide

Synthesis of graphene mesosponge via catalytic methane decomposition on magnesium oxide
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DOI:
10.1039/d1ta02326h
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发表时间:
2021-06
影响因子:
11.9
通讯作者:
S. Sunahiro;K. Nomura;S. Goto;Kazuya Kanamaru;R. Tang;Masanori Yamamoto;Takeharu Yoshii;Junko N. Kondo;Qi Zhao;Azeem Ghulam Nabi;R. Crespo‐Otero;D. Di Tommaso;T. Kyotani;H. Nishihara
S. Sunahiro;K. Nomura;S. Goto;Kazuya Kanamaru;R. Tang;Masanori Yamamoto;Takeharu Yoshii;Junko N. Kondo;Qi Zhao;Azeem Ghulam Nabi;R. Crespo‐Otero;D. Di Tommaso;T. Kyotani;H. Nishihara
中科院分区:
材料科学2区
文献类型:
--
作者:
S. Sunahiro;K. Nomura;S. Goto;Kazuya Kanamaru;R. Tang;Masanori Yamamoto;Takeharu Yoshii;Junko N. Kondo;Qi Zhao;Azeem Ghulam Nabi;R. Crespo‐Otero;D. Di Tommaso;T. Kyotani;H. Nishihara

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氧化镁对甲烷转化为碳具有特定的催化作用,是一种经济有效、环境友好的模板,可以制备孔隙率高、稳定性好、具有超级柔软和弹性的石墨烯介孔。
MgO has specific catalysis for CH4-to-C conversion, and functions as a cost-effective and environmentally friendly template to produce graphene mesosponge with developed porosity, excellent stability, and super soft and elastic properties.