Relation between chemical reduction and crystalline growth in mixtures of low-dimensional NiO and reduced graphene oxide

  • Jee, Youngho; 
  • Ahn, Hae Jun; 
  • Kim, Sun Jie; 
  • Lee, Se-Hee; 
  • Kim, Kyeong-Wung; 
  • 외 2명
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초록

The carbothermal and graphenothermal reduction of metal oxide and graphite or graphene systems are critical for obtaining pure metals and designing new energy materials. However, the nano-level differences between these processes have not been investigated in detail. Herein, we investigate the relationship between crystalline growth and chemical reduction during the heat-treatment of reduced graphene oxide (RGO) and NiO nanoparticles. The heat-treated RGO/NiO mixtures exhibit complex interactions. Below a critical NiO concentration, the crystalline growth of RGO and NiO take precedence. Above this threshold, drastic Ni formation occurs by the chemical reduction of NiO. This demonstrates a concentration-dependent competitive relationship between chemical reduction and crystalline growth. Two factors require further study, namely, the low-dimensional shape/contact-dependent chemical reactivity between RGO and NiO, and the thermodynamic size-dependent driving force for crystalline growth of individual RGO and NiO crystals.

키워드

Carbothermal reduction; Graphenothermal reduction; Nickel oxide; Reduced graphene oxide; CARBOTHERMAL REDUCTION; KINETICS; NICKEL
제목
Relation between chemical reduction and crystalline growth in mixtures of low-dimensional NiO and reduced graphene oxide
저자
Jee, Youngho; Ahn, Hae Jun; Kim, Sun Jie; Lee, Se-Hee; Kim, Kyeong-Wung; Kim, Chang Min; Huh, Seung Hun
DOI
10.1016/j.matlet.2023.133870
발행일
2023-04-01
유형
Article
저널명
Materials Letters
권
336