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Regulating interface interaction in alumina/graphene composites with nano alumina coating transition layers.
Hu, Yan-Ze; Li, Jing; Luo, Li-Li; Hu, Shuang-Lin; Shen, Hua-Hai; Long, Xing-Gui.
Affiliation
  • Hu YZ; Institute of Nuclear Physics and Chemistry Science and Technology Innovation Park, No. 21 Horticultural Road Mianyang China Fanqing777@QQ.com.
  • Li J; Institute of Nuclear Physics and Chemistry Science and Technology Innovation Park, No. 21 Horticultural Road Mianyang China Fanqing777@QQ.com.
  • Luo LL; Institute of Nuclear Physics and Chemistry Science and Technology Innovation Park, No. 21 Horticultural Road Mianyang China Fanqing777@QQ.com.
  • Hu SL; Institute of Nuclear Physics and Chemistry Science and Technology Innovation Park, No. 21 Horticultural Road Mianyang China Fanqing777@QQ.com.
  • Shen HH; Institute of Nuclear Physics and Chemistry Science and Technology Innovation Park, No. 21 Horticultural Road Mianyang China Fanqing777@QQ.com.
  • Long XG; Institute of Nuclear Physics and Chemistry Science and Technology Innovation Park, No. 21 Horticultural Road Mianyang China Fanqing777@QQ.com.
RSC Adv ; 14(28): 20020-20031, 2024 Jun 18.
Article in En | MEDLINE | ID: mdl-38911829
ABSTRACT
The structure and properties of graphene/alumina composites are affected by the interface interaction. To demonstrate the influence of interface interaction on the structure of composite materials, a composite without graphene/matrix alumina interface was designed and prepared. We introduced a nano transition layer into the composite by pre-fabricating nano alumina coating on the surface of graphene, thus regulating the influence of interface interaction on the structure of the composite. According to the analysis of laser micro Raman spectroscopy, the structure of graphene was not seriously damaged during the modification process, and graphene was subjected to tensile or compressive stress along the 2D plane. The fracture behavior of the modified graphene/alumina composites is similar to that of pure alumina, but significantly different from that of pure graphene/alumina composites. The elastic modulus and hardness of composite material G/A/A are higher, while its microstructure has better density and uniformity. In situ HRSEM observation showed that there was a transition layer of alumina in the modified graphene/alumina composite. The transition layer blocks or buffers the interfacial stress interaction, therefore, the composite material exhibits a fracture behavior similar to that of pure alumina at this time. This work demonstrates that interface interactions have a significant impact on the structure and fracture behavior of graphene/alumina composites.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: RSC Adv Year: 2024 Document type: Article Country of publication: Reino Unido

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: RSC Adv Year: 2024 Document type: Article Country of publication: Reino Unido