Recently, upcycling waste plastics into high-value-added carbon nanomaterials has attracted much attention; however, few studies have focused on the conversion of waste plastics into graphene with high yield. Herein, we report a simple novel method to synthesize graphene flakes (GFs) with high yield through catalytic carbonization of waste polypropylene (PP) using organically modified montmorillonite (OMMT) as degradation catalyst and template at 700 °C. The yield, morphology, microstructure, phase structure, thermal stability, and surface element composition of GFs were investigated. In addition, it was found that OMMT not only promoted the degradation of waste PP into light hydrocarbons and aromatics but also acted as template and catalyz...
Conversion of waste plastics into high value-added carbon nanomaterials has gained wide research int...
Conversion of waste plastics into high value added carbon nanomaterials has gained wide research int...
Interest on graphene and related materials is currently arising due to their excellent properties fo...
Recently, upcycling waste plastics into high-value-added carbon nanomaterials has attracted much att...
Recycling aromatic plastics, such as polystyrene (PS) and polyethylene terephthalate (PET), is compl...
Recycling aromatic plastics, such as polystyrene (PS) and polyethylene terephthalate (PET), is compl...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
Plastic materials have become inevitable daily-life products in modern life due to their low cost, h...
Plastic materials have become inevitable daily-life products in modern life due to their low cost, h...
Among carbon-based nanomaterials, graphene and its derivatives have received remarkable attention du...
Light weight vehicle design is a principal keystone to improving fuel efficiency and vehicle perform...
Light weight vehicle design is a principal keystone to improving fuel efficiency and vehicle perform...
Conversion of waste plastics into high value-added carbon nanomaterials has gained wide research int...
Conversion of waste plastics into high value added carbon nanomaterials has gained wide research int...
Interest on graphene and related materials is currently arising due to their excellent properties fo...
Recently, upcycling waste plastics into high-value-added carbon nanomaterials has attracted much att...
Recycling aromatic plastics, such as polystyrene (PS) and polyethylene terephthalate (PET), is compl...
Recycling aromatic plastics, such as polystyrene (PS) and polyethylene terephthalate (PET), is compl...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
It is challenging to produce high value-added carbon nanomaterials using a rich hydrocarbon source i...
Plastic materials have become inevitable daily-life products in modern life due to their low cost, h...
Plastic materials have become inevitable daily-life products in modern life due to their low cost, h...
Among carbon-based nanomaterials, graphene and its derivatives have received remarkable attention du...
Light weight vehicle design is a principal keystone to improving fuel efficiency and vehicle perform...
Light weight vehicle design is a principal keystone to improving fuel efficiency and vehicle perform...
Conversion of waste plastics into high value-added carbon nanomaterials has gained wide research int...
Conversion of waste plastics into high value added carbon nanomaterials has gained wide research int...
Interest on graphene and related materials is currently arising due to their excellent properties fo...