Preparation method of a stretchable supercapacitor based on a highly conductive graphene/nickel particle hybrid structure
A technology of supercapacitors and hybrid structures, applied in the field of capacitors, can solve the problems of complex preparation process of stretchable graphene-based active materials, inability to directly apply stretchable supercapacitors, and affecting the performance of stretchable supercapacitors. Low peak, good conductivity, simple and controllable effect
- Summary
- Abstract
- Description
- Claims
- Application Information
AI Technical Summary
Problems solved by technology
Method used
Image
Examples
Embodiment 1
[0051] 1. Take nickel foam with a size of 8cm×8cm and place it in a tube furnace;
[0052] 2. Turn on the vacuum pump to pump the air pressure of the tube furnace to the ultimate vacuum state of 3×10 -6 Torr;
[0053] 3. Keep vacuum 3×10 -6 After Torr for 15 minutes (the effect of vacuum for 15 minutes is to remove impurities, air, etc. inside the quartz tube to ensure that the reaction chamber is clean), the air pressure of the quartz tube 3 is raised to 3 × 10 -3 Torr;
[0054] 4. Set the hydrogen flow meter to 100sccm, and inject hydrogen into the vacuum chamber;
[0055] 5. After the tube furnace temperature rises to 300°C, anneal at a constant temperature for 20 minutes;
[0056] 6. After the tube furnace temperature rises to 1000°C, inject methane into the vacuum chamber, set the gas flow meter to 200 sccm, and stay for 30 minutes for growth;
[0057] 7. Turn off the methane gas flow meter and quickly lower the temperature of the tube furnace to room temperature at ...
Embodiment 2
[0079] Graphene is grown on a nickel foam substrate and finally a graphene / nickel particle hybrid structure is grown to prepare a stretchable capacitor, including the following preparation steps
[0080] 1. Take nickel foam with a size of 8cm×9cm and place it in a tube furnace;
[0081] 2. Turn on the vacuum pump to pump the air pressure of the tube furnace to the ultimate vacuum state of 3×10 -6 Torr;
[0082] 3. Keep vacuum 3×10 -6 After Torr for 15 minutes (the effect of vacuum for 15 minutes is to remove impurities, air, etc. inside the quartz tube to ensure that the reaction chamber is clean), the air pressure of the quartz tube 3 is raised to 3 × 10 -3 Torr;
[0083] 4. Set the hydrogen flow meter to 100sccm, and inject hydrogen into the vacuum chamber;
[0084] 5. After the tube furnace temperature rises to 300°C, anneal at a constant temperature for 20 minutes;
[0085] 6. After the tube furnace temperature rises to 1000°C, inject methane into the vacuum chamber, ...
Embodiment 3
[0110] Graphene is grown on a nickel foam substrate and finally a graphene / nickel particle hybrid structure is grown to prepare a highly conductive stretchable capacitor, including the following preparation steps:
[0111]1. Take nickel foam with a size of 5cm×9cm and place it in a tube furnace;
[0112] 2. Turn on the vacuum pump to pump the air pressure of the tube furnace to the ultimate vacuum state of 3×10 -6 Torr;
[0113] 3. Keep vacuum 3×10 -6 After Torr for 15 minutes (the effect of vacuum for 15 minutes is to remove impurities, air, etc. inside the quartz tube to ensure that the reaction chamber is clean), the air pressure of the quartz tube 3 is raised to 3 × 10 -3 Torr;
[0114] 4. Set the hydrogen flow meter to 100sccm, and inject hydrogen into the vacuum chamber;
[0115] 5. After the tube furnace temperature rises to 300°C, anneal at a constant temperature for 20 minutes;
[0116] 6. After the tube furnace temperature rises to 1000°C, inject methane into th...
PUM
Abstract
Description
Claims
Application Information
- R&D Engineer
- R&D Manager
- IP Professional
- Industry Leading Data Capabilities
- Powerful AI technology
- Patent DNA Extraction
Browse by: Latest US Patents, China's latest patents, Technical Efficacy Thesaurus, Application Domain, Technology Topic, Popular Technical Reports.
© 2024 PatSnap. All rights reserved.Legal|Privacy policy|Modern Slavery Act Transparency Statement|Sitemap|About US| Contact US: help@patsnap.com