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The Development of Carbon Nanofiber (CNF)/Carbon Nanotube (CNT ) – AC Pore Modification

The Development of Carbon Nanofiber (CNF)/Carbon Nanotube (CNT ) – AC Pore Modification. Imran , Norli , Ali Rinaldi Carbon Group NanoC Sdn . Bhd. Objectives. To create a mesopore AC based To get high dispersion of nanocarbon on AC.

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The Development of Carbon Nanofiber (CNF)/Carbon Nanotube (CNT ) – AC Pore Modification

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  1. The Development of Carbon Nanofiber (CNF)/Carbon Nanotube (CNT) – AC Pore Modification Imran, Norli, Ali Rinaldi Carbon Group NanoCSdn. Bhd.

  2. Objectives • To create a mesopore AC based • To get high dispersion of nanocarbon on AC. • To get strongth attachment of nanocarbon with the AC support.

  3. Research Progress • Pre-Treatment • Nano carbon growth • Iron precursor • AC porosity modification

  4. Pre-Treatment • Heat Treatment • 200oC, Ramp 5oC/Min, 2 hrs • Acid Wash • 5M HNO3, RT, 24 hrs • Acid Removal • Wash with deionized water 1L, 18 hrs • Drying • Dry at 200oC, 2 hrs, sieve <50 micron

  5. AC Porosity Modification • Objective • To create a mesopore AC from a comm. AC (KD)… • Target • To get a mesopore volume more than 0.1000 cc/g

  6. AC Porosity Modification • Current mesopore volume (after pre-treatment)-A009 • 0.0764 cc/g • Method • Thermal Treatment • Result:

  7. Isoterm

  8. DFT Micropore Mesopore

  9. Future Plan • Compare the highest mesopore volume method with UTP+synthetic air method • Rotating UTP – the burning process more homogen • The best method use to create a mesopore based substrate for impregnation process

  10. Acknowledgement • NanoC • Combicat • FHI • all

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