Klaim Artikel Anda
Verifikasi kepemilikan artikel akademik
Apakah artikel-artikel ini milik Anda?
Daftarkan diri Anda sebagai author untuk mengklaim artikel dan dapatkan profil akademik terverifikasi dengan fitur lengkap.
Badge Verifikasi
Profil terverifikasi resmi
Statistik Lengkap
H-index, sitasi, dan metrik
Visibilitas Tinggi
Tampil di direktori author
Kelola Publikasi
Dashboard artikel terpadu
Langkah-langkah Klaim Artikel:
- 1. Daftar akun author dengan email akademik Anda
- 2. Verifikasi email dan lengkapi profil
- 3. Login dan buka menu "Klaim Artikel"
- 4. Cari dan klaim artikel Anda
- 5. Tunggu verifikasi dari admin (1-3 hari kerja)
Menampilkan 1–2 dari 2 artikel
Crystalline Structure Analysis of Bamboo and Coconut Coir–Based Activated Carbon for Supercapacitor Electrode Applications
Heindrich Taunaumang
; F. Tumimomor
; A.M. Rampengan
International Journal of Science and Mathematics Education
Vol 2
, No 4
(2025)
Activated carbon has been developed for supercapacitor electrode material due to their high degree of micro porosity and large surface area. The carbon source, preparation conditions such as temperature and atmosphere, and preparation method strongly influence the crystalline structure and the properties of carbon materials. This article is focused on the crystalline structure analysis of bamboo and coconut coir activated carbon The bamboo and coconut coir carbon were fabricated by using pyrolys...
Sumber Asli
Google Scholar
DOI
Efek Suhu Aktivasi terhadap Struktur Mikro Material Karbon Aktif Pelepah Enceng Gondok untuk Aplikasi Elektroda Superkapasitor
Heindrich Taunaumang
; Ishak Pawarangan
; Farly Tumimomor
Jurnal Pendidikan Kimia, Fisika dan Biologi
Vol 1
, No 6
(2025)
Supercapacitor electrode material bassed on Pelepah Enceng Gondok Activated Carbon (KAPEG have been developed for increasing the performance of the supercapacitor application. The activated carbon surface structure and its properties strongly depend on the pyrolysis temperature and the type of activation methods. The bamboo carbon has been fabricated using pyrolysis method. The KAPEG was produced using chemical activation with H3PO4 as activation agent with variation of temperature activation 75...
Sumber Asli
Google Scholar
DOI