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All Journal Teknologi dan Kejuruan: Jurnal teknologi, Kejuruan dan Pengajarannya Transmisi TELKOMNIKA (Telecommunication Computing Electronics and Control) Jurnal Pendidikan: Teori, Penelitian, dan Pengembangan Journal of Mechanical Engineering Science and Technology Journal of Accounting and Management Innovation Turbo : Jurnal Program Studi Teknik Mesin SEIKO : Journal of Management & Business Jurnal Kreativitas PKM Manuju : Malahayati Nursing Journal Pena Justisia: Media Komunikasi dan Kajian Hukum Almufida: Jurnal Ilmu-Ilmu Keislaman International Journal of Recent Technology and Applied Science (IJORTAS) Indonesian Journal for Social Responsibility Community Development Journal: Jurnal Pengabdian Masyarakat Jurnal Pengabdian, Pendidikan dan Teknologi Journal of Industrial Engineering & Management Research (JIEMAR) Jurnal Perak Malahayati : Pengabdian Kepada Masyarakat Andalasian International Journal of Applied Science, Engineering, and Technology Journal of Accounting and Management Innovation Bengkoelen Justice : Jurnal Ilmu Hukum Proceeding International Seminar of Islamic Studies Mechanical Engineering for Society and Industry Automotive Experiences Jurnal Bangun Manajemen Zona Manajerial: Program Studi Manajemen (S1) Universitas Batam Journal of Public Health Concerns Barongko : Jurnal Ilmu Kesehatan JOURNAL OF Qualitative Health Research & Case Studies Reports JOURNAL OF Mother and Child Health Concerns JOURNAL OF Mental Health Concerns International Journal Of Synergi In Law, Criminal And Justice Jurnal Ekonomi, Manajemen, Akuntansi NMI THE JOURNAL OF Nursing Management Issues Midwifery Journal
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Journal : Transmisi

Effect of Electrodeposition Time on the Growth Rate of Carbon Nanotubes (CNTs) Faishol, Faishol; Andoko, Andoko; Suryanto, Heru; Prasetya, Riduwan
TRANSMISI Vol. 20 No. 2 (2024): September (2024)
Publisher : Universitas Merdeka Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26905/jtmt.v20i2.13672

Abstract

Carbon Nanotubes (CNTs) are nano-sized carbon that resembles tubes and has the potential to be used in various aspects of applications. Some of  the CNT carbon capture  methods include arc discharge, lasser ablation, CVD and electrodeposition. The advantage of the electrodeposition method is that the production cost is cheap and the preparation is easy. Electrodeposition is the precipitation of substances by using a direct electric current, with CO2 as the reactant. Factors that affect the growth rate of CNT are voltage, temperature, carbon source, electrode and time. The variation of the electorative time used was 60 minutes, 90 minutes, 120 minutes, 150 minutes, 180 minutes. The data collection process begins by shaping and measuring the weight of the electrode (Ni) with a diameter of 2 cm CNT deposition area. measuring the weight and melting Li2CO3 at a temperature of 750. then the CO2 flow rate setting, voltage setting  5V and time setting were then characterized by SEM-EDX and XRD. The results of the study showed that the optimal time obtained with a time of 120 minutes, the resulting CNT deposition rate was 1,618 g cm-2 h-1. Then based on the characterization of XRD and SEM, it shows that the longer the electrodeposition time, the less impurities are contained in the results obtained.
Effect of Temperature on the Growth Rate of Carbon Nanotubes (CNTs) using Electrodeposition Method Prabowo, Agung; Andoko, Andoko; Suryanto, Heru; Prasetya, Riduwan
TRANSMISI Vol. 20 No. 2 (2024): September (2024)
Publisher : Universitas Merdeka Malang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.26905/jtmt.v20i2.13673

Abstract

Electrodeposition is one of the carbon capture methods used to produce carbon nanotubes with temperature as one of the variable. The research aims to analyze the effect of temperature on the growth rate of carbon nanotubes of 723oC, 750oC, 800oC, 850oC and 900oC using X-Ray Diffraction (XRD) testing. Analyzing deposit morphology at the same temperature using Scanning Electron Microscope (SEM) testing. The results of research show that the most optimal growth rate for carbon nanotubes occurred at 750oC of 7,949 g cm-2 hours-1. At a temperature of 750oC, carbon deposits are easier than at 723oC because that’s the melting point of lithium carbonate and has not completely decomposed. The XRD test show that at 750oC is the highest peak at 2θ= 26.21o. The SEM test show that the optimal morphological structure formed occurs at a temperature variation of 750oC with a fibrous morphology and little impurity at the ends. The results of the CNT percentage using the Material Analysis Using Diffraction (MAUD) method show that the largest quantitative value of the CNT percentage occurs at a temperature of 800oC of 4.08%.
Co-Authors A.N. Afandi Abdiyar, Muhammad Albin Afrianto, Raka Agung Prabowo Akbar, Muhamad Rizky Amin Hou Aminnudin, Aminnudin Ananto, Rifqi Ryandi Dwi Andi Muadz Palerangi Andreas Syah Pahlevi Ari Ambrianti Arifin Arifin Aripriharta - Aryanti Aryanti Aryanti Wardiyah, Aryanti Avita Ayu Permanasari Azhali Siregar Azzahra, Putri Salsabila Bayu Angga Pratama Cahyono, Yanuar Reza Trie Caristia, Angga Darmawan, Muhammad Wahid Deby S O Pasaribu Dhitya, Ray Krisna Didin Zakaria Lubis Didin Zakariya Lubis Djamaludin, Djunizar Elliya, Rahma Epilasari, Epilasari Erpiyana, Refsi ERWAN, FRAGESTHA Faisar Ananda Arfa, Faisar Ananda Faishol, Faishol Femiana Gapsari MF Furqoni, Prima Dian Hadi, Riswan Haryanti, Mega Henry Aspan Hermanto, Yon Ade Lose Hermawan, Dessy Heru Suryanto Hesti Wulandari Horng, Gwo Jiun Husada, Imam Farid Farian Imam Muda Nauri Indaman, Putri Irham Fadlika Janas, Dawid Jemmy Rumengan Juana, Rika K, Umi Rohmayati Keswara, Umi Romayati Khoirudin, Parid Khoyroh, Syafira Bilqis Kurniasih, Dennti Kurniawan, Franky Kusubakti Andajani M. Alfian Mizar M. Arif Sani M. Arifki Zainaro Manawan, Maykel Mardiani, Wiwin Mardji Mardji Martok, Yenni MHD AZHALI Siregar Mishima, Kenji Muliadin , Muliadin Muntholib Nandang Mufti Novikasari, Linawati Pangesti, Dimas Ning Pasha, Muhammad Faizullah Perdana, Muhamad Rayhan Rizky Pradana, Yanuar Rohmat Aji Prasetya, Riduwan Prihanto Trihutomo Pritasari, Laili Putri, Evalistiyo Rachmawati, Yessy Rahman, Chandra Hairat Abdul Rahmawati, Reka Putri Ramadhan, Rafli Adi Retno Wulandari Retno Wulandari Riana Nurmalasari Riduwan Prasetya Rilyani, Rilyani Rina Rifqie Mariana Riska Wandini, Riska Riski, Akhmad Afrizal Riyanto, Mochammad Deny Rizka, Mahda Rokan, Mustafa Kamal Rr. Poppy Puspitasari Saputro, Suratno Adi Sari, Devi Ratna Sari, Lisa Yuliana Sari, Made Novita Sari, Mentari Permata Satria, Frinan SATRIA, FRIYAN Selfianti, Selfianti Setiawati Setiawati Shiddieqy, M. Hasbi Ash Silvia, Eka Sinuhaji, Frans G Siti Aisyah Slivia, Eka Sormin, Partogian Suprayitno Suprayitno Suprayitno Suprayitno Surani, Eka Sri Syah, Muhammad Zacky Syamsiar, Syamsiar Tengku Riza Zarzani N Trismiana, Eka Trismiyana, Eka Triyoso, Triyoso Tuwoso Ulandari, Elpi Wahid Tri Wahyudi WAHYU HIDAYAT, NUR Winson, Lelita wulan, Sarinah sri Yenni Yenni Yulendasari, Rika Yunazar Manjang Yusran Gea, Ali