Synthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application

Nowadays, the synthesis of proton conducting membrane that can replace Nafion with low production cost is studied intensively. The membrane that has similar structure with respect to Nafion was synthesized in this study. This membrane has hydrophylic cluster that homogenously distributed in the hydr...

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Main Author: HERLIANTY STEFANUS (NIM: 10505016), DEVI
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/11988
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:11988
spelling id-itb.:119882017-09-27T11:42:36ZSynthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application HERLIANTY STEFANUS (NIM: 10505016), DEVI Indonesia Final Project INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/11988 Nowadays, the synthesis of proton conducting membrane that can replace Nafion with low production cost is studied intensively. The membrane that has similar structure with respect to Nafion was synthesized in this study. This membrane has hydrophylic cluster that homogenously distributed in the hydrophobic matrix. Here, carboxymethylcellulose-chitosan (CMC-chitosan) complex nanoparticles act as hydrophylic cluster while the polysulfone polymer (PSf) serves as a hydrophobic matrix. Four types of complex membranes were synthesized at various nanoparticles volume fraction of 11.11%; 22.22%; 33.33%; 44.44%; 55.55% and 75%. The resulting membranes were assumed to form an acid-base complex structure that homogenously distributed in the membrane matrix. It was observed that the presence of this structure increases the performance of proton conducting membrane. The optimum performance of this complex membrane is reached for the nanoparticles volume fraction of 44.44% (v/v). It is reflected by the low methanol permeability (1.7644 x 10-7 cm2 s-1), the high ion exchange capacity (13.82 meq/g), the high effective charge (0.028 mol L-1) and relatively high proton conductivity (1.30 x 10-2 S/cm). These results imply that this complex membrane is a good candidate as a proton conducting membrane for fuel cell aplication. <br /> text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Nowadays, the synthesis of proton conducting membrane that can replace Nafion with low production cost is studied intensively. The membrane that has similar structure with respect to Nafion was synthesized in this study. This membrane has hydrophylic cluster that homogenously distributed in the hydrophobic matrix. Here, carboxymethylcellulose-chitosan (CMC-chitosan) complex nanoparticles act as hydrophylic cluster while the polysulfone polymer (PSf) serves as a hydrophobic matrix. Four types of complex membranes were synthesized at various nanoparticles volume fraction of 11.11%; 22.22%; 33.33%; 44.44%; 55.55% and 75%. The resulting membranes were assumed to form an acid-base complex structure that homogenously distributed in the membrane matrix. It was observed that the presence of this structure increases the performance of proton conducting membrane. The optimum performance of this complex membrane is reached for the nanoparticles volume fraction of 44.44% (v/v). It is reflected by the low methanol permeability (1.7644 x 10-7 cm2 s-1), the high ion exchange capacity (13.82 meq/g), the high effective charge (0.028 mol L-1) and relatively high proton conductivity (1.30 x 10-2 S/cm). These results imply that this complex membrane is a good candidate as a proton conducting membrane for fuel cell aplication. <br />
format Final Project
author HERLIANTY STEFANUS (NIM: 10505016), DEVI
spellingShingle HERLIANTY STEFANUS (NIM: 10505016), DEVI
Synthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application
author_facet HERLIANTY STEFANUS (NIM: 10505016), DEVI
author_sort HERLIANTY STEFANUS (NIM: 10505016), DEVI
title Synthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application
title_short Synthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application
title_full Synthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application
title_fullStr Synthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application
title_full_unstemmed Synthesis and Characterization of Complex Membrane CMC-Chitosan for Fuel Cell Application
title_sort synthesis and characterization of complex membrane cmc-chitosan for fuel cell application
url https://digilib.itb.ac.id/gdl/view/11988
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