SYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD

Nanocrystalline zirconia has been successfully synthesized with 9-26 nm crystallite size from ZrCl4 as precursor through sol-gel method. Effects of precursor temperature, solvent composition, pH hydrolysis, and calcination temperature of the nano-zirconia phase was observed. According to TGA and XR...

Full description

Saved in:
Bibliographic Details
Main Author: Hafizan Resha, Ahlul
Format: Final Project
Language:Indonesia
Subjects:
Online Access:https://digilib.itb.ac.id/gdl/view/33645
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:33645
spelling id-itb.:336452019-01-28T10:37:32ZSYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD Hafizan Resha, Ahlul Kimia Indonesia Final Project Sol-Gel, Spin Coating, Nano-ZrO2, Thin Film ZrO2, ZrCl4, Optoelectronic INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/33645 Nanocrystalline zirconia has been successfully synthesized with 9-26 nm crystallite size from ZrCl4 as precursor through sol-gel method. Effects of precursor temperature, solvent composition, pH hydrolysis, and calcination temperature of the nano-zirconia phase was observed. According to TGA and XRD results, optimum condition for the formation of tetragonal phase is conducted through not-chilled precursors, the volume ratio of ethanol:water = 5: 1, pH hydrolysis is 9, and calcination temperature at 400 °C. Zirconia thin film has been fabricated through spin coating deposition technique by performing a variation of the sol concentration, spinning speed, and playback duration. Solid zirconia films obtained from the sol with a concentration of 0.2 M were rotated at a speed of 1200 rpm for 30 seconds. Nano- zirconia has a wide band gap at 5.10 to 5.17 eV with photoluminescence properties ?emission observed at 362 nm and 420 nm with ?excitation 265-325 nm and 440 nm ?emission also observed with broad peak and high intensity with ?excitation 354 nm. Zirconia thin film has a wide band gap at 3.4 eV and 4.6 eV with photoluminescence properties observed at ?emission 362 nm with ?excitation 265-340 nm, was measured by UV-Vis DRS and photoluminescence spectrophotometry. Therefore, thin film and nanocrystal of zirconia have potential as optoelectronic material. 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
topic Kimia
spellingShingle Kimia
Hafizan Resha, Ahlul
SYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD
description Nanocrystalline zirconia has been successfully synthesized with 9-26 nm crystallite size from ZrCl4 as precursor through sol-gel method. Effects of precursor temperature, solvent composition, pH hydrolysis, and calcination temperature of the nano-zirconia phase was observed. According to TGA and XRD results, optimum condition for the formation of tetragonal phase is conducted through not-chilled precursors, the volume ratio of ethanol:water = 5: 1, pH hydrolysis is 9, and calcination temperature at 400 °C. Zirconia thin film has been fabricated through spin coating deposition technique by performing a variation of the sol concentration, spinning speed, and playback duration. Solid zirconia films obtained from the sol with a concentration of 0.2 M were rotated at a speed of 1200 rpm for 30 seconds. Nano- zirconia has a wide band gap at 5.10 to 5.17 eV with photoluminescence properties ?emission observed at 362 nm and 420 nm with ?excitation 265-325 nm and 440 nm ?emission also observed with broad peak and high intensity with ?excitation 354 nm. Zirconia thin film has a wide band gap at 3.4 eV and 4.6 eV with photoluminescence properties observed at ?emission 362 nm with ?excitation 265-340 nm, was measured by UV-Vis DRS and photoluminescence spectrophotometry. Therefore, thin film and nanocrystal of zirconia have potential as optoelectronic material.
format Final Project
author Hafizan Resha, Ahlul
author_facet Hafizan Resha, Ahlul
author_sort Hafizan Resha, Ahlul
title SYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD
title_short SYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD
title_full SYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD
title_fullStr SYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD
title_full_unstemmed SYNTHESIS AND CHARACTERIZATIONS OF ZIRCONIA NANOCRYSTALLINE AND THIN-FILM FROM ZRCL4 THROUGH SOL-GEL METHOD
title_sort synthesis and characterizations of zirconia nanocrystalline and thin-film from zrcl4 through sol-gel method
url https://digilib.itb.ac.id/gdl/view/33645
_version_ 1821996564916207616