<?xml version="1.0" encoding="UTF-8"?>
<xml><bibliography><APA>Kornkamon MEESOMBAD และ Oratai JOONGPRATEEP;Ratchatee TECHAPIESANCHAROENKIJ;Krissada SUWANTHANAWISES;Patcharaporn SIWAYAPRAHM;Phonphan WATTHANARAT. (2019) Influences of chemical composition, microstructure and bandgap energy on photocatalytic and antimicrobial activities of ZnO and Ag-doped ZnO by solution combustion technique. &lt;i&gt;Journal of Metals, Materials and Minerals&lt;/i&gt;, &lt;i&gt;29&lt;/i&gt;(1), 78-85.</APA><Chicago>Kornkamon MEESOMBAD และ Oratai JOONGPRATEEP;Ratchatee TECHAPIESANCHAROENKIJ;Krissada SUWANTHANAWISES;Patcharaporn SIWAYAPRAHM;Phonphan WATTHANARAT. "Influences of chemical composition, microstructure and bandgap energy on photocatalytic and antimicrobial activities of ZnO and Ag-doped ZnO by solution combustion technique". Journal of Metals, Materials and Minerals  29 (2019):78-85.</Chicago><MLA>Kornkamon MEESOMBAD และ Oratai JOONGPRATEEP;Ratchatee TECHAPIESANCHAROENKIJ;Krissada SUWANTHANAWISES;Patcharaporn SIWAYAPRAHM;Phonphan WATTHANARAT. Influences of chemical composition, microstructure and bandgap energy on photocatalytic and antimicrobial activities of ZnO and Ag-doped ZnO by solution combustion technique. Metallurgy and Materials Science Research Institute, Chulalongkorn University:ม.ป.ท. 2019.</MLA></bibliography></xml>
