Facility Agriculture: Energy Saving and SterilizationDepartment of Applied Materials Optoelectronic Engineering, National Chi Nan University / Wuu, Dong-Sing / President / Professor
設施農業:節能栽培與滅菌【國立暨南國際大學應用材料及光電工程學系/國立中興大學材料科學與工程學系/武東星 校長/客座教授】
論文篇名 英文:A Review on Gallium Oxide Materials from Solution Processes
中文:溶液法對氧化鎵材料之綜述
期刊名稱 NANOMATERIALS
發表年份,卷數,起迄頁數 2022, 12, 3601
作者 Chiang, Jung-Lung; Yadlapalli, Bharath Kumar; Chen, Mu-, I; Wuu, Dong-Sing(武東星)*
DOI 10.3390/nano12203601
中文摘要 可以通過各種方法或工藝製造氧化鎵 (Ga2O3) 材料。人們經常提到它具有不同的多晶型物(α-β-γ-δ-ε- Ga2O3)和優異的物理和化學性能。本文將討論 Ga2O3 的基本性質、晶體結構、帶隙、態密度和其他性質。本文廣泛討論了純 Ga2O3、共摻雜 Ga2O3 Ga2O3-金屬氧化物複合材料和 Ga2O3/金屬氧化物異質結構納米材料的合成方法,主要是溶膠-凝膠法、水熱法、化學浴法、溶劑熱法、強制水解法、回流冷凝法、和電化學沉積方法。詳細描述了前體溶液類型和合成條件對最終產品的形態、尺寸和性能的影響。此外,將從這些溶液過程中介紹和討論Ga2O3的應用,例如深紫外光電探測器、氣體傳感器、pH傳感器、光催化和光降解等應用。此外,確定了研究進展和未來展望。
英文摘要 Gallium oxide (Ga2O3) materials can be fabricated via various methods or processes. It is often mentioned that it possesses different polymorphs (α-, β-, γ-, δ- and ε- Ga2O3) and excellent physical and chemical properties. The basic properties, crystalline structure, band gap, density of states, and other properties of Ga2O3 will be discussed in this article. This article extensively discusses synthesis of pure Ga2O3, co-doped Ga2O3 and Ga2O3-metal oxide composite and Ga2O3/metal oxide heterostructure nanomaterials via solution-based methods mainly sol-gel, hydrothermal, chemical bath methods, solvothermal, forced hydrolysis, reflux condensation, and electrochemical deposition methods. The influence of the type of precursor solution and the synthesis conditions on the morphology, size, and properties of final products is thoroughly described. Furthermore, the applications of Ga2O3 will be introduced and discussed from these solution processes, such as deep ultraviolet photodetector, gas sensors, pH sensors, photocatalytic and photodegradation, and other applications. In addition, research progress and future outlook are identified.
發表成果與本中心研究主題相關性 藉由探討溶液法對氧化鎵材料之綜述及應用,將更深入探討深紫外光電探測器、氣體傳感器、pH傳感器、光催化和光降解等應用,將此應用延續至農業栽培上。