Z-scheme相关论文
在过去的十年中,氧化亚铜(Cu2O)作为可见光活性半导体在光催化和光电化学领域的应用显著增加,但由于Cu2O的氧化还原电位位于其带隙之......
我国是世界上第一大抗生素使用国,然而抗生素大约只有10-20%被生物体代谢,而未被代谢的部分则直接或间接排入水环境中。因此,如何......
作为自然界最重要的过程之一,生物固氮将太阳能转化为化学能,并以氨(NH3)为主要产物,这对于植物、动物和其他生命形式至关重要。人类......
Synthesis and Characterization of Z-scheme BiOBr/MIL-125(Ti) Composite for Nitrate Reduction with Ad
人类日益增多的工业活动造成了严重的水环境污染,而水体中硝酸盐的去除一直是水污染防控与治理的关键。硝酸盐(NO3?)是一种高度稳定......
Semiconductor heterojunction photocatalysts have received much concern due to their great application prospect in solar ......
工业化的快速发展带来的环境污染和能源短缺问题日益凸显,各个国家和地区研究人员不断加大力度积极探索解决这两大问题的新方法,半......
石墨相氮化碳(g-C3N4)在波长小于450nm的光照射下能够有效地发挥光催化作用,诸如制备简易、环境友好及化学性质稳定等优点使得g-C3......
随着工业化进程的加快,如何面对传统能源的枯竭和全球环境的恶化已经成为当今社会迫在眉睫的严峻问题。毫无疑问,人类对清洁、可再......
现如今水体污染和能源短缺已经成为世界性难题,寻找有效的、可持续发展的绿色途径已成为重中之重。在众多可行办法中,光催化半导体......
Enhanced solar-light-driven photocatalytic properties of novel Z-scheme binary BiPO4 nanorods anchor
Global environmental problems have been increasing with the growth of the world economy and have become a crucial issue.......
Novel synthesis of Z-schemeα-Bi2O3/g-C3N4 composite photocatalyst and its enhanced visible light pho
In this study, α-Bi2O3/g-C3N4 nanocomposite with direct Z-scheme was successfully prepared through calcination of BiOCO......
In situ construction of Z-scheme FeS2/Fe2O3 photocatalyst via structural transformation of pyrite fo
Pyrite is the most abundant sulfide semiconductor mineral with excellent optical proper-ties.However,few reports have in......
Highly efficient tandem Z-scheme heterojunctions for visible light-based photocatalytic oxygen evolu
Oxygen is important in maintaining a clean and reliable water environment.Designing heterojunction photocatalysts that c......
Construction of upconversion fluoride/attapulgite nanocomposite for visible-light-driven photocataly
Developing photocatalysts with wide spectrum absorption and strong nitrogen activation is critical for nitrogen fixation......

