Optical and photocatalytic properties of single crystalline ZnO at the air-liquid interface by an aminolytic reaction

TitleOptical and photocatalytic properties of single crystalline ZnO at the air-liquid interface by an aminolytic reaction
Publication TypeJournal Article
Year of Publication2011
AuthorsVaishampayan, MV, Mulla, IS, Joshi, SS
JournalLangmuir
Volume27
Issue20
Pagination12751-12759
Date PublishedOCT
ISSN0743-7463
Abstract

Crystalline flowerlike ZnO was synthesized by an aminolytic reaction at the air-liquid interface in an aqueous media at an alkaline pH. A thin visible film was formed at the air-liquid interface by self-assembly of flowerlike ZnO. Diffraction studies show rearrangement of the single crystalline units at the air-liquid interface leading to the formation of nanobelts. These nanobelts overlap systematically to form petals of the flowerlike structure; individual petals get curved with time. Each nanobelt is found to be single crystalline and can be indexed as the hexagonal ZnO phase. The organic product formed in the aminolytic reaction and dissolution-reprecipitation mechanism is the driving force for the formation of flowerlike ZnO at the air-liquid interface. A clear relationship between the surface, photocatalytic, and photoluminescent properties of ZnO is observed. The flowerlike structure exhibits a blue shift (3.56 eV) in the band emission as compared to bulk ZnO (3.37 eV). The photodegradation of methylene blue over the flowerlike ZnO catalyst formed at the air-liquid interface and in the sediments shows enhanced photocatalytic activity. The sub-bands formed due to surface defects facilitate separation of charge carriers increasing their lifetime, leading to enhanced photocatalytic activity of flowerlike ZnO.

DOI10.1021/la203006n
Type of Journal (Indian or Foreign)Foreign
Impact Factor (IF)4.186
Divison category: 
Physical and Materials Chemistry