| Literature DB >> 30923947 |
Vantari Siva1, Kwangwook Park2, Min Seok Kim1, Yeong Jae Kim1, Gil Ju Lee1, Min Jung Kim1, Young Min Song3.
Abstract
The phosphorus-Entities:
Keywords: Hydrothermal growth; P-type ZnO nanorods; Phosphorus doping
Year: 2019 PMID: 30923947 PMCID: PMC6439072 DOI: 10.1186/s11671-019-2920-3
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Schematic representation of the Al-doped ZnO seed layer (a), growth process of ZnO nanorods (b), and grown ZnO nanorods (c). The XRD patterns (d) of the ZnO nanorods corresponding to varying NH4H2(PO4)2 M ratio. The integrated intensity of (002) peak as functions of NH4H2(PO4)2 M ratio (e)
Fig. 2Top (left) and cross-sectional (right) SEM images of ZnO nanorods corresponding to NH4H2(PO4)2 M ratios 0% (a), 0.05% (b), 0.1% (c), 0.2% (d), 0.5% (e), and 1.0% (f), respectively. Diameter and length of the nanorods increased as functions of NH4H2(PO4)2 M ratio. The enhancement of volumetric features of the nanorods is due to the elevated incorporation of phosphorus
Fig. 3a, b Quantitative views of the length and diameter of ZnO nanorods with an increase of NH4H2(PO4)2 M ratio, respectively. c–e The changes in doping concentration, Hall coefficient, and mobility of the nanorods as functions of NH4H2(PO4)2 M ratio, respectively. Conductivity changed from negative to positive when NH4H2(PO4)2 M ratio is higher than 0.3% approximately. The decrease in the doping concentration of the nanorods corresponding to 1% of NH4H2(PO4)2 M ratio is due to the self-compensation effect beyond the solubility limit of phosphorus in the ZnO nanorods
Fig. 4Normalized reflectance (a) and corresponding Tauc plots (b) for all the samples (inset: NH4H2(PO4)2 M ratio-dependent variation of optical bandgaps of ZnO nanorods.). c Normalized PL spectra of Al-doped ZnO seed layer, undoped ZnO nanorods, and phosphorus-doped ZnO nanorods. d The PL peak positions of NBE emission as a function of NH4H2(PO4)2 M ratio. e The magnified NIR emission from the Al-doped ZnO seed layer. f The DLE emission peaks of undoped and doped ZnO nanorods samples