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ЖУРНАЛЫ // Физика и техника полупроводников // Архив

Физика и техника полупроводников, 2020, том 54, выпуск 3, страница 245 (Mi phts6638)

Эта публикация цитируется в 17 статьях

Полупроводниковые структуры, низкоразмерные системы, квантовые явления

Effective mass model supported band gap variation in cobalt-doped ZnO nanoparticles obtained by co-precipitation

K. P. Misraa, S. Jaina, A. Agarwalab, N. Haldera, S. Chattopadhyaya

a Department of Physics, School of Basic Sciences, Manipal University Jaipur
b Department of Chemistry, School of Basic Sciences, Manipal University Jaipur

Аннотация: Zn$_{1-x}$ Co$_x$ O ($x$ = 0.0, 0.01, 0.03, 0.05) nanoparticles were synthesized using co-precipitation method. Shift in peaks of XRD patterns for 2$\theta$ values has been observed. The changes in 2$\theta$ value for different peaks for different samples are studied systematically. Dislocation densities $(\delta)$ for the samples are calculated and correlated with observed shift in 2$\theta$ values for all the samples. UV-Vis study has been performed to understand the effect of cobalt doping on optical band gap. The band gap shows a cubic variation with dopant concentration $(x)$. The nature of band gap variation has been explained and supported by effective mass model. Samples are also characterized by SEM and EDX to understand the surface morphology and elemental composition.

Ключевые слова: ZnO, band gap, effective mass model, nanoparticle, dislocation density, co-precipitation.

Поступила в редакцию: 01.06.2019
Исправленный вариант: 26.07.2019
Принята в печать: 18.10.2019

Язык публикации: английский


 Англоязычная версия: Semiconductors, 2020, 54:3, 311–316


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