Bulk/Interface Defects Engineering and Comparative Performance Analysis of p‐Si/n‐CdS/ALD‐ZnO Heterojunction Solar Cell

Author:

Sharma Atish Kumar12,Srivastava Ankita2,Jha Prakash Kumar12,Kumar Rakesh12,Kumar Manish3,Kulriya Pawan Kumar4,Chourasia Nitesh K.4,Chourasia Ritesh Kumar2ORCID

Affiliation:

1. University Department of Physics Lalit Narayan Mithila University Darbhanga Bihar 846004 India

2. Post-Graduate Department of Physics Samastipur College (A Constituent Unit of L.N.M.U., Darbhanga, Bihar‐846004, India) Samastipur Bihar 848134 India

3. Experimental Research Laboratory Department of Physics ARSD College University of Delhi New Delhi 110021 India

4. School of Physical Sciences Jawaharlal Nehru University New Delhi 110067 India

Abstract

Herein, the role of bulk/interface defects and their impact on the performance of novel solar cell device structure p‐Si/n‐CdS/ALD‐ZnO (atomic layer deposited zinc oxide) heterojunction solar cells are shown. To calculate all important parameters and connect both types of defects with the performance of the solar cell, a theoretical model to simulate using well developed, established, and globally popular SCAPS‐1D simulation tool is developed. The different types of optimized simulation parameters that improved the performance of the solar cell have been calculated using bulk defects (p‐Si absorber), interfacial defects (p‐Si/n‐CdS interface), emitter layer (n‐CdS) thickness, and window layer (ALD‐ZnO) thickness. A further effect of incident radiation on the quantum efficiency and the spectral response has been plotted along with the IV characteristics of the proposed solar cell. Based on the proposed simulation and comparing with the existing experimental and simulation results for similar combinations of the solar cell, this detailed study suggests that the highest efficiency η = 19.97%, fill factor = 83.37% with open circuit voltage = 635.3 mV, and short circuit current = 37.71 mA cm−2 can be achieved. Finally, the obtained performance parameters are best in class with the tabulated existing ones.

Publisher

Wiley

Subject

General Energy

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