A cathodoluminescence study of InP/InGaP axially heterostructured NWs for tandem solar cells

Author:

Mediavilla I,Anaya JORCID,Galiana B,Hrachowina LORCID,Borgström M TORCID,Jimenez JORCID

Abstract

Abstract Axially heterostructured nanowires (NWs) constitute a promising platform for advanced electronic and optoelectronic nanodevices. The presence of different materials in these NWs introduces a mismatch resulting in complex strain distributions susceptible of changing the band gap and carrier mobility. The growth of these NWs presents challenges related to the reservoir effect in the catalysts droplet that affect to the junction abruptness, and the occurrence of undesired lateral growth creating core–shell heterostructures that introduce additional strain. We present herein a cathodoluminescence (CL) analysis on axially heterostructured InP/InGaP NWs with tandem solar cell structure. The CL is complemented with micro Raman, micro photoluminescence (PL), and high resolution transmission electron microscopy measurements. The results reveal the zinc blende structure of the NWs, the presence of a thin InGaP shell around the InP bottom cell, along with its associated strain, and the doping distribution.

Funder

Spanish Ministry of Science and Innovation

Knut and Allice Wallenberg foundation

NanoLund, Lunds Universitet

Regional Government of Castilla y León (Junta de Castilla y León) and by the Ministry of Science and Innovation and the European Union NextGenerationEU / PRTR

Publisher

IOP Publishing

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