Colloidal Semiconductor Quantum Well Supraparticles as Low‐Threshold and Photostable Microlasers

Author:

Alves Pedro Urbano1ORCID,Quinn Gemma1ORCID,Strain Michael J.1ORCID,Durmusoglu Emek Goksu2ORCID,Sharma Manoj3ORCID,Demir Hilmi Volkan24ORCID,Edwards Paul R.5ORCID,Martin Robert W.5ORCID,Dawson Martin D.1ORCID,Laurand Nicolas1ORCID

Affiliation:

1. Institute of Photonics Department of Physics SUPA University of Strathclyde Glasgow G1 1RD United Kingdom

2. Luminous! School of Electrical and Electronic Engineering Nanyang Technological University Nanyang Avenue 639798 Singapore

3. ARC Centre of Excellence in Exciton Science Department of Materials Science and Engineering Monash University Clayton Victoria 3800 Australia

4. Department of Electrical and Electronics Engineering Department of Physics UNAM – Institute of Materials Science and Nanotechnology Bilkent University Ankara 06800 Turkey

5. Department of Physics SUPA University of Strathclyde Glasgow G4 0NG United Kingdom

Abstract

AbstractThis study introduces and compares the lasing performance of micron‐sized and sphere‐shaped supraparticle (SP) lasers fabricated through bottom‐up assembly of II‐VI semiconductor colloidal quantum wells (CQWs) with their counterparts made of quantum dots (CQDs). CQWs consist of a 4‐monolayers thick CdSe core and an 8‐monolayers thick CdxZn1‐xS shell with a nominal size of 14 × 15 × 4.2 nm, and CQDs of CdSxSe1‐x/ZnS with 6 nm diameter. SPs are optically characterized with a 0.76 ns pulse laser (spot size: 2.88 × 10−7 cm2) at 532 nm, and emit in the 620–670 nm spectral range. Results show that CQW SPs have lasing thresholds twice as low (0.1–0.3 nJ) as CQD SPs (0.3–0.6 nJ), and stress tests using a constant 0.6 nJ optical pump energy demonstrate that CQW SPs withstand lasing emission for longer than CQD SPs. Lasing emission in CQW and CQD SPs under continuous operation yields half‐lives of τCQWSP ≈150 min and τCQDSP ≈22 min, respectively. The half‐life of CQW SPs is further extended to τQW ≈385 min when optically pumped at 0.5 nJ. Such results compare favorably to those in the literature and highlight the performance of CdSe‐based CQW SPs for laser applications.

Funder

Leverhulme Trust

Publisher

Wiley

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