Colloidal aluminum antimonide quantum dots

Title Colloidal aluminum antimonide quantum dots
Author Jalali, H. B., Sadeghi, S., Şahin, M., Öztürk, Hande, Ow-Yang, C. W., Nizamoglu, S.
Publication Date: 2019-07-09
Publication Place - American Chemical Society
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 0897-4756
Record ID 658b273a-956f-4fac-bcee-aaa825205a46
Library Location Mechanical Engineering
Date 2019-07-09
Notes European Research Council (ERC)
Sample Text AlSb is a less studied member of the III–V semiconductor family, and herein, we report the colloidal synthesis of AlSb quantum dots (QDs) for the first time. Different sizes of colloidal AlSb QDs (5 to 9 nm) were produced by the controlled reaction of AlCl3 and Sb[N(Si(Me)3)2]3 in the presence of superhydride. These colloidal AlSb quantum dots showed excitonic transitions in the UV-A region and a tunable band-edge emission (quantum yield of up to 18%) in the blue spectral range. Among all III–V quantum dots, these quantum dots show the brightest core emission in the blue spectral region.
DOI 10.1021/acs.chemmater.9b00905
Cilt 31
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Colloidal aluminum antimonide quantum dots

Author Jalali, H. B., Sadeghi, S., Şahin, M., Öztürk, Hande, Ow-Yang, C. W., Nizamoglu, S.
Publication Date 2019-07-09
Publication Place - American Chemical Society
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 0897-4756
Record ID 658b273a-956f-4fac-bcee-aaa825205a46
Library Location Mechanical Engineering
Date 2019-07-09
Notes European Research Council (ERC)
Sample Text AlSb is a less studied member of the III–V semiconductor family, and herein, we report the colloidal synthesis of AlSb quantum dots (QDs) for the first time. Different sizes of colloidal AlSb QDs (5 to 9 nm) were produced by the controlled reaction of AlCl3 and Sb[N(Si(Me)3)2]3 in the presence of superhydride. These colloidal AlSb quantum dots showed excitonic transitions in the UV-A region and a tunable band-edge emission (quantum yield of up to 18%) in the blue spectral range. Among all III–V quantum dots, these quantum dots show the brightest core emission in the blue spectral region.
DOI 10.1021/acs.chemmater.9b00905
Cilt 31
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