研究目的
To introduce infrared plasmonic Cu2?xS nanocrystals into binary superlattices and understand their coupling with excitonic PbS nanocrystals in various symmetries and stoichiometries.
研究成果
The study successfully incorporated Cu2?xS nanocrystals into binary superlattices with PbS nanocrystals, demonstrating controlled coupling between infrared plasmons and excitons. Surface modification of Cu2?xS nanocrystals was essential for maintaining PbS photoluminescence and enabling the formation of binary superlattices.
研究不足
The study is limited by the drying dynamics affecting the phases present in the superlattices and the chemical quenching of PbS photoluminescence by unmodified Cu2?xS nanocrystals.
1:Experimental Design and Method Selection:
The study involved the synthesis of PbS and Cu2?xS nanocrystals, their surface modification, and assembly into binary superlattices. TEM and GISAXS were used for characterization.
2:Sample Selection and Data Sources:
Nanocrystals were synthesized following literature procedures with modifications.
3:List of Experimental Equipment and Materials:
Chemicals included lead(II) chloride, oleylamine, sulfur, hexane, ethanol, oleic acid, copper(II) acetylacetonate, dodecanethiol, dioctyl ether, lead oxide, 1-octadecene, toluene, acetonitrile, bis(trimethylsilyl) sulfide, and chloroform.
4:Experimental Procedures and Operational Workflow:
Nanocrystals were synthesized, purified, and assembled into superlattices on TEM grids and silicon substrates.
5:Data Analysis Methods:
TEM and GISAXS data were analyzed to determine lattice parameters, symmetries, and grain sizes.
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Lead(II) chloride
Millipore Sigma
Chemical precursor for nanocrystal synthesis
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Oleylamine
Technical grade, 70%
Millipore Sigma
Ligand for nanocrystal synthesis
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Sulfur
>99%
Millipore Sigma
Chemical precursor for nanocrystal synthesis
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Hexane
Anhydrous, 95%
Millipore Sigma
Solvent for nanocrystal synthesis and assembly
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Ethanol
Anhydrous, >99.5%
Millipore Sigma
Solvent for nanocrystal purification
-
Oleic acid
>99%
Millipore Sigma
Ligand for nanocrystal synthesis and assembly
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Copper(II) acetylacetonate
>99.9%
Millipore Sigma
Chemical precursor for nanocrystal synthesis
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Dodecanethiol
>98%
Millipore Sigma
Ligand for nanocrystal synthesis
-
Dioctyl ether
99%
Millipore Sigma
Solvent for nanocrystal synthesis
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Lead oxide
99.999%
Millipore Sigma
Chemical precursor for nanocrystal synthesis
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1-octadecene
Technical grade, 90%
Millipore Sigma
Solvent for nanocrystal synthesis
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Toluene
Anhydrous, 99.8%
Millipore Sigma
Solvent for nanocrystal synthesis and purification
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Acetonitrile
Anhydrous, 99.8%
Millipore Sigma
Solvent for nanocrystal purification
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Bis(trimethylsilyl) sulfide
Synthesis grade
Millipore Sigma
Chemical precursor for nanocrystal synthesis
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Chloroform
>99.5%, with amylenes as stabilizers
Millipore Sigma
Solvent for nanocrystal synthesis and purification
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