Tailoring Cu+ for Ga3+ Cation Exchange in Cu2-xS and CuInS2 Nanocrystals by Controlling the Ga Precursor Chemistry

被引:34
|
作者
Hinterding, Stijn O. M. [1 ,5 ]
Berends, Anne C. [1 ,6 ]
Kurttepeli, Mert [2 ,7 ]
Moret, Marc-Etienne [3 ]
Meeldijk, Johannes D. [4 ]
Bals, Sara [2 ]
van der Stam, Ward [1 ,8 ]
Donega, Celso de Mello [1 ]
机构
[1] Univ Utrecht, Condensed Matter & Interfaces, Debye Inst Nanomat Sci, POB 80000, NL-3508 TA Utrecht, Netherlands
[2] Univ Antwerp, Electron Microscopy Mat Sci EMAT, Groenenborgerlaan 171, B-2020 Antwerp, Belgium
[3] Univ Utrecht, Debye Inst Nanomat Sci, Organ Chem & Catalysis, Univ Weg 99, NL-3584 CG Utrecht, Netherlands
[4] Univ Utrecht, Debye Inst Nanomat Sci, Electron Microscopy Utrecht, NL-3584 CH Utrecht, Netherlands
[5] Univ Utrecht, Debye Inst Nanomat Sci, Soft Condensed Matter Inorgan Chem & Catalysis, POB 80000, NL-3508 TA Utrecht, Netherlands
[6] Seaborough Res BV, Sci Pk 106, NL-1098 XG Amsterdam, Netherlands
[7] Foseco Nederland BV, Pantheon 30, NL-7521 PR Enschede, Netherlands
[8] Univ Utrecht, Debye Inst Nanomat Sci, Inorgan Chem & Catalysis, POB 80000,Univ Weg 99, NL-3584 CG Utrecht, Netherlands
基金
欧洲研究理事会;
关键词
semiconductor nanocrystals; cation exchange; copper sulfide; copper gallium sulfide; copper indium sulfide; copper indium gallium sulfide; COORDINATION CHEMISTRY; HOLLOW NANOCRYSTALS; OPTICAL-PROPERTIES; QUANTUM DOTS; ION-EXCHANGE; PHOSPHINE; NANOSCALE; LIGANDS; FABRICATION; MORPHOLOGY;
D O I
10.1021/acsnano.9b05337
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nanoscale cation exchange (CE) has resulted in colloidal nanomaterials that are unattainable by direct synthesis methods. Aliovalent CE is complex and synthetically challenging because the exchange of an unequal number of host and guest cations is required to maintain charge balance. An approach to control aliovalent CE reactions is the use of a single reactant to both supply the guest cation and extract the host cation. Here, we study the application of GaCl3-L complexes [L = trioctylphosphine (TOP), triphenylphosphite (TPP), diphenylphosphine (DPP)] as reactants in the exchange of Cu+ for Ga3+ in Cu2-xS nanocrystals. We find that noncomplexed GaCl3 etches the nanocrystals by S2- extraction, whereas GaCl3-TOP is unreactive. Successful exchange of Cu+ for Ga3+ is only possible when GaCl3 is complexed with either TPP or DPP. This is attributed to the pivotal role of the Cu2-xS-GaCl3-L activated complex that forms at the surface of the nanocrystal at the onset of the CE reaction, which must be such that simultaneous Ga3+ insertion and Cu+ extraction can occur. This requisite is only met if GaCl3 is bound to a phosphine ligand, with a moderate bond strength, to allow facile dissociation of the complex at the nanocrystal surface. The general validity of this mechanism is demonstrated by using GaCl3-DPP to convert CuInS2 into (Cu,Ga,In)S-2 nanocrystals, which increases the photoluminescence quantum yield 10 -fold, while blue -shifting the photoluminescence into the NIR biological window. This highlights the general applicability of the mechanistic insights provided by our work.
引用
收藏
页码:12880 / 12893
页数:14
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