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4 protocols using tris trimethylsilyl phosphine

1

Synthesis and Characterization of Colloidal Quantum Dots

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Indium(iii) acetate [In(Ac)3, 99.99%, Aldrich], zinc acetate [Zn(Ac)2, 99.99%, Aldrich], zinc oxide (ZnO, 99.999%, Aldrich), 1-octadecene (ODE, 90%, Aldrich), sulfur (99.98%, Aldrich), butylamine (99.5%, Aldrich), N,N-dimethylformamide (DMF, anhydrous, 99.8%, Aldrich) oleic acid (OA, 90%, Aldrich), trioctylphosphine (TOP, 97%, Aldrich), 1-dodecanethiol (DDT, >98%, Aldrich), tris(trimethylsilyl)-phosphine [(TMS)3P, 98% Strem Chemicals], palmitic acid (PA, 98%, Tokyo Chemical Industry), n-octylamine (OAm, 98%, Tokyo Chemical Industry), 6-mercapto-1-hexanol (MCH, 97%, Aldrich), and aluminium-doped zinc oxide ink (conductivity: 10−3–10−4 S cm−1, viscosity < 4 mPa s, Aldrich) were used without further purification. Aluminium (Al) wires were purchased from the Nilaco Corporation (Japan). The purity of argon gas was 99.999%. Using an oil rotary vacuum pump, the vacuum conditions of less than 60 Pa were used for degassing and argon gas purge.
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2

Synthesis of Colloidal Quantum Dots

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Indium (III) acetate (99.999%), palmitic acid (98%, PA), zinc stearate (10% Zn basis), 1‐octadecene (90%, ODE), oleic acid (90%, OA), selenium powder (99.99%), sulfur powder (99.998%), PVP, Tetramethylammonium hydroxide (≥97%, TMAH), anhydrous zinc acetate (99.99%), and dimethyl sulfoxide (≥99.9%, DMSO) were purchased from Sigma‐Aldrich. Tris(trimethylsilyl)‐phosphine (98%, (TMS)3P) and trioctylphosphine (97%, TOP) were purchased from Strem Chemicals. Poly[(9,9‐dioctylfluorenyl‐2,7‐diyl)‐alt‐(4,4′‐(N‐(4‐butylphenyl) (TFB) was purchased from Xi'an Polymer Light Technology Corp. Acetone (extra dry, >99%), ethanol (extra dry, >99%), ethyl acetate (extra dry, >99%), and octane (extra dry, >99%) were purchased from Acros. All chemicals were used without further purification.
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3

Synthesis of Semiconductor Nanocrystals

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cadmium oxide (99.99%), oleic acid (technical grade, 90%), and n-hexadecane (99%) were purchased from Sigma Aldrich and used as received. Indium acetate (99.99%), diethyl zinc (≥52 wt % Zn basis), cadmium acetate (99.995%), cadmium acetylacetonate (≥99.9%), lead oxide (>99.9%), oleic acid (≥99%), anhydrous hexanes (>99%), anhydrous methyl acetate (99.5%), and toluene-d8 (99.6%) were purchased from Sigma-Aldrich and stored in an argon glovebox. Anhydrous tetrahydrofuran (≥99.9%, Sigma-Aldrich) was distilled from a solvent still immediately prior to being stored in an argon glovebox. Indium (99.9999%), zinc (99.9999%), cadmium (99.999%), Indium phosphide (99.9999%), zinc sulfide (99.995%), and cadmium sulfide (99.999%) were purchased from Alfa Aesar and used as received. Lead sulfide (99.995%) and hydrochloric acid (37%, ACS Reagent) were purchased from Fisher Scientific and used as received. Argon (99.999%), and hydrogen (5% in argon) were purchased from Airgas and used as received. Zinc acetate (99.98%, Alfa Aesar), tris(trimethylsilyl)phosphine (98%, Strem Chemicals), bis(trimethylsilyl)sulfide (98%, Beantown Chemical), bis(trimethylsilyl)amine (98%, Acros Organics), and anhydrous acetone (99.5%, Fisher Scientific) were stored in an argon glovebox and used as received.
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4

Synthesis of Inorganic Nanoparticles

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Indium acetate (99.99%), myristic acid (≥99%), indium chloride (99.999%), and hexanes (>99%) were purchased from Sigma-Aldrich and stored in an argon glovebox. Tetrahydrofuran (≥99.9%, Sigma-Aldrich) was distilled from a solvent still immediately before being stored in an argon glovebox. Tris(trimethylsilyl)phosphine (98%, Strem Chemicals) and acetone (99.8%, Acros Organics) were also stored in an argon glovebox. Palmitic acid (99%), oleic acid (90%), 1-octadecene (90%), oleylamine (70%), and hydrofluoric acid (99.99%, 48 wt% in H2O) were purchased from Sigma-Aldrich and used as received. Stearic acid (98%, Alfa Aesar), octadecylphosphonic acid (>99%, PCI Synthesis), dimethyl sulfoxide (99.9% Fisher Scientific), argon (99.999%, Airgas), and hydrogen (5% in argon, Airgas) were used as received.
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