Quantum dot ink composition, and quantum dot electroluminescent device
A quantum dot ink composition including a plurality of quantum dots, and a mixed solvent including a Solvent a and a Solvent b, a quantum dot electroluminescent device including a light emitting layer formed from the quantum dot composition, and a method of making the quantum dot electroluminescent device are provided, where Solvent a is a cycloalkane compound with at least one ring carbon having a linear C4 to C16 alkyl group, an aromatic hydrocarbon compound having a linear C2 to C12 alkyl group, or a combination thereof, and Solvent b is a fluorinated alcohol.
1 . A quantum dot ink composition comprising
a plurality of quantum dots, and
a mixed solvent comprising a Solvent a and a Solvent b,
wherein Solvent a is a cycloalkane compound with at least a ring carbon having a C11 to C16 linear alkyl group, an aromatic hydrocarbon compound with at least a ring carbon having a C8 to C12 linear alkyl group, or a combination thereof, and
Solvent b is a fluorinated alcohol.
2 . The quantum dot ink composition of claim 1 , wherein the quantum dot ink composition has a surface tension of greater than or equal to about 30 milliNewtons per meter and less than or equal to about 40 milliNewtons per meter.
3 . The quantum dot ink composition of claim 1 , wherein the Solvent a comprises n-undecyl cyclohexane, n-dodecyl cyclohexane, n-tridecyl cyclohexane, n-octyl benzene, n-nonyl benzene, n-decyl benzene, n-dodecyl benzene, or a combination thereof.
4 . The quantum dot ink composition of claim 1 , wherein
the fluorinated alcohol is a linear, branched, or cyclic primary, secondary, or tertiary alcohol in which some or all of the hydrogen atoms are substituted with fluorine atoms.
5 . The quantum dot ink composition of claim 1 , wherein
the fluorinated alcohol is an aliphatic primary alcohol having 6 or more carbon atoms and 12 or less carbon atoms in which some or all of the hydrogen atoms are substituted with fluorine atoms.
6 . The quantum dot ink composition of claim 1 , wherein
the fluorinated alcohol comprises 1H, 1H,2H,2H-nonafluoro-1-hexanol, 1H,1H-tridecafluoro-1-heptanol, 1H,1H,2H,2H-tridecafluoro-1-n-octanol, 1H,1H,2H,2H-heptadecafluoro-1-decanol, 1H,1H-tricosafluoro-1-dodecanol, or combinations thereof.
7 . The quantum dot ink composition of claim 1 , wherein
the content of the solvent b in the mixed solvent is greater than or equal to about 0.01 parts by volume and less than or equal to about 50 parts by volume with respect to 100 parts by volume of the solvent a.
8 . The quantum dot ink composition of claim 1 , wherein
the content of the solvent b in the mixed solvent is greater than or equal to about 0.05 parts by volume and less than or equal to about 5.0 parts by volume with respect to 100 parts by volume of the solvent a.
9 . The quantum dot ink composition of claim 1 , wherein
an average particle diameter of the plurality of quantum dots is about 7 nanometers to about 15 nanometers.
10 . The quantum dot ink composition of claim 1 , wherein
the plurality of quantum dots do not comprise cadmium (Cd) and lead (Pb).
11 . The quantum dot ink composition of claim 1 , wherein
the surfaces of the plurality of quantum dots are coordinated with at least one organic ligand including a halogenated alkyl compound, a mercapto group-containing compound, or an aliphatic carboxylic acid compound.
12 . The quantum dot ink composition of claim 11 , wherein
an amount of the at least one organic ligand coordinated to the plurality of quantum dots is about 0.5 weight percent to about 15 weight percent based on the total weight of the plurality of quantum dots and the organic ligand.
13 . The quantum dot ink composition of claim 11 , wherein
an absolute value of a difference between a solubility parameter of the mixed solvent and a solubility parameter of the organic ligand as defined by
[(solubility parameter of the mixed solvent)−(solubility parameter of the organic ligand)] is less than or equal to about 1.5 (cal/cm 3 ) 1/2 .
14 . The quantum dot ink composition of claim 1 , wherein the quantum dot ink composition has a photoluminescence quantum yield of about 90% to 100%.
15 . A method of making a quantum dot electroluminescent device, the method comprising depositing the quantum dot ink composition of claim 1 via ink-jet printing to form a light emitting layer of the device, wherein the light emitting layer has a flatness of about 55% to 100%.
16 . A quantum dot ink composition, comprising
a plurality of dispersed quantum dots, and
a mixed solvent comprising a Solvent a and a Solvent b,
wherein Solvent a is a cycloalkane compound with at least a ring carbon having a C11 to C16 linear alkyl group, and Solvent b is a fluorinated alcohol, wherein the fluorinated alcohol is a linear, branched, or cyclic primary, secondary, or tertiary alcohol in which some or all of the hydrogen atoms are substituted with fluorine atoms, and
the content of the solvent b in the mixed solvent is greater than or equal to about 0.05 parts by volume and less than or equal to about 3 parts by volume with respect to 100 parts by volume of the solvent a.
17 . The quantum dot ink composition of claim 16 , wherein
the surfaces of the plurality of quantum dots are coordinated with at least one organic ligand including a halogenated alkyl compound, a mercapto group-containing compound, or an aliphatic carboxylic acid compound, and
an absolute value of a difference between a solubility parameter of the mixed solvent and a solubility parameter of the organic ligand as defined by
[(solubility parameter of the mixed solvent)−(solubility parameter of the organic ligand)] is less than or equal to about 1.5 (cal/cm 3 ) 1/2 .
18 . The quantum dot ink composition of claim 16 , wherein the cycloalkane compound comprises a cyclohexane compound.