Organic species that facilitate charge transfer to or from nanostructures
View Patent ↗The present invention provides compositions (small molecules, oligomers and polymers) that can be used to modify charge transport across a nanocrystal surface or within a nanocrystal-containing matrix, as well as methods for making and using the novel compositions.
1. A polymeric conductive composition comprising the structure [Hx-By-Tz] n ,
wherein H comprises at least one functionalized head group capable of binding to a nanostructure surface or at least one head group bound to a nanostructure surface;
wherein B comprises a body structure comprising one or more conjugated organic moieties, wherein a first conjugated organic moiety is coupled to a proximal functionalized head group or bound head group;
wherein T comprises at least one tail group coupled to the body structure; and
wherein x, y, z and n independently comprise integers equal to or greater than 1 and wherein x+y+z+n is equal to or greater than 5.
2. The polymeric conductive composition of claim 1 , wherein the head group comprises one or more phosphonic acid, carboxylic acid, amine, phosphine, or thiol moieties.
3. The polymeric conductive composition of claim 1 , wherein the body structure comprises a phenylene, thiophene, ethene, ethyne, aniline, fluorene, pyridine, perylene, phenanthralene, anthracene, alkenyl or polynuclear aromatic moiety.
4. The polymeric conductive composition of claim 1 , wherein the body structure comprises poly(phenylene), poly(thiophene), poly(ethene), poly(ethyne), poly(aniline), poly(fluorene), poly(pyridine) moiety, or poly(polynuclear aromatic) moiety.
5. The polymeric conductive composition of claim 1 , wherein the tail group comprises 1-propyne, 1-butyne, 1-pentyne, 1-hexyne, 1-heptyne, 1-octyne, 1-nonyne, 1-decyne, or an alkyne comprising between 3 and 22 carbons.
6. The polymeric conductive composition of claim 1 , wherein the body structure further comprises one or more O-linked or N-linked substituents coupled to one or more member conjugated organic moieties, wherein the substituents alter an electronic signature or a solubility of the polymeric conductive composition.
7. The polymeric conductive composition of claim 6 , wherein the polymeric conductive composition is polymerized through polymerizable elements on the one or more substituents.
8. The polymeric conductive composition of claim 6 , wherein the one or more substituents independently comprise an electron donating group, an electron withdrawing group, a conducting chemical structure, or a nonconducting chemical structure.