EP1537187B1

Organic species that facilitate charge transfer to or from nanostructures

Abstract

This record has no abstract on file.

EP1537187B1, drawing sheet 1
Sheet 1 of 27

Term

Term ended

Expired 4 September 2023, 3.1 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

48 claims: 7 independent, 41 dependent

  1. 1
    A conductive composition for modification of charge transport across a nanostructure-containing matrix, the composition comprising:a body structure comprising a conjugated organic moiety;a head group coupled to the body structure at a first position on the conjugated organic moiety, wherein the head group comprises a functionalized head group capable of binding to a nanostructure surface or a head group bound to a nanostructure surface;and a tail group comprising an alkyne moiety comprising between 3 and 22 carbon atoms and coupled to the body structure at a second position on the conjugated organic moiety;wherein the functionalized head group comprises one or more carboxylic acid or amine moiety, and wherein one or more elements of the conductive composition are capable of removing or adding charges to a nanostructure upon attachment to a surface of the nanostructure, thereby modifying charge transport across a nanostructure-containing matrix.
  2. 16
    The conductive composition of any one of the preceding claims, wherein the nanostructure is a nanocrystal.
  3. 17
    A polymeric conductive composition comprising the structure [H x -B y -T z ] 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 the functionalized head group comprises one or more carboxylic acid or amine moiety;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 comprising an alkyne moiety comprising between 3 and 22 carbon atoms;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.
  4. 20
    A nanostructure matrix composition comprising:a nanostructure comprising an exterior surface, wherein a portion of the nanostructure exterior surface is bound to the conductive composition of any one of the preceding claims;and, a matrix positioned proximal to the conjugated exterior surface of the nanostructure.
  5. 24
    A nanostructure-containing matrix composition comprising:a nanostructure comprising an exterior surface;and a matrix composition positioned proximal to the exterior surface of the nanostructure, wherein the matrix composition comprises a conductive polymer having the structure [T x -B y -H z ] n, wherein H comprises at least one functionalized head group capable of binding to a nanostructure surface wherein the functionalized head group comprises one or more carboxylic acid or amine moiety;wherein B comprises a body structure comprising one or more conjugated organic moieties, wherein a first conjugated organic moiety is coupled to the at least one functionalized head group;wherein T comprises at least one tail group coupled to the body structure and comprising an alkyne moiety comprising between 3 and 22 carbon atoms;and wherein x, y, z and n independently comprise integers equal to or greater than 1.
  6. 27
    A method of synthesizing an organic composition that facilitates charge transfer for use in a nanostructure-containing device, the method comprising:(a) providing a conjugated organic precursor, wherein the conjugated organic precursor comprises at least three positions available for attachment of substituent modules;(b) providing a first substituent module, wherein the first substituent module comprises a carboxylic acid derivative, an amine derivative, or a combination thereof;(c) providing a second substituent module, wherein the second substituent module comprises an alkyne derivative comprising between three and 22 carbons;and (d) optionally providing a third substituent module, wherein the optional third substituent module comprises an alkyl derivative comprising between one and 22 carbons;(e) coupling the first substituent module at a first position, coupling the second substituent module at a second position, and optionally coupling the third substituent module at a third position, thereby synthesizing the organic composition;wherein coupling of the modules to the body structure does not destroy an electronic conjugation of the body structure;and, wherein at least one substituent of the first, second or third substituent modules is capable of binding to a nanostructure surface or is already bound to a nanostructure surface.
  7. 43
    A method of modifying an interaction between a nanostructure and an external matrix, the method comprising:treating a nanostructure with the conductive composition of any one of claims 1 to 20;and, forming a nanostructure-containing matrix comprising the treated nanostructure and a matrix composition.