CA2787367C

Conformationally flexible cationic conjugated polymers

Abstract

Methods, compositions and articles of manufacture involving cationic conjugated conformationally flexible polymers are provided. A method for the synthesis of cationic water-soluble polymers with linkages along the polymer main chain structure which disrupt the ability of the polymers to form extended-rod structures is provided. Such polymers may serve in the fabrication of novel optoelectronic devices and in the development of highly efficient biosensors. The invention further relates to the application of these polymers in assay methods.

CA2787367C, drawing sheet 1
Sheet 1 of 25

Term

Term ended

Expired 17 September 2024, 2 years ago.

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

7 claims: 3 independent, 4 dependent

  1. 1
    CA 02787367 2015-01-07 What is claimed is:1. A library of compounds comprising a plurality of structurally different conjugated cationic conformationally flexible polymers, each of said plurality comprising an aromatic monomeric unit having bonds to its two adjacent polymeric units which form an angle of less than about 155° with respect to one another.
  2. 2
    A method for screening for a conformationally flexible cationic conjugated polymer, comprising:performing a functional assay on a plurality of structurally different polymers, wherein each of said plurality has a structure comprising at least one angled linker having bonds to two adjacent polymeric units which form an angle of less than about 155° with respect to one another and comprising multiple cationic groups in said polymer;and, determining whether any of said polymers have a desired functional property.
  3. 7
    A polymer comprising at least one angled linker having bonds to two adjacent polymeric units which form an angle of less than about 155° with respect to one another and comprising multiple cationic groups in said polymer, wherein said polymer has the structure:CA 02787367 2015-01-07 //-•SX V 5 CP4 CP2- * CP3 CP< a\Mb ' m J k dV—ve f wherein: CPi, CP2, CP3 and CP4 are optionally substituted conjugated polymer segments or oligomeric structures, and may be the same or different from one another;LU) and LU2 are angled linkers forming bond angles to two adjacent polymeric units of less than about 155°, and can be mono- or polycyclic optionally substituted aryl groups having 5 to 20 atoms;CPi, CP2, CP3, CP4, LU] and LU2 are each optionally substituted at one or more positions with one or more groups selected from -Ri-A, -R2-B, -R3 -C and -R4 -D, and may be attached through bridging functional groups -E- and -F-, with the proviso that the polymer as a whole must be substituted with a plurality of cationic groups;Ri, R2, R3 and R4 are independently selected from alkyl, alkenyl, alkoxy, alkynyl, and aryl, alkylaryl, arylalkyl, and polyalkylene oxide, each optionally substituted, and which may contain one or more heteroatoms, or may be not present;A, B, C and D are independently selected from H, -SiR'RR', -N+R'RR', a guanidinium group, histidine, a polyamine, a pyridinium group, and a sulfonium group;R', R and R' are independently selected from the group consisting of hydrogen, Ci-12 alkyl and C1-12 alkoxy and C3-10 cycloalkyl;E and F are independently selected from not present, -O-, -S-, -C(O)-, -C(O)O-, -C(R)(R')-, -N(R')-, and -Si(R')(R);b and e are independently 0 to about 250, wherein b + e > 1 ;a, c, d and f are independently 0 to about 250;and G and G1 are capping units and may be the same or different, and are selected from activated units that allow further chemical reaction to extend the polymer chain, and nonactivated termination units.