Conjugated polymers
View Patent ↗The invention relates to novel conjugated polymers containing repeating units comprising a halogenated benzene ring, a silolobithiophene moiety, and a benzofused heteroaromatic moiety, to methods for their preparation and educts or intermediates used therein, to polymer blends, mixtures and formulations containing them, to the use of the polymers, polymer blends, mixtures and formulations as organic semiconductors in organic electronic (OE) devices, especially in organic photovoltaic (OPV) devices and organic photodetectors (OPD), and to OE, OPV and OPD devices comprising these polymers, polymer blends, mixtures or formulations.
1. A polymer comprising:
at least one unit of formula I
wherein
A is an optionally substituted, benzofused heteroaryl moiety comprising 1-6 heteroatoms selected from the group consisting of N, O, S, P, Si, Se, As, Te, and Ge, wherein the benzofused heteroaryl moiety is selected from the group consisting of
formula B1a, formula B1b, formula B1c, formula B2a, formula B2b, and formula B3a,
R 1 and R 2 are the same or different, and are independently selected from H or halogen,
R 3 , R 4 , R 5 , R 6 , R 7 are the same or different, and are independently selected from H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties,
Y 1 and Y 2 are the same or different, and are independently selected from H, F, Cl or CN,
R 0 and R 00 are the same or different, and are independently selected from H or optionally substituted C 1 -C 40 carbyl or hydrocarbyl moieties.
2. The polymer according to claim 1 , wherein A is a moiety selected from the group consisting of formula B1a, formula B2b and formula B3a.
3. The polymer according to claim 1 , wherein the at least one unit of formula I is selected from the group consisting of formula Ia, formula Ib, formula Ic, formula Id, formula Ie, formula If, formula Ig, formula Ih, formula Ii, formula Ij, formula Ik, formula Il, formula Im, formula In, formula Io, formula Ip, formula Iq, and formula Ir,
wherein R 3 , R 5 and R 6 are the same or different, and are independently selected from H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties.
4. The polymer according to claim 1 of formula II
wherein
A is at least one unit selected from the group consisting of formula I, formula Ia, formula Ib, formula Ic, formula Id, formula Ie, formula If, formula Ig, formula Ih, formula Ii, formula Ij, formula Ik, formula Il, formula Im, formula In, formula Io, formula Ip, formula Iq, and formula Ir,
B is at least one unit that is different from A and is selected from the group consisting of formula I, formula Ia, formula Ib, formula Ic, formula Id, formula Ie, formula If, formula Ig, formula Ih, formula Ii, formula Ij, formula Ik, formula Il, formula Im, formula In, formula Io, formula Ip, formula Iq, and formula Ir,
wherein R 3 , R 5 and R 6 are the same or different, and are independently selected from H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties;
x is >0 and ≦1,
Y is ≧0 and <1,
x+y is 1, and
n is an integer >1.
5. The polymer according to claim 4 selected from the group consisting of formula IIa, formula IIb, formula IIc, formula IId, formula IIe, formula IIf, formula IIg, formula IIh, formula IIi, formula Ilk, formula IIm, formula IIn, formula IIo, formula IIp, formula IIq, and formula IIr,
wherein R 3 , R 5 and R 6 are the same or different, and are independently selected from H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, n is an integer >1, 0<x<1 and 0<y<1.
6. A polymer of formula III
R 8 -chain-R 9 III
wherein “chain” is the polymer of claim 4 , R 8 and R 9 are the same or different, and are selected independently from the group consisting of H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, or are selected independently from the group consisting of H, F, Br, Cl, I, —CH 2 Cl, —CHO, —CR a ═CR b 2 , —SiR a R b R c , —SiR a X a X b , —SiR a R b X a , —SnR a R b R c , —BR a R b , —B(OR a )(OR b ), —B(OH) 2 , —O—SO 2 —R a , —C≡CH, —C≡—SiR a 3 , —ZnX a or an endcap group, X a and X b are halogen, R a , R b and R c are the same or different, and are selected independently from the group consisting of H or optionally substituted C 1 -C 40 carbyl or hydrocarbyl moieties, and wherein two of R a , R b and R c may also form a ring together with the hetero atom to which they are attached.
7. A mixture or polymer blend comprising:
at least one polymer according to claim 1 , and
at least one compound or polymer having semiconducting, charge transport, hole/electron transport, hole/electron blocking, electrically conducting, photoconducting or light-emitting properties.
8. The mixture or polymer blend of claim 7 , further comprising at least one n-type organic semiconductor compounds.
9. The mixture or polymer blend according to claim 8 , wherein the n-type organic semiconductor compound is a fullerene or substituted fullerene.
10. A formulation comprising at least one polymer according to claim 1 , and one or more solvent.
11. A device comprising the polymer according to claim 1 wherein the device has charge transport, semiconducting, electrically conducting, photoconducting or light emitting properties wherein the device is an optical, electrooptical, electronic, electroluminescent or photoluminescent device.
12. A material comprising the polymer of claim 1 having charge transport, semiconducting, electrically conducting, photoconducting or light emitting properties.
13. An optical, electrooptical, electronic, electroluminescent or photoluminescent device which comprises a charge transport, semiconducting, electrically conducting, photoconducting or light emitting material comprising the polymer according to claim 1 .
14. The device according to claim 13 , wherein the device is an organic field effect transistor (OFET), a thin film transistor (TFT), an organic light emitting diode (OLED), an organic light emitting transistor (OLET), an organic photovoltaic device (OPV), an organic photodetector (OPD), an organic solar cell, a laser diode, a Schottky diode, and photoconductors.
15. The device according to claim 14 , wherein the device is an organic field effect transistor (OFET), a bulk heterojunction (BHJ) organic photovoltaic (OPV) device or an inverted bulk heterojunction organic photovoltaic (BHJ OPV) device.
16. A process of preparing the polymer of claim 1 in an aryl-aryl coupling reaction with at least two monomers of formula V
wherein
A is an optionally substituted, benzofused heteroaryl moiety comprising 1-6 heteroatoms selected from the group consisting of
formula B1a, formula B1b, formula B1c, formula B2a, formula B2b, and formula B3a,
R 3 , R 4 , R 6 , R 7 are the same or different, and are independently selected from H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties,
and R 10 and R 11 are selected independently of each other from the group consisting of H, Cl, Br, I, O-tosylate, O-triflate, O-mesylate, O-nonaflate, —SiMe 2 F, —SiMeF 2 , —O—SO 2 Z 1 , —B(OZ 2 ) 2 , —CZ 3 ═C(Z 3 ) 2 , —C≡CH, —C≡CSi(Z 1 ) 3 , —ZnX 0 and —Sn(Z 4 ) 3 , wherein X 0 is halogen, preferably Cl, Br or I, Z 1 , Z 2 , Z 3 , Z 4 are selected from the group consisting of substituted or unsubstituted alkyl and aryl, and two groups Z 2 may also together form a cyclic group.
17. The polymer of claim 1 wherein R 1 and R 2 are the same or different, and are independently selected from H or F.
18. The polymer of claim 1 wherein R 3 , R 4 , R 5 , and R 6 are the same or different, and are independently selected from halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR00-, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and in which one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties.
19. The polymer of claim 1 wherein R 0 and R 00 are the same or different, and are independently selected from H or optionally substituted C 1 -C 12 carbyl or hydrocarbyl moieties.
20. The polymer according to claim 1 of formula II
wherein
A is a unit selected from the group consisting of formula I, formula Ia, formula Ib, formula Ic, formula Id, formula Ie, formula If, formula Ig, formula Ih, formula Ii, formula Ij, formula Ik, formula Il, formula Im, formula In, formula Io, formula Ip, formula Iq, and formula Ir,
B is a unit that is different from A and is selected from aryl and heteroaryl groups that are optionally substituted,
wherein R 3 , R 5 and R 6 are the same or different, and are independently selected from H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties;
x is >0 and ≦1,
Y is ≧0 and <1,
x+y is 1, and
n is an integer >1.
21. The polymer of formula III
R 8 -chain-R 9 III
wherein “chain” is the polymer of claim 5 , wherein R 8 and R 9 are the same or different, and are selected independently from the group consisting of H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, or are selected independently from the group consisting of H, F, Br, Cl, I, —CH 2 Cl, —CHO, —CR a ═CR b 2 , —SiR a R b R c , —SiR a X a X b , —SiR a R b X a , —SnR a R b R c , —BR a R b , —B(OR a )(OR b ), —B(OH) 2 , —O—SO 2 —R a , —C≡CH, —C≡C—SiR a 3 , —ZnX a or an endcap group, X a and X b are halogen, R a , R b and R c are the same or different, and are selected independently from the group consisting of H or optionally substituted C 1 -C 40 carbyl or hydrocarbyl moieties, and wherein two of R a , R b and R c may also form a ring together with the hetero atom to which they are attached.
22. The polymer of formula III
R 8 -chain-R 9 III
wherein “chain” is the polymer of claim 20 , wherein R 8 and R 9 are the same or different, and are selected independently from the group consisting of H, halogen, C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, in which one or more non-adjacent CH 2 groups are optionally replaced by —O—, —S—, —C(O)—, —C(S)—, —C(O)—O—, —O—C(O)—, —NR 0 —, —SiR 0 R 00 —, —CF 2 —, —CHR 0 ═CR 00 —, —CY 1 ═CY 2 — or —C≡C— so that O and/or S atoms are not linked directly to one another, and one or more H atoms are optionally replaced by F, Cl, Br, I or CN, or aryl, heteroaryl, aryloxy or heteroaryloxy with 4 to 20 ring atoms that are optionally substituted by halogen or substituted or unsubstituted C 1 -C 30 straight-chain, branched or cyclic alkyl moieties, or are selected independently from the group consisting of H, F, Br, Cl, I, —CH 2 Cl, —CHO, —CR a ═CR b 2 , —SiR a R b R c , —SiR a X a X b , —SiR a R b X a , —SnR a R b R c , —BR a R b , —B(OR a )(OR b ), —B(OH) 2 , —O—SO 2 —R a , —C≡CH, —C≡C—SiR a 3 , —ZnX a or an endcap group, r and X b are halogen, R a , R b and R c are the same or different, and are selected independently from the group consisting of H or optionally substituted C 1 -C 40 carbyl or hydrocarbyl moieties, and wherein two of R a , R b and R c may also form a ring together with the hetero atom to which they are attached.
23. The polymer of claim 5 wherein 0.05<x<0.95 and 0.05<y<0.95.
24. The formulation of claim 10 wherein the solvent is an organic solvent.
25. The process of claim 16 wherein R 10 and R 11 are the same or different, and are independently selected from the group consisting of H, Cl, Br, I, —B(OZ 2 ) 2 and —Sn(Z 4 ) 3 .