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成果及论文

2024

60. Yang, Q.; Wu, R.; Yang, L.; Liu, W.; Meng, X.; Zhang, W.; Shen, S.; Li, M.; Zhou, Y.*; Song, J.*Tetrathiophene-based fully non-fused ring electron acceptors via asymmetric side chain engineering. Dyes and Pigments 2024, 221, 111808.   [Link]


2023年

59. Shen, S.; Mi, Y.; Ouyang, Y.; Lin, Y.; Deng, J.; Zhang, W.; Zhang, J.; Ma, Z.; Zhang, C.; Song, J.*; Bo, Z.,  Macrocyclic Encapsulation in a Non-fused Tetrathiophene Acceptor for Efficient Organic Solar Cells with High Short-Circuit Current Density. Angew. Chem. Int. Ed. 2023, 62, e2023164955.   [Link]


58. Yang, L.; Shen, S.; Chen, X.; Wei, H.; Xia, D.; Zhao, C.; Zhang, N.; Hu, Y.; Li, W.; Xin, H.*; Song, J.*, Doped/Undoped A1-A2 Typed Copolymers as ETLs for Highly Efficient Organic Solar Cells. Adv. Funct. Mater. 2023, 33(36), 2303603.   [Link]

57. Zhou, Y.; Liu, P.; Shen, S.; Li, M.; Qin, R.; Qin, C.; Song, J.*; Bo, Z.*; Zhang, L.*,Terthiophene based low-cost fully non-fused electron acceptors for high-efficiency as-cast organic solar cells.  J. Mater. Chem. A 2023, 11,  7498-7504.  [Link]

Graphical abstract: Terthiophene based low-cost fully non-fused electron acceptors for high-efficiency as-cast organic solar cells

56. Song, J.*Bo, Z.*, Asymmetric molecular engineering in recent nonfullerene acceptors for efficient organic solar cells. Chin. Chem. Lett. 202334, 108163. [Link]

55. Shen, S.; Yang, L.; Mi, Y.; Zhou, Y.; Li, M.; Zhang, J.; Ye, L.; Song, J.*, Alkyl Branching Sites on π-Spacers for Dipyran-Based High-Efficiency Organic Solar Cells. ACS Appl. Energy. Mater. 20236, 2, 1066–1075 [Link]


2022年

54. Li, M.; Feng, S.; Shen, S.; Huang, H.; Xue, W.; Yu, N.; Zhou, Y.; Ma, W.; Song, J.*; Tang, Z.*; Bo, Z.*, High efficiency ternary organic solar cells via morphology regulation with asymmetric nonfused ring electron acceptor. Chem. Eng. J. 2022, 438, 135384-135391.   [Link]

53. Zhou, Y.; Li, M.; Yu, N.; Shen, S.; Song, J.*; Ma, Z.*; Bo, Z.*, Simple Tricyclic-Based A‑π-D-π-A-Type Nonfullerene Acceptors for High-Efficiency Organic Solar Cells. ACS Appl. Mater. Interfaces 2022, 14, 6039–6047.   [Link]

52. Li, M;  Yu, M.;  Yang, L;  Yu, N;  Zhou, Y.;  Hu, L.;  Ma, Z.;  Qin, C.;  Qin, R*; Song, J.*, Using Fullerene as the Third Component to Boosting the Photovoltaic Performances of Pyran Acceptor. Dyes and Pigments 2022, 197, 109933.    [Link]


2021年 

51. Zhou, Y.;  Li, M.;  Lu, H.;  Jin, H.;  Wang, X.;  Zhang, Y.;  Shen, S.;  Ma, Z.;  Song, J.*; Bo, Z.*, High‐Efficiency Organic Solar Cells Based on a Low‐Cost Fully Non‐Fused Electron Acceptor. Adv. Funct. Mater. 2021, 31 (27), 2101742.  [Link] 


50. Zhou, Y.;  Li, M.;  Shen, S.;  Wang, J.;  Zheng, R.;  Lu, H.;  Liu, Y.;  Ma, Z.;  Song, J.*; Bo, Z.*, Hybrid Nonfused-Ring Electron Acceptors with Fullerene Pendant for High-Efficiency Organic Solar Cells. ACS Appl. Mater. Interfaces 2021, 13 (1), 1603-1611.   [Link] 

49. Li, M;  Yang, L.;  Zhou, Y.;  Liu, Y.;  Song, J.*;  Wang, H.*; Bo, Z.*, Flexible-Rigid Synergetic Strategy for Saddle-Shaped Perylene Diimide Acceptors in As-Cast Polymer Solar Cells. J. Phys. Chem. C 2021, 125 (20), 10841-10849.   [Link]

48. Liu, Y.;  Song, J.*; Bo, Z.*, Designing high performance conjugated materials for photovoltaic cells with the aid of intramolecular noncovalent interactions. Chem. Commun. 2021, 57 (3), 302-314.    [Link] 

47. Wang, X.;  Lu, H;  Zhou, J.;  Xu, X.;  Zhang, C;  Huang, H;  Song, J.;  Liu, Y.*;  Xu, X.*;  Xie, Z.;  Tang, Z; Bo, Z.*, High-Performance Simple Nonfused Ring Electron Acceptors with Diphenylamino Flanking Groups. ACS Appl. Mater. Interfaces 2021, 13 (33), 39652-39659.   [Link] 


46.  Li, M.; Yang, L.; Wang, H.; Qin, C.; Song, J.; Zhang, Y.; Wang, W.; Wu, Y.; Zhang, X.; Zheng, H., Coupling mechanism between photogenerated carriers and triboelectric charges and photoinduced reinforcement of a triboelectric nanogenerator[J]. Appl. Phys. Lett. 2021, 119(6), 063903. [Link]

45. Wang, X.;  Cui, X.;  Lu, H.;  Chen, Y.;  Liu, Y.;  Zhou, Y.;  Zhang, C.;  Song, J.;  Li, C.*;  Zhang, Z.*; Bo, Z.*, Insights into out-of-plane side chains effects on optoelectronic and photovoltaic properties of simple non-fused electron acceptors. Org. Electron. 2021, 89, 106029.   [Link] 


2020年

44. Li, B.;  Li, Z.;  Guo, F.;  Song, J.;  Jiang, X.;  Wang, Y.*;  Gao, S.;  Wang, J.;  Pang, X.;  Zhao, L.; Zhang, Y.*, Realizing Efficient Single Organic Molecular White Light-Emitting Diodes from Conformational Isomerization of Quinazoline-Based Emitters. ACS Appl. Mater. Interfaces 2020, 12 (12), 14233-14243.   [Link] 

43. Li, M.;  Liu, Y.;  Zhou, Y.;  Yang, L.;  Shen, S.;  Song, J.*; Bo, Z.*, Photovoltaic Performances of Fused Ring Acceptors with Isomerized Ladder-Type Dipyran Cores. ACS Appl. Mater. Interfaces 2020, 12 (4), 4887-4894.   [Link] 

42. Li, M.;  Wang, H.;  Liu, Y.;  Zhou, Y.;  Lu, H.;  Song, J.*; Bo, Z.*, Perylene diimide acceptor with two planar arms and a twisted core for high efficiency polymer solar cells. Dyes and Pigments 2020, 175, 108186.   [Link] 

41. Li, M.;  Zhou, Y.;  Yang, L.;  Shen, S.;  Liu, Y.;  Chen, Y.;  Song, J.*; Bo, Z.*, Regulating molecular orientations of dipyran-based nonfullerene acceptors through side-chain engineering at the π-bridge. J. Mater. Chem. A 2020, 8 (42), 22416-22422.   [Link] 

40. Wang, H.;  Li, M.;  Song, J.;  Li, C.H.*; Bo, Z.S.*, Extended π-conjugated perylene diimide dimers toward efficient organic solar cells. Dyes and Pigments 2020, 183, 108736.   [Link] 

39. Zhang, Y.;  Zhang, C.;  Huang, H.;  Jin, H.;  Gao, Y.;  Zheng, R.;  Song, J.;  Li, C.*;  Ma, Z.*; Bo, Z.*, Simple dithienosilole-based nonfused nonfullerene acceptor for efficient organic photovoltaics. Dyes and Pigments 2021, 184, 108789.   [Link] 


2019年

38. Song, J.; Bo, Z.*, Planar copolymers for high-efficiency polymer solar cells. Sci. Chi. Chem. 2019, 30, 9-13.  [Link]

                                                                             

37. Ahmed Qureshi, M. B.;  Li, M.;  Wang, H.;  Song, J.*; Bo, Z.*, Nonfullerene acceptors with an N-annulated perylene core and two perylene diimide units for efficient organic solar cells. Dyes and Pigments 2020, 173,107970.   [Link] 

36. Huang, H.;  Guo, Q.;  Feng, S.;  Zhang, C.;  Bi, Z.;  Xue, W.;  Yang, J.;  Song, J.;  Li, C.;  Xu, X.;  Tang, Z.;  Ma, W.*; Bo, Z.*, Noncovalently fused-ring electron acceptors with near-infrared absorption for high-performance organic solar cells. Nat. Commun. 2019, 10 (1), 3038.   [Link] 

35. Li, M.;  Zhou, Y.;  Zhang, J.;  Song, J.*; Bo, Z.*, Tuning the dipole moments of nonfullerene acceptors with an asymmetric terminal strategy for highly efficient organic solar cells. J. Mater. Chem. A 2019, 7 (15), 8889-8896.   [Link] 

34. Liu, Y.;  Li, M.;  Yang, J.;  Xue, W.;  Feng, S.;  Song, J.*;  Tang, Z.;  Ma, W.; Bo, Z.*, High‐Efficiency As‐Cast Organic Solar Cells Based on Acceptors with Steric Hindrance Induced Planar Terminal Group. Adv. Energ. Mater. 2019, 9 (32), 1901280.   [Link] 

33. Ming, S.;  Zhang, C.;  Jiang, P.;  Jiang, Q.;  Ma, Z.;  Song, J.*; Bo, Z.*, Impact of the Bonding Sites at the Inner or Outer pi-Bridged Positions for Non-Fullerene Acceptors. ACS Appl. Mater. Interfaces 2019, 11 (21), 19444-19451.   [Link] 

32. Wang, H.;  Li, M.;  Liu, Y.;  Song, J.;  Li, C.*; Bo, Z.*, Perylene diimide based star-shaped small molecular acceptors for high efficiency organic solar cells. J. Mater. Chem. C 2019, 7 (4), 819-825.   [Link] 


2018年

31. Li, M.;  Guo, Y.;  Zhou, Y.;  Zhang, J.;  Yang, L.;  Zhang, L.;  Song, J.*;  Bo, Z.*; Wang, H.*, Facile Synthesis of the O-Functionalized Ladder-Type Dipyran Building Block and Its Application in Polymer Solar Cells. ACS Appl. Mater. Interfaces 2018, 10 (16), 13931-13940.   [Link] 

30. Ming, S.;  Liu, Y.H.;  Feng, S.;  Jiang, P.;  Zhang, C.;  Li, M.;  Song, J.*; Bo, Z.*, Fused-ring acceptor with a spiro-bridged ladder-type core for organic solar cells. Dyes and Pigments 2019, 163, 153-158.   [Link] 

29. Xu, F.;  Tang, W.;  Kang, S.;  Song, J.*; Duan, X.*, A highly sensitive and photo-stable fluorescent probe for endogenous intracellular H2O2 imaging in live cancer cells. Dyes and Pigments 2018, 153, 61-66.   [Link] 

28. Yang, L.;  Li, M.;  Song, J.*;  Zhou, Y.;  Bo, Z.*; Wang, H.*, Molecular Consideration for Small Molecular Acceptors Based on Ladder-Type Dipyran: Influences of O-Functionalization and π-Bridges. Adv. Funct. Mater. 2018, 28 (8),1705927.   [Link] 

 

27. Zhou, Y.;  Li, M.;  Song, J.*;  Liu, Y.;  Zhang, J.;  Yang, L.;  Zhang, Z.;  Bo, Z.*; Wang, H.*, High efficiency small molecular acceptors based on novel O-functionalized ladder-type dipyran building block. Nano Energy 2018, 45, 10-20.   [Link] 



2017年

26. Fan, M.;  Zhou, Y.;  Guo, Y.;  Song, J.*; Duan, X.*, Bright red fluorescent conjugated polymer nanoparticles with dibenzopyran as electron donor for cell imaging. Anal. Methods 2017, 9 (21), 3255-3259.   [Link] 

25. Guo, Y.;  Li, M.;  Zhou, Y.;  Song, J.*;  Bo, Z.*; Wang, H.*, Two-Dimensional Conjugated Polymer Based on sp2-Carbon Bridged Indacenodithiophene for Efficient Polymer Solar Cells. Macromolecules 2017, 50 (20), 7984-7992.   [Link] 

24. Zhang, Z.;  Li, M.;  Liu, Y.;  Zhang, J.;  Feng, S.;  Xu, X.*;  Song, J.*; Bo, Z.*, Simultaneous enhancement of the molecular planarity and the solubility of non-fullerene acceptors: effect of aliphatic side-chain substitution on the photovoltaic performance. J. Mater. Chem. A 2017, 5 (17), 7776-7783.   [Link] 



2016年

23. Fan, J.;  Zhang, Y.*;  Lang, C.;  Qiu, M.;  Song, J.;  Yang, R.;  Guo, F.;  Yu, Q.;  Wang, J.; Zhao, L., Side chain effect on poly(beznodithiophene-co-dithienobenzoquinoxaline) and their applications for polymer solar cells. Polym. 2016, 82, 228-237.   [Link] 

22. Li, M.;  Liu, L.;  Zhao, C.;  Zhou, Y.;  Guo, Y.;  Song, J.*; Wang, H.*, Side chain engineering of dithienosilole-based polymers for application in polymer solar cells. Dyes and Pigments 2016, 134, 480-486.   [Link] 

21. Liu, L.;  Song, J.*;  Lu, H.;  Wang, H.*; Bo, Z.*, Novel dithienosilole-based conjugated copolymers and their application in bulk heterojunction solar cells. Polym. Chem. 2016, 7 (2), 319-329.   [Link] 

20. Liu, L.;  Zhang, L.;  Li, M.;  Guo, Y.;  Song, J.*; Wang, H.*, Random dithienosilole-based terpolymers: Synthesis and application in polymer solar cells. Dyes and Pigments 2016, 130, 63-69.   [Link] 

19. Liu, Q.;  Gao, X.;  Zhong, H.;  Song, J.*; Wang, H.*, Planar Heptathienoacenes Based on Unsymmetric Dithieno[3,2-b:3',4'-d]thiophene: Synthesis and Photophysical Properties. J. Org.  Chem. 2016, 81 (18), 8612-8616.   [Link] 

18. Zhang, S.;  Liu, X.;  Li, C.;  Li, L.;  Song, J.*;  Shi, J.;  Morton, M.;  Rajca, S.;  Rajca, A.*; Wang, H.*, Thiophene-Based Double Helices: Syntheses, X-ray Structures, and Chiroptical Properties. J. Am. Chem. Soc. 2016, 138 (31), 10002-10010.   [Link] 

17. Zhao, X.;  Zhang, L.;  Song, J.*;  Kan, Y.; Wang, H.*, Naphthotetrathiophene-Based Helicene-Like Molecules: Synthesis and Photophysical Properties. J. Org. Chem. 2016, 81 (11), 4856-4860.   [Link] 

16. Zhou, Y.;  Li, M.;  Guo, Y.;  Lu, H.;  Song, J.*;  Bo, Z.*; Wang, H.*, Dibenzopyran-Based Wide Band Gap Conjugated Copolymers: Structural Design and Application for Polymer Solar Cells. ACS Appl. Mater. Interfaces 2016, 8 (45), 31348-31358.   [Link] 


2015年

15. Li, C.*;  Wu, L.;  Xu, W.;  Song, J.;  Shi, J.;  Yu, P.;  Kan, Y.; Wang, H.*, Silicon Spiro Double Helicene-like Compounds Based on Dithieno[2,3-b:3',2'-d]thiophene: Syntheses and Crystal Structures. J. Org. Chem. 2015, 80 (21), 11156-11161.   [Link] 

14. Song, J.*;  Guo, Y.;  Liu, L.; Wang, H.*, Efficient synthesis of dibenzopyran building block and its application in organic photovoltaics. Dyes and Pigments 2015, 122, 184-191.   [Link] 

13. Song, J.*;  Wu, T.;  Zhao, X.;  Kan, Y.; Wang, H.*, Synthesis and molecular properties of butterfly-shaped tetrathiophene derivatives. Tetrahedron Lett. 2015, 71 (12), 1838-1843.   [Link] 


2014年

12. Elder, D. L.;  Benight, S. J.;  Song, J.;  Robinson, B. H.; Dalton, L. R.*, Matrix-Assisted Poling of Monolithic Bridge-Disubstituted Organic NLO Chromophores. Chem. Mater. 2014, 26 (2), 872-874.     [Link] 

11. Jin, W.;  Johnston, P. V.;  Elder, D. L.;  Tillack, A. F.;  Olbricht, B. C.;  Song, J.;  Reid, P. J.;  Xu, R.;  Robinson, B. H.; Dalton, L. R., Benzocyclobutene barrier layer for suppressing conductance in nonlinear optical devices during electric field poling. Appl. Phys. Lett. 2014, 104 (24), 243304.   [Link] 

10. Shi, J.*;  Zhao, W.;  Xu, L.;  Kan, Y.*;  Li, C.;  Song, J.; Wang, H.*, Small Molecules of Cyclopentadithiophene Derivatives: Effect of Sulfur Atoms Position and Substituted Groups on Their UV-abs Properties. J. Phys. Chem. A 2014, 118, 15, 7844-7855.   [Link] 

9. Wang, Y.;  Gao, D.;  Shi, J.*;  Kan, Y.*;  Song, J.;  Li, C.; Wang, H.*, Derivation of saddle shaped cyclooctatetrathiophene: increasing conjugation and fabricating pentamer. Tetrahedron Lett. 2014, 70 (3), 631-636.   [Link] 

8. Wang, Y.;  Song, J.*;  Xu, L.;  Kan, Y.*;  Shi, J.; Wang, H.*, Synthesis and characterization of cyclooctatetrathiophenes with different connection sequences. J. Org. Chem. 2014, 79 (5), 2255-2262.   [Link] 


2013年

7. Han, H.;  Zhao, W.;  Song, J.;  Li, C.; Wang, H.*, Selectivity of Br/Li exchange and deprotonation of 4,4'-dibromo-3,3'-bithiophene for synthesis of symmetrical and unsymmetrical dithienoheteroaromatic rings. J. Org. Chem. 2013, 78 (6), 2726-2730.   [Link] 


2011年

6. Qin, Y.;  Peng, Q.*;  Song, J.; Zhou, D., Highly efficient copper-catalyzed hydroacylation reaction of aldehydes with azodicarboxylates. Tetrahedron Lett. 2011, 52 (44), 5880-5883.   [Link] 

5. Song, J.;  Du, C.;  Li, C.; Bo, Z., Silole‐containing polymers for high‐efficiency polymer solar cells. J. Polym. Sci., Part A: Polym. Chem. 2011, 49 (19), 4267-4274.   [Link] 


2010年

4. Song, J.;  Zhang, C.;  Li, C.*;  Li, W.;  Qin, R.;  Li, B.;  Liu, Z.; Bo, Z.*, Conjugated polymers with broad absorption: Synthesis and application in polymer solar cells. J. Polym. Sci., Part A: Polym. Chem. 2010, 48 (12), 2571-2578.   [Link] 

3. Zhu, H.;  Li, T.;  Zhang, Y.;  Dong, H.;  Song, J.;  Zhao, H.;  Wei, Z.;  Xu, W.;  Hu, W.*; Bo, Z.*, High-performance organic nanoscale photoswitches based on nanogap electrodes coated with a blend of poly(3-hexylthiophene) and [6,6]-phenyl-C61-butyric acid methyl ester (P3HT:PCBM). Adv. Mater. 2010, 22 (14), 1645-1648.   [Link] 


2009年

2.  Zhang, F.; Luo, Y.; Song, J.; Guo, X.; Liu, W.; Ma, C.; Huang, Y.; Ge, M.; Bo, Z., Triphenylamine-based dyes for dye-sensitized solar cell. Dyes and Pigments 2009, 81(3):224-230.   [Link]

1. Song, J.; Zhang, F.;Li, C.; Liu, W.;Li, J., Phenylethyne-Bridged Dyes for Dye-Sensitized Solar Cells.J. Phys. Chem. C 2009, 113(30):13391-13397.   [Link]