【正文】
異丙醇做浸泡溶劑 (D). FIG. 3. 器件表面粗糙度 (a) A, (b) B, (c) C, and (d) D。 參考文獻(xiàn) 1. D. S. Hecht, L. Hu, and G. Irvin, Adv. Mater. 23, 1482 (2022). 2. . Na, . Kim, J. Jo, and . Kim, Adv. Mater. 20, 4061 (2022). 3. Y. Xia, K. Sun, and J. Ouyang, Adv. Mater. 24, 2436 (2022). 4. . Yeo, . Yun, . Kim, S. Park, . Kim, . Yoon, . Kim, and . Na, ACS Appl. Mater. Interfaces 4, 2551 (2022). 5. . Chung, . Song, B. Bob, R. Zhu, . Duan, and Y. Yang, Adv. Mater. 24, 5499 (2022). 6. Z. Wu, Z. Chen, X. Du, J. M. Logan, J. Sippel, M. Nikolou, K. Kamaras, J. R. Reynolds, D. B. Tanner, A. F. Hebard, and A. G. Rinzler, Science 305, 1273 (2022). [MEDLINE] 7. K. S. Kim, Y. Zhao, H. Jang, S. Y. Lee, J. M. Kim, K. S. Kim, . Ahn, P. Kim, . Choi, and B. H. Hong, Nature 457, 706 (2022). [MEDLINE] 8. X. Wan, G. Long, L. Huang, and Y. Chen, Adv. Mater. 23, 5342 (2022) Immerse precipitation as an efficient protocol to optimize morphology and performance of anic solar cells一種有效地優(yōu)化有機太陽能電池形貌和性能的方法 ——浸沒沉淀法 對于體異質(zhì)結(jié)太陽能電池 , 有機層的薄膜形貌對于器件性能的影響是很大的 , 因此 , 退火