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董京金 ▍DONG Jing-Jin
 添加时间:2022/09/07 发布:
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个人信息

董京金教授

办公地点:南京工业大学丁家桥校区科技创新大楼D1501

Email: iamjjdong@njtech.edu.cn


教育和工作经历

2022至今:教授,南京工业大学先进材料研究院(IAM)

2021访问学者复旦大学

2016.10 – 2021.04:博士,荷兰格罗宁根大学 高分子物理

2013.09 – 2016.06硕士中国科学技术大学 材料工程

2008.09 2013.06学士大连医科大学    临床药学


研究方向

1. 基于钙钛矿材料的光电器件开发

2. 半导体薄膜材料的构效关系与材料演化机理研究


学术成绩

研究主要面向新型光电子器件,如钙钛矿太阳能电池、柔性热电、场效应晶体管等,通过对材料的构效关系的揭示,进行光电材料的设计、合成与改性,获得了领域内较有影响力的成果。另一方面,通过发展同步辐射方法学,进行功能性半导体材料晶体学的探索研究。目前已在Science Advances, Advanced Functional Materials, Journal of Materials Chemistry C等高水平期刊上发表论文40余篇,被引1000余次,H指数18。主持及参与国家自然科学基金青年基金、国家重点研发计划等国家级项目2项。


代表论著

1. J. Dong#, S. Shao#, S. Kahmann, A. J. Rommens, D. Hermida-Merino, G. H. ten Brink, M. A. Loi, G. Portale, Mechanism of Crystal Formation in Ruddlesden-Popper Sn-Based Perovskites. Advanced Functional Materials, 2001294 (2020).

2. C. Ma#, J. Dong#, M. Viviani#, I. Tulini, N. Pontillo, S. Maity, Y. Zhou, W. H. Roos, K. Liu, A. Herrmann, G. Portale, De Novo Rational Design of A Freestanding, Supercharged Polypeptide, Proton-Conducting Membrane. Science Advances, 6, eabc0810 (2020).

3. J. Dong, Jian Liu, Xinkai Qiu, Ryan Chiechi, L. Jan Anton Koster, Giuseppe Portale. Engineering the Thermoelectrical Properties of PEDOT:PSS by Alkali Metal Ion Effect. Engineering (2021).

4. J. Dong#, S. Sami#, D. M. Balazs, R. Alessandri, F. Jahani, L. Qiu, S. J. Marrink, R. W. A. Havenith, J. C. Hummelen, M. A. Loi, G. Portale, Fullerene derivatives with oligoethylene–glycol side chains: an investigation on the origin of their outstanding transport properties. Journal of Material Chemistry C (2021).

5. J. Dong, G. Portale, Role of the Processing Solvent on the Electrical Conductivity of PEDOT:PSS. Advanced Materials Interfaces, 2000641 (2020).

6. J. Dong, Dominic Gerlach, Panagiotis Koutsogiannis, Petra Rudolf, Giuseppe Portale. Boosting the thermoelectric properties of PEDOT:PSS via low-impact deposition of tin oxide nanoparticles. Advanced Electronic Materials, 2001284 (2021).

7. J. Dong#, M. Liu#, K. Zhang, Y. Cao, B. Jiang, G. Zu, R. Pei, Biocleavable Oligolysine-Grafted Poly(disulfide amine)s as Magnetic Resonance Imaging Probes. Bioconjugated Chemistry. 27, 151–158 (2016).

8. S. Shao, J. Dong, H. Duim, G. H. ten Brink, G. R. Blake, G. Portale, M. A. Loi, Enhancing the Crystallinity and Perfecting the Orientation of Formamidinium Tin Iodide for Highly Efficient Sn-Based Perovskite Solar Cells. Nano Energy. 60, 810–816 (2019).

9. J. Liu, Y. Shi, J. Dong, M. I. Nugraha, X. Qiu, M. Su, R. C. Chiechi, D. Baran, G. Portale, X. Guo, L. J. A. Koster, Overcoming Coulomb Interaction Improves Free-Charge Generation and Thermoelectric Properties for n-Doped Conjugated Polymers. ACS Energy Lett. 4, 1556–1564 (2019).

10. J. Liu, L. Qiu, R. Alessandri, X. Qiu, G. Portale, J. Dong, W. Talsma, G. Ye, A. A. Sengrian, P. C. T. Souza, M. A. Loi, R. C. Chiechi, S. J. Marrink, J. C. Hummelen, L. J. A. Koster, Enhancing Molecular n-Type Doping of Donor-Acceptor Copolymers by Tailoring Side Chains. Adv. Mater. 30, 1704630 (2018).

11. G. Fleury, D. Hermida-Merino, J. Dong, K. Aissou, A. Bytchkov, G. Portale, Micellar-Mediated Block Copolymer Ordering Dynamics Revealed by In Situ Grazing Incidence Small-Angle X-Ray Scattering during Spin Coating. Adv. Funct. Mater. 29, 1806741 (2019).

12. J. Liu, B. van der Zee, R. Alessandri, S. Sami, J. Dong, M. I. Nugraha, A. J. Barker, S. Rousseva, L. Qiu, X. Qiu, N. Klasen, R. C. Chiechi, D. Baran, M. Caironi, T. D. Anthopoulos, G. Portale, R. W. A. Havenith, S. J. Marrink, J. C. Hummelen, L. J. A. Koster, N-type Organic Thermoelectrics: Demonstration of ZT > 0.3. Nat. Commun. 11, 5694 (2020).

13. X. Qiu, V. Ivasyshyn, L. Qiu, M. Enache, J. Dong, S. Rousseva, G. Portale, M. Stöhr, J. C. Hummelen, R. C. Chiechi, Thiol-Free Self-Assembled Oligoethylene Glycols Enable Robust Air-Stable Molecular Electronics. Nat. Mater. 19, 330–337 (2020).

14. S. Shao, Y. Cui, H. Duim, X. Qiu, J. Dong, G. H. ten Brink, G. Portale, R. C. Chiechi, S. Zhang, J. Hou, M. A. Loi, Enhancing the Performance of the Half Tin and Half Lead Perovskite Solar Cells by Suppression of the Bulk and Interfacial Charge Recombination. Adv. Mater. 30, 1803703 (2018).

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