邵世洋 教授|博导/硕导
-研究方向有机光电材料,高分子光电材料,力刺激响应光功能材料
-联系方式ssyang@hainanu.edu.cn

邵世洋,男,教授,硕士/博士研究生导师,国家级人才项目入选者。承担《高分子化学》等核心专业课程教学,围绕光电功能高分子合成化学与性能调控开展研究工作,提出了空间电荷转移荧光高分子的学术概念,创建了碳正离子窄谱带发光材料体系。在J. Am. Chem. Soc.(4)、Angew. Chem. Int. Ed.(6)、Adv. Mater.(2)等顶尖学术期刊发表论文80余篇;撰写英文专著1部;获授权发明专利30余项;作为负责人主持国家基金委联合基金重点项目、面上项目、国家重点研发项目课题、海南省重点研发项目等。入选国家级人才项目,获中国科公司优秀博士学位论文、吉林省自然科学学术成果奖一等奖,入选中国科公司青年创新促进会会员和优秀会员;获bevictor1946韦德官网青年五四奖章;担任高分子三刊、《应用化学》和《发光学报》青年编委。


教育背景:

2006—2012 中国科学经理春应用化学研究所,博士

2002—2006 武汉大学  化学与分子科学公司,学士


工作经历:

2022—至今 bevictor1946韦德官网材料科学与工程公司 教授

2012—2022 中国科学经理春应用化学研究所 助理研究员/副研究员


主持科研项目:

1.2026-2029 国家自然科学基金联合基金(重点支持项目),主持

2.2025-2028 国家重点研发计划课题,主持

3.2025-2028 国家自然科学基金面上项目,主持

4.2022-2024 国家自然科学优秀青年科学基金,主持

5.2021-2024 国家自然科学基金面上项目,主持

6.2016-2019 国家自然科学基金面上项目,主持

7.2013- 2015 国家自然科学基金青年项目,主持

8.2016-2020 国家重点研发计划课题,主持

9.2025-2028 海南省重点研发项目(B档),主持

10.2024-2027 海南省科技人才创新项目,主持

11.2020-2022 中国科公司,青年创新促进会“优秀会员”基金,主持

12.2016-2019 中国科公司 青年创新促进会会员基金,主持


代表性论著:

1. Shiyang Shao, Electrophosphorescent Polymers Based on Polyarylether Hosts.

Springer, 2014, ISBN 978-3-662-44376-7


代表性论文:

1. Dicarbocation-Doped Polycyclic Aromatic Hydrocarbons with Efffcient Deep-Red Narrowband Electroluminescence

Siyu Li, # Zhihua Ma, # Wenchao Xie, Kun Lyv, Junpeng Li, Ronghao Yang, Fangfang Huang,

Yanpei Wang,* Xin Ai, Zhicai Chen, and Shiyang Shao*

J. Am. Chem. Soc. 2026, doi: 10.1021/jacs.5c20139

2. Non-Fused Carbonyl/Nitrogen Multi-Resonance Emitters Enable Efficient Pure-Red Narrowband Electroluminescence

Kun Lyu,‡ Zhihua Ma,‡ Yuanyuan Li,‡ Weitai Xu, Yang Liu, Ronghao Yang, Xinliang Ding, Zhicai Chen,* Xin Ai, Yanpei Wang, Fangfang Huang, Shiyang Shao*

Angew. Chem. Int. Ed. 2025, 10.1002/anie.202518808

3. Carbocation-Based Multiresonance Thermally Activated Delayed Fluorescent Emitters with Efficient Narrowband Electroluminescence

Tao Li +, Guimin Zhao+, Yuanyuan Li +, Kun Lyu, Wenchao Xie, Zhenni Bai, Xinliang Ding, Ronghao Yang, Zhicai Chen,* Zhihua Ma, Xin Ai, Wei Jiang,* Yanpei Wang, Fangfang Huang, and Shiyang Shao*

Angew. Chem. Int. Ed. 2025, 63, e202510511

4. Endo-Encapsulated Multi-Resonance Dendrimers with Through-Space Interactions for Efficient Narrowband Blue-Emitting Solution-Processed OLEDs

Yufei Chang, Kaiyuan Zhang, Lei Zhao, Xingdong Wang, Shumeng Wang, Shiyang Shao*, Lixiang Wang*

Angew. Chem. Int. Ed. 2025, 63, e202415607

5. Multi-Resonance Emitters with Room-Temperature Phosphorescence in Amorphous State and Excited by Visible Light

Baoyun Du, Yuliang Wu, Xingdong Wang, Hongkun Tian, Shiyang Shao,* and Lixiang Wang*

Chem. Sci., 2024, 15, 19432

6. 10-Dibenzothiophenyl-9,9-diphenylacridanebased multiple resonance emitters for highefficiency narrowband green OLEDs with CIE y > 0.7 at high doping concentrations†

Rui Zhong, Mengyu Wang, Xingdong Wang, Shumeng Wang, Shiyang Shao* and Lixiang Wang*

Chem. Sci., 2024, 15, 13290

7. Xingdong Wang, Jun Hu, Jianhong Lv, Qingqing Yang, Hongkun Tian, Shiyang Shao,* Lixiang Wang,* Xiabin Jing, and Fosong Wang. π-Stacked Donor-Acceptor Dendrimers for Highly Efficient White Electroluminescence.

Angew. Chem. Int. Ed. 2021, 60, 16585–16593

8. Jun Hu, Yinuo Wang, Qiang Li, Shiyang Shao,* Lixiang Wang,* Xiabin Jing and Fosong Wang. Hyperfluorescent polymers enabled by through-space charge transfer polystyrene sensitizers for high-efficiency and full-color electroluminescence.

Chem. Sci., 2021, 12, 13083

9. Qiang Li, Jun Hu, Jianhong Lv, Xingdong Wang, Shiyang Shao,* Lixiang Wang,* Xiabin Jing, and Fosong Wang. Through-Space Charge Transfer Polynorbornenes with Fixed and Controllable Spatial Alignment of Donor and Acceptor for High-Efficiency Blue Thermally Activated Delayed Fluorescence.

Angew. Chem. Int. Ed. 2020, 59, 20174

10.Jun Hu, Qiang Li, Xingdong Wang, Shiyang Shao,* Lixiang Wang,* Xiabin Jing, and Fosong Wang. Developing Through-Space Charge Transfer Polymers as a General Approach to Realize Full-Color and White Emission with Thermally Activated Delayed Fluorescence.

Angew. Chem. Int. Ed. 2019, 58, 8405 –8409

11.Xingdong Wang, Shumeng Wang, Jianhong Lv, Shiyang Shao,* Lixiang Wang,* Xiabin Jing, and Fosong Wang. Through-space charge transfer hexaarylbenzene dendrimers with thermally activated delayed fluorescence and aggregation-induced emission for efficient solution-processed OLEDs.

Chem. Sci., 2019, 10, 2915−2923

12.Shiyang Shao, Shumeng Wang, Xiushang Xu, Yun Yang, Jianhong Lv, Junqiao Ding,* Lixiang Wang,* Xiabin Jing and Fosong Wang. Realization of high-power-efficiency white electroluminescence from a single polymer by energy-level engineering.

Chem. Sci., 2018, 9, 8656–8664

13.Shiyang Shao, Jun Hu, Xingdong Wang, Lixiang Wang,* Xiabin Jing, Fosong Wang. Blue Thermally Activated Delayed Fluorescence Polymers with Nonconjugated Backbone and Through-Space Charge Transfer Effect.

J. Am. Chem. Soc. 2017, 139, 17739−17742

14.Shiyang Shao; Junqiao Ding*; Lixiang Wang*; Xiabin Jing; Fosong Wang. White Electroluminescence from All-Phosphorescent Single Polymers on a Fluorinated Poly(arylene ether phosphine oxide) Backbone Simultaneously Grafted with Blue and Yellow Phosphors.

J. Am. Chem. Soc. 2012, 134 (50), 20290.

15. Shiyang Shao; Junqiao Ding*; Lixiang Wang*; Xiabin Jing; Fosong Wang. Highly Efficient Blue Electrophosphorescent Polymers with Fluorinated Poly(arylene ether phosphine oxide) as Backbone.

J. Am. Chem. Soc. 2012, 134 (37), 15189.

16. Shiyang Shao; Junqiao Ding*; Tengling Ye; Zhiyuan Xie; Lixiang Wang*; Xiabin Jing; Fosong Wang. A Novel, Bipolar Polymeric Host for Highly Efficient Blue Electrophosphorescence: a Non-Conjugated Poly(aryl ether) Containing Triphenylphosphine Oxide Units in the Electron-Transporting Main Chain and Carbazole Units in Hole-Transporting Side Chains.

Adv. Mater. 2011, 23 (31), 3570.


研究方向简介:

有机光电材料,高分子光电材料,力刺激响应光功能材料


光电材料是指用于光电子技术的,具有光子和电子的产生、转换和传输特性的材料,是新一代信息技术的基石。有机/高分子光电材料是一类具有光电活性的有机/高分子化合物, 广泛应用于有机发光二极管(oled)、有机晶体管(ofet)、有机太阳能电池(opv)、新能源器件等领域,具有两方面的独特优势而被认为是未来科技的重要物质基础:(一)有机高分子光电材料柔韧性及成膜性好,功能和结构易于改性,能够用于制备下一代柔性和可拉伸光电器件;(二)有机高分子光电材料加工过程相对简单,可低温操作,器件制作成本较低,具有大面积制造、适用柔性衬底、环境友好、轻便易携等优点,备受学术界和工业界的青睐,发展前景广阔。


非常欢迎有志投身该领域的同学们加入课题组,在一个蓬勃发展、前沿且实用的领域一起搞研究/论文/工作/大厂,尝试多元化的发展通道。