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材料与能源学院 School of Materials and Energy
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余明光

2018年11月07日

姓名余明光

学历学位博士

职称副教授

电子邮箱mesyumg@fosu.edu.cn

研究方向:功能高分子材料聚合物微球RAFT活性聚合光固化3D打印有机无机杂化材料及油墨涂料胶黏剂等

 

科研项目

1. 刺激响应型聚集诱导发光纸芯片的构筑与调控机制, 国家自然科学基金

2. 光触发巯基点击反应UV-LED涂料的研究及应用,产学研合作项目

3. 牙科用光固化复合树脂研究,产学研合作项目

4. 氮化硼表面功能改性及其导热性能研究,产学研合作项目

5. 绿色环保印刷油墨及水性光油的开发,产学研合作项目

论文成果

1. Facile fabrication of superhydrophobic and antibacterial dual-functional cotton fabrics for oil-water separation, Journal of Materials Science, 2024(通讯作者).

2. Facile fabrication of pufferfish-like structured ZIF-8 on cellulose fibers with superhydrophobicity and anti-bacterial adhesion properties, Journal of Materials Science, 2024(通讯作者).

3. Straightforward fabrication of robust and healable superhydrophobic steel mesh based on polydimethylsiloxane, Journal of Applied Polymer Science, 2022(通讯作者).

4. Facile fabrication of luminescent rare-earth-doped PS/AA composites for anti-counterfeiting applications, Journal of Materials Science, 2021(通讯作者).

5. Facile Fabrication of Superhydrophobic and Photoluminescent TEMPO-Oxidized Cellulose-Based Paper for Anticounterfeiting Application, ACS Sustainable Chemistry Engineering, 2020(通讯作者).

6. Superhydrophobic paper fabricated via nanostructured titanium dioxide-functionalized wood cellulose fibers, Journal of Materials Science, 2020(通讯作者).

7. Synthesis of AIE polyethylene glycol-block-polypeptide bioconjugates and cell uptake assessments of their self-assembled nanoparticles, Dyes and Pigments, 2019(第一作者).

8. Durable and Superhydrophobic Cotton for Efficient Oil/Water Separation, Polymers, 2019(第一作者).

9. Biomimetic fabrication of superhydrophobic loofah sponge: robust for highly efficient oil–water separation in harsh environments, RSC Advances, 2018(第一作者).

10. Facile fabrication of fluorine-free, transparent and self-cleaning superhydrophobic coatings based on biopolymer castor oil, Materials Letters 2018(通讯作者).

11. Facile fabrication of raspberry-like composite microspheres for the construction of superhydrophobic films and applications in highly efficient oil–water separation, RSC Advances, 2017(第一作者).

12. Optical Microfiber with a Gold Nanorods–Black Phosphorous Nanointerface: An Ultrasensitive Biosensor and Nanotherapy Platform, Analytical Chemistry, 2022(参与作者).

13. Aqueous construction of raspberry-like ZIF-8 hierarchical structures with enhanced superhydrophobic performance, Nanoscale, 2022(参与作者).

14. One-step preparation of photoclick method for embolic microsphere synthesis and assessment for transcatheter arterial embolization, European Journal of Pharmaceutics and Biopharmaceutics, 2021(参与作者).

15. Fabrication of a novel nitrogen-containing porous carbon adsorbent for protein-bound uremic toxins removal, Materials Science & Engineering C, 2021(参与作者).

16. Use of floating acylphosphine oxide-based photoinitiators to reduce surface oxygen inhibition of UV-LED photopolymerization, Progress in Organic Coating, 2020(参与作者).

17. Photoluminescent Composites of Lanthanide-Based Nanocrystal-Functionalized Cellulose Fibers for Anticounterfeiting Applications, ACS Sustainable Chemistry Engineering, 2018(参与作者).

 

专利授权

1. 一种超双疏含氟聚合物纳米材料的绿色制备方法, ZL 201710238055.X, 发明专利第一发明人

2. 一种超疏水/超亲油丝瓜络纤维的制备方法及其应用,ZL 201710059642.2, 发明专利第一发明人

3. 一种树莓状结构的有机/无机复合微球的制备方法及其应用,ZL 201610966594.0, 发明专利第一发明人

4. 一种耐摩擦超疏水聚氨酯/纳米二氧化硅复合涂层的制备方法,ZL 201611068335.2,发明专利第一发明人

5. 一种表面不含稳定剂的含氟微球的制备方法与应用,ZL 201610968438.8,发明专利第一发明人

6. 一种多功能性含氟聚合物微球的快速制备方法,ZL 201610962198.0,发明专利第一发明人

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