譚海軍,湖南漣源人,教授/博士,碩士生導師。
(navytan@glut.edu.cn,18577313212,太阳成tyc9728雁山校區教9樓09602B。)
一、教育、工作經曆
2014.02-今 太阳成tyc9728,化學與生物工程學院,化學化工教研室 ;
2022.09-2023.02 廣西科學技術廳社會發展與科技安全處,創新辦(挂職);
2022.03-2022.08 華東理工大學化學與分子工程學院,訪問學者;
(合作導師:朱為宏(院士)、吳永真(傑青))
2018.01-2018.06 中鋁廣西有色稀土開發有限公司,科技部,主任助理(挂職);
2009.09-2013.12 中南大學化學 化工學院,應用化學, 博士;
2006.09-2009.06 中南大學化學 化工學院,有機化學, 碩士;
2002.09-2006.06 湖南農業大學 理 學 院,應用化學, 本科。
二、教學工作
主講“有機化學、大學/無機化學、大學/無機化學實驗、有機化學實驗”等本科生課程,以及“工程倫理、化學文獻及檢索”等碩士研究生課程。主持完成廣西教育廳研究生教改項目1項,校級教改項目3項,發表教改論文5篇;出版十三五規劃教材1部《有機化學實驗與安全》。
太阳成tyc9728“優秀碩士生導師(2024)”;
太阳成tyc9728“學生課外科技創新園丁先進個人”(2020、2024);
太阳成tyc9728“創新創業導師”(2024);
指導碩士研究生獲太阳成tyc9728優秀碩士論文4人次:(何敬文2020、黃舒澄2023、史松青2023、李志巧2024);
指導學生獲中國國際“互聯網+”大學生創新創業大賽廣西區“銀獎”(2020),“銅獎”(2024);挑戰杯“銅獎”(2024)。
三、科研工作
研究領域:
1.有機光電子材料與器件(鈣钛礦、敏化電池、熒光檢測);
2.多孔材料制備及其在水土污染處理中的應用基礎研究;
3.工業與農林廢棄物高值化綜合利用技術;
4.廣西典型岩溶石漠化地區生态修複技術。
科研項目(主持)
國家自然科學基金地區基金(21663010):新型氮雜蒽類染料的制備及其光伏與光解水性能研究及構效關系;
2. 廣西自然科學基金重點項目(2024GXNSFDA010030):基于雙面鉑電極的高效疊層太陽能電池策略與機制研究;
3. 廣西自然科學基金青年基金項目(2015GXNSFBA139029):D-π-A型吩噁嗪類染料分子的設計合成與光伏性能研究;
4. 廣西重點研發項目課題(桂科AB21220007):钛白副産硫酸亞鐵制備電池級磷酸鐵及廢水零排放關鍵技術與工程示範;
5. 廣西重點研發項目課題(桂科AB24010051):漓江流域岩溶石漠化區土地提質增效關鍵技術研究與示範;
6. 中央引導地方科技發展專項課題(桂科ZY24212037):珍珠型“雨”石墨高強高韌球墨鑄鐵關鍵技術研究及産業化;
7. 廣西電磁化學功能物質重點實驗室主任基金項目,2018,2022,2024;
8. 專利技術轉讓項目(H20240186,50萬):一種吩噁嗪基鋅卟啉染料及其制備方法等三項專利技術轉讓。
科研論文(近5年)
20. Ruihan Tang, Na Qiu, Peipei Zhang*, Haijun Tan,* et al. Bifunctional porous organic polymer: Selective detecting of Fe (III) ion andreversible capturing iodine.Journal of Industrial and Engineering Chemistry,2025, https://doi.org/10.1016/j.jiec.
19. Xiaoran Yan, Mengdan Yang, Yongzhen Wu*, Haijun Tan,* et al Optimizing buried interface quality in inverted perovskite solar cells by modulating the spatial orientation of polymer hole transport materials using rigid copolymer units, Dyes and Pigments 236 (2025) 112676.
18. Haijun Tan*, Yi Yang, Fuxin Zhong, Peipei Zhang*,et al. Novel N-rich porous organic polymers for reversible iodine capture and selective detecting of Fe (III), Microporous and Mesoporous Materials, 385 (2025) 113485.
17.Tianxiang Zheng, Shucheng Huang, Ningbo Qin*, Haijun Tan*, et al. Molecular Engineering Strategies of Spectral Matching and Structure Optimization for Efficient Metal-Free Organic Dyes in Dye-Sensitized Solar Cells: A Theoretical Study, J. Phys. Chem. A, 2024, 128, 5861−5872.
16. Xiaoran Yan, Yin Liu, Wenjun Wu*, Haijun Tan,* et al. Novel Zinc-porphyrin dyes for dye-sensitized solar cells that enables light capture in the near-ultraviolet and visible range, Synthetic Metals,307(2024)117653.
15. Zhiqiao Li, YinLiu, Yongzhen Wu*, Haijun Tan*, et al. A Low-Cost and Non-Noble Metal Catalyst Synthesis of Phenothiazine-Based Polymer HTM for Efficient and Stable Perovskite Solar Cells, ACS Applied. Energy Materials, 2024, doi.org/10. 1021/acsaem.4c00348.
14. Shucheng Huang, Haijun Tan*, and Yongshu Xie*, et al. Recent advances in the approaches for improving the photovoltaic performance of porphyrin-based DSSCs, Chem Comm, 2024, DOI: 10.1039/d3cc06299f.
13. Na Qiu , Fuxin Zhong*, Haijun Tan* , et al. Synthesis of phenothiazine-based porous organic polymer and its application to iodine adsorption, Microporous and Mesoporous Materials, 363 (2024) 112833.
12.Yin Liu, Zhiqiao Li, Wenjun Wu*, Haijun Tan*, et al. The performance of organic dyes in dye-sensitized solar cells: From theoretical calculation to experiment, Dyes and Pigments,222 (2024) 111846.
11. Songqing Shi, Shucheng Huang, Wenjun Wu*, Haijun Tan*, et al. The application of a novel D-A-π-A phenothiazine-based organic dye with N719 in efficient parallel tandem dye-sensitized solar cells, Synthetic Metals. 295 (2023) 117344.
10. Hongyu Wang, Na Qiu, Haijun Tan*, et al. Novel Carbazole-Based Porous Organic Polymer for Efficient Iodine Capture and Rhodamine B Adsorption. ACS Appl. Mater. Interfaces,2023, 15, 14846−14853.
9. Shu-Hua Zhang*, Zhen-Feng Wang, Haijun Tan*, et al. Novel zinc(II) curcumin molecular probes bearing berberine and jatrorrhizine derivatives as potential mitochondria-targeting anti-neoplastic drugs. European Journal of Medicinal Chemistry, 243 (2022) 114736.
8. Hongyu Wang, Fuxin Zhong*, Haijun Tan*. Phenothiazine-based porous organic polymers with high sensitivity and selective fluorescence response to mercury ions. Journal of Solid State Chemistry,315 (2022) 123522.
7. Shucheng Huang, Songqing Shi, Wenjun Wu*, Haijun Tan*, et al. A strategy for efficient parallel tandem dye-sensitized solar cells based on doubled-sided Pt electrode with a novel phenothiazine-based dye and N719. Dyes and Pigments 206 (2022) 110615.
6.Yujie Zhang, Haijun Tan*, Shu-Hua Zhang*, et al. Studies on the removal of phosphate in water through adsorption using a novel Zn-MOF and its derived materials. Arabian Journal of Chemistry (2022) 15, 103955.
5. Shucheng Huang, Wu Shao, Wenjun Wu*, Haijun Tan*, et al. The effect of conjugated groups for favourable molecular planarity and efficient suppression of charge recombination simultaneously of phenothiazine-based organic dyes for dye-sensitized solar cells, Synthetic Metals,290 (2022) 117137.
4. Shengzhong Li, Shuangyu Zhang, Haijun Tan*, et al, A Novel Porphyrin Dye with Phenoxazine as Donor Unit for Efficient Dye-Sensitized Solar Cells, Dyes and Pigments, 2021, 190 :109308.
3. Shengzhong Li, Shu Mei, Wenjun Wu*, Haijun Tan*, et al, A Molecular Engineering Strategy of Phenylamine-Based Zinc-Porphyrin Dyes for Dye-Sensitized Solar Cells: Synthesis,Characteristics, and Structure−Performance Relationships, ACS Applied. Energy Materials, 2021, 4, 9267−9275.
2. Shu Mei,Wu Shao, Shucheng Huang, Xiangfei Kong, Zhenguang Hu, Miao Yang, Wenjun Wu*, and Haijun Tan*. Novel D-A-π-A organic dyes with phenoxazine as donor unit for dye-sensitized solar cells: the effect of ethynyl group on the performance. Energy &Fuels, 2021, 35, 19748−19755.
1. Shengzhong Li, Jingwen He, Yongzhen Wu*, Haijun Tan*, et al, Comparative Studies on the Structure-Performance Relationships of Phenothiazine-Based Organic Dyes for Dye-sensitized Solar Cells, ACS Omega, 2021, 6, 6817−6823.
學術報告:
1. 何敬文; 黎盛中; 莊秀梅; 陳碩; 譚海軍; 一種寬光譜的D-A-π-A型吩噻嗪基染料應用于染料敏化太陽能電池中的對比分析, 2018年第四屆全國新型太陽能電池前沿技術與發展研讨會, 中國-南京, 2018年11月23-25日.
2. 黎盛中; 梅姝; 譚海軍; Comparative Studies of Phenothiazine-Based D-π-A and D-A-π-A Organic Dyes for Dye-sensitized Solar Cells, 2020年第三屆光電材料與器件發展研讨會, 長沙, 2020年12月12 -13日.
3. 梅姝; 黃舒澄; 譚海軍; 鋅卟啉光電材料的分子工程與器件應用,第一屆廣西有機化學會議論壇,中國,桂林,2021年7月16- 18日.
4. 黃舒澄; 黎盛中; 武文俊; 譚海軍; 苯胺類卟啉染料的分子工程策略與構效關系, 首屆光解水、染敏、碳基鈣钛礦太陽能電池專題研讨會, 中國,上海,2021年10月16- 17日.
5. 譚海軍;高效染料敏化太陽能電池策略:分子工程和疊層器件,第二屆全國太陽能電池材料與器件大會,包頭,2022年7月28-30日.
6. 李志巧;譚海軍;吩噻嗪基聚合物空穴傳輸材料的制備及其在鈣钛礦太陽能電池中的應用,第三屆太陽能電池材料器件大會,中國,桂林,2023年4月28-29日.
7. 鄢笑然;譚海軍;聚合物空穴傳輸材料的分子工程與界面調控,2024太陽能科學與應用技術國際會議,昆明,2024年8月1-3日.
8. 羅佳;譚海軍;三嗪類多孔有機聚合物的創制及其在環境污染物處理中的應用,2024生态環境科技創新技術交流大會,博鳌,2024年11月39-30日.
授權國家發明專利
1. 譚海軍;何敬文;黎盛中; 一種吩噻嗪基D-A-π-A型有機染料的制備方法, ZL 201810875776.6.
2.黎盛中,梅姝,譚海軍;一種吩噁嗪基鋅卟啉染料及其制備方法, ZL202011504309.6.
3.史松青;黎盛中;譚海軍;一種三吩噻嗪基鋅卟啉染料及其制備方法,ZL 202011498077.8.
4.王鴻钰;黎盛中;譚海軍;一種雙吩噻嗪基鋅卟啉染料及其制備方法,ZL202011498049.6.
招收化學、化工、材料、資源環境等專業碩士研究生,尤其是具有量子化學計算、人工智能等方向特長的研究生、本科生加入課題組!