薛斌(副教授)

发布者:韩巍发布时间:2024-02-23浏览次数:7957


一、基本情况

薛斌,男,理学博士,副教授,硕士研究生导师,食品学院化学系教师,浙江大学化学系化学专业博士复旦大学化学系博士后,美国约翰斯·霍普金斯大学化学与生物分子工程系访问学者,主要研究方向为食品质量与安全控制(重金属离子和残留药物检测、致病微生物杀灭等)


二、联系方式

电子信箱:bxue@shou.edu.cn


三、开设课程

课程名称

学时数

授课对象

基础化学A

64

本科生

基础化学B

48

本科生

基础化学实验

32

本科生

普通化学

48

本科生

化学与健康

16

本科生


人才培养

培养硕士生(含留学生27,指导本科生毕业论文、科创和社会实践100余人


、代表性科学研究论文

33. Zhang J, Sun T, Wang J, Xu A J, Xue B*. Cyano-determined mercury (II) ion selective fluorescence assay over polymeric carbon nitride, Spectrochimica Acta Part A: Mol. Biomol. Spectrosc., 2025, 325, 125129.

32. Ma M Y, ChenM Y, Sun T, Xue B*. Reliable determination of polymeric carbon nitride wettability: A standardized sessile drop method for pressed-tablet samples, Appl. Surface Sci., 2025, 679, 161206.

31. Wang Y Y, Sun T, Wang J, Xu A J, Xue B*. High nitrogen-doped carbon nanosheets for electrochemical sensing of malachite green, Microchem. J., 2024,197, 109830.

30. Zhang M, Sun T, Wang X Y*, Xue B*. Photo-crosslinked composite hydrogels with silver-deposited polymeric carbon nitride for boosting antibacterial activity, Colloids Surfaces A: Physicochem. Eng. Aspects, 2024, 680, 132668.

29. Liu Q, Sun T, Di L*, Xue B*. Amorphous molybdenum sulfide / polymeric carbon nitride composite with multiple interfaces for boosting photoelectrochemical water splitting performance, Appl. Surface Sci., 2023, 640, 158404.

28. Wang Y X, Li B Y, Xue B†, Libretto N, Xie Z H, Shen H, Wang C H, Raciti D, Marinkovic N, Zong H, Xie W, Li Z Y, Zhou G Y, Vitek J, Chen J G G, Miller J, Wang G F*, Wang C*. CO electroreduction on single-atom copper, Sci. Adv.2023, 9, eade3557.

27. Zhao H M, Sun T, Wang J, Xu A J, Jia M L, Xue B*, Phosphorus-doped oligomeric carbon nitride for selective fluorescence detection of mercury (II) ions, Dyes Pigments, 2022, 207, 110739.

26. Ding S, Sun T, Di L*, Xue B*, Nanostructure engineering of polymeric carbon nitride with boosted photocatalytic antibacterial activity, Appl. Organomet. Chem., 2022, 36, e6783.

25. Wang Q, Sun T, Xue B*, Nickel nanoparticles encapsulated by nitrogen-doped bamboo-shaped carbon nanotubes with a high-level doping: A boosting electrocatalyst for alkaline hydrogen evolution, Appl. Surface Sci., 2021, 564, 150439.

24. Zhao H M, Bao B, Sun T, Xue B*, Depolymerized phosphorus-doped polymeric carbon nitride: A mercury (II) ion fluorescent probe, Ceramics International, 2021, 47, 24115-24120.

23.Ding S, Li Y, Sun T, Xue B*, Metal-free polymeric carbon nitride photocatalytic bactericide: precursor-controlled killing activity of E. coli, Environ. Adv., 2021, 4, 100067.

22. Wang KL, Zhao H MLi Y, Sun T, Xue B*. Highly dispersed molybdenum-embedded polymeric carbon nitride withenhanced photocatalytic activity for degradation of dyes and antibiotics. Appl. Surface Sci.,2020, 528,146931.

21. Wang KL, Li Y, Sun T, Xue B*. Cyano and terminal amino group co-modified polymeric carbon nitridewith boosted photocatalytic activity for degradation of dyes andantibiotics. Mater. Lett.,2020, 277,128315.

20. KL Wang, Y Li, T Sun, F Mao, JK Wu, B Xue*.Fabrication of Na, Cl co-doped graphitic carbon nitride with enhanced photocatalytic activity for degradation of dyes and antibiotics. J. Mater. Sci. Mater. Electron.,2019,30, 4446-4454.

19. KL Wang, Y Li, T Sun, F Mao, JK Wu, B Xue*. Ultrafine silver nanoparticles deposited on sodium-doped graphitic carbonnitride towards enhanced photocatalytic degradation of dyes and antibioticsunder visible light irradiation. Appl. Surface Sci.,2019, 476, 741-748.

18. Xue B*, Jiang H Y, Sun T, Mao F, Wu J K.One-step synthesis of MoS2/g-C3N4 nanocomposites with highly enhanced photocatalytic activity. Mater. Lett., 2018, 228, 475-478.

17. Xue B, Li T, Wang B, Ji L, YangD, Dong A*. Self-assembled Fe3O4 nanoparticle-doped TiO2nanorod superparticles with highly enhancedlithium storage properties. Sustainable Energy Fuels, 2018, 2, 616-625.

16. Xue B*, Jiang H Y, Sun T, Mao F, Ma C C, Wu J K.Microwave-assisted one-step rapid synthesis of ternary Ag/Ag2S/g-C3N4 heterojunction photocatalysts for improved visible-light inducedphotodegradation of organic pollutant. J. Photochem. Photobio. A,2018, 353, 557-563.

15. Li T, Xue B, Wang B, Guo G, Han D, Yan Y, Dong A*. Tubular Monolayer Superlattices of Hollow Mn3O4 Nanocrystals and Their Oxygen Reduction Activity. J. Am. Chem. Soc., 2017, 139, 12133-12136.

14. Xue B*, Jiang H Y, Sun T, Mao F. ZnS@g-C3N4 Composite Photocatalysts: In Situ Synthesis and Enhanced Visible-Light Photocatalytic Activity. Catal. Lett.,2016, 146, 2185-2192.

13. Sun T, Jiang H Y, Ma C C, Mao F, Xue B*. Ag/g-C3N4 photocatalysts: Microwave-assisted synthesis and enhanced visible-light photocatalytic activity.Catal. Commun., 2016, 79, 45-48.

12. Xue B, Xu F, Wang B, Dong A*. Shape-controlled synthesis of β-In2S3 nanocrystals and their lithium storage properties. CrystEngComm, 2016, 18, 250-256.

11. Xu F, Xue B, Wang F, Dong A*. Ternary Alloyed ZnSexTe1-x Nanowires: Solution-Phase Synthesis andBand Gap Bowing. Chem. Mater.,2015, 27, 1140-1146.

10. Xue B*, Sun T, Wu J K, Mao F, Yang W. AgI/TiO2 nanocomposites: Ultrasound-assisted preparation, visible-light induced photocatalytic degradation of methyl orange and antibacterial activity. Ultrason. Sonochem., 2015, 22, 1-6.

9. Xue B*, Sun T, Mao F, Xie J. Gelatin-assisted green synthesis of bismuth sulfide nanorods under microwave irradiation. Mater. Lett.,2014, 122, 106-109.

8. Xue B*, Sun T, Wu J K. Simple fabrication of anatase-brookite mixed-phase TiO2 nanoparticles with visible-light responsive photocatalytic activity. Asian J. Chem., 2012, 24, 2073-2076.

7. Xue B*, Sun T, Mao F, Sun L C, Yang W, Xu Z D, Zhang X. Facile synthesis of mesoporous core-shell TiO2 nanostructures from TiCl3. Mater. Res. Bull., 2011, 46, 1524-1529.

6. Xue B*, Liu R, Xu Z D*. β-Cyclodextrin-assisted preparation of hierarchical walnut-like CeOHCO3 and CeO2 mesocrystals. Mater. Sci. & Eng. B, 2011, 176, 210-216.

5. Xue B, Liu R, Xu Z D*. Facile and large-scale synthesis of hollow TiO2 nanostructures from TiCl3 solution. Mater. Lett., 2009, 63, 2377-2380.

4. Xue B, Liu R, Huang W Z, Zheng Y F, Xu Z D*. Growth and characterization of bamboo-like multiwalled carbon nanotubes over Cu/Al2O3 catalyst. J. Mater. Sci., 2009, 44, 4040-4046.

3. 薛斌,刘润,徐铸德*,孙新形. 分等级球状TiO2纳米结构的合成、表征和光催化活性. 无机化学学报,2009251):1-6.

2. Xue B, Liu R, Xu Z D*, Zheng Y F. Microwave fabrication and magnetic property of hierarchical spherical α-Fe2O3 nanostructures. Chem. Lett., 2008, 37, 1058-1059.

1. 薛斌,李兰冬,章福祥*,关乃佳. 高负载量丝光沸石/堇青石整体式催化剂的原位合成和表征. 无机化学学报,20062212):2197-2201.


、代表性教学研究论文

12.薛斌*.大学化学课程思政中的当代中国元素——以国家科技奖励为例.大学化学20223710):2207003.

11.薛斌*.组建近化学类专业本科生综合学习团队的探索.大学化学2020356):94-97.

10. 薛斌*. 索尔维的科学公益事业.化学教育20194024):91-94.

9. 薛斌*. 大学化学多维度教学模式探索.大学化学2019347):1-5.

8. 薛斌*. 大学化学课程德育的设计与实践.大学化学20183312):28-32.

7. 薛斌*. 近化学类专业无机及分析化学教材建设研究.中国大学教学2016,(11):88-92.

6. 薛斌*.基于美国《化学教育》2014年度论文分析国际高等化学教育研究现状.化学教育2016374):72-75.

5. 薛斌, 周冬香*.引入学科前沿知识激发化学学习兴趣. 化学教育2015362424-27.

4. 薛斌*. 大学化学青年教师在多媒体教学中存在的问题和对策. 大学化学2014293):13-16.

3. 薛斌, 熊振海, 周冬香*. 应用多媒体互动系统促进基础化学实验教学的探索.化学教育20143512):52-56.

2. 薛斌, 周冬香, 熊振海*. 采用课程目标达成度开展基础化学教学评价的尝试. 科技创新导报201411113-114.

1. 薛斌, 宋益善, 李燕,熊振海*. 海洋类高校化学实验课程建设与改革的思考——以上海海洋大学为例. 中国科教创新导刊2013,(28):33-35.


、参编专著和教材

4. Xue B*, "Synthesis of graphitic carbon nitride—Nanostructured photocatalyst", in Nano-Materials as Photocatalysts for Degradation of Environmental Pollutants: Challenges and Possibilities, Elsevier, 2019, 279-304.

3. Xue B*, "Ultrasonic Synthesis of Nanomaterials for Photocatalytic Removal of Wastewater", in Handbook of Ultrasonics and Sonochemistry, Springer, 2016, 587-622.

2. 李燕. 生物化学实验. 北京:高等教育出版社,2015.9

1. 周冬香. 实验化学. 北京:中国农业出版社,2012.10


、授权专利

3. 薛斌. 一种具有核壳结构的二氧化钛纳米材料的制备方法(发明专利). 专利号:ZL 201010201801.6

2. 薛斌,徐铸德,刘润. 一种中空二氧化钛纳米球的制备方法(发明专利).专利号:ZL 200910098714.X

1. 薛斌,徐铸德,刘润. 一种高比例竹节状碳纳米管的制备方法(发明专利).
专利号:ZL 200910098511.0


学术活动

1. 中国化学会高级会员、中国化工学会会员、中国高等教育学会会员、中国科普作家协会会员、上海市科普作家协会会员、上海市海洋湖沼学会会员。

2. 中国化学会《化学通讯》编委、《无机盐工业》青年编委。

3. 中国化工学会无机酸碱盐专业委员会智库专家、临港新片区海洋生物医药科技创新型平台特聘专家。

4. 科普中国”专家、中国科学技术出版社有限公司科技/科普专家、中国科学技术馆科普讲师团团员、上海市浦东新区科学技术普及志愿者协会优秀志愿者。

5.国际学术刊物审稿人:ACS Applied Energy Materials, ACS Applied Nano Materials, ACS Catalysis, ACS Materials Au, ACS Sustainable Chemistry & Engineering, ACS Sustainable Resource Management, Advanced Science, Applied Catalysis B: Environmental, Catalysis Letters, Catalysis Science & Technology, Chemical Engineering Journal,Chemistry Letters, ChemPlusChem, CrystEngComm, Energy Advances, Environmental Science: Water Research & Technology,Food Chemistry,Food and Function, Nano Research EnergyIndustrial & Engineering Chemistry Research,Journal of Hazardous Materials, Journal of Materials Chemistry A, Langmuir, Materials Chemistry Frontiers, RSC Applied InterfacesSCIENCE CHINA Technological Sciences, Separation Science and Technology, Sustainable Energy & Fuels.


、荣誉

27.《无机盐工业》2024年度优秀审稿人

26. 2024浦东科学技术普及志愿者协会优秀志愿者

25. Outstanding Reviewer for Catalysis Science & Technology in 2022

24. 2021年校级一流本科课程《基础化学》(课程负责人)

23. 上海海洋大学2020春季学期“好课堂”

22. 上海海洋大学研究生优秀学位论文指导教师 2021

21. 上海海洋大学2020秋季学期“好课堂”

20. 第十四届上海大学生化学实验竞赛优秀指导教师 2020

19. 上海海洋大学2019年教学成果二等奖(第一完成人)

18. 上海海洋大学2017春季学期“好课堂”

17. 上海海洋大学2017秋季学期“好课堂”

16. 2016~2017学年上海海洋大学育才奖

15. 上海海洋大学2016春季学期“好课堂”

14. 2015~2016年度本科毕业设计(论文)优秀指导教师

13. 上海海洋大学食品学院2016年度优秀课程导师

12. 上海海洋大学汉宝奖教金 2016

11. 上海海洋大学2016秋季学期“好课堂”

10. 上海海洋大学2015春季学期“好课堂”

9. 上海海洋大学2015秋季学期“好课堂

8. 2015年度上海高校市级精品课程《基础化学》第二完成人

7. 上海海洋大学第二批“三海”人才计划 海燕计划入选者 2014

6. 2014年度食品学院师生联系优秀指导教师

5. 上海海洋大学2013年度优秀实验、实践项目《硫酸亚铁铵的制备》 第一完成人

4. 食品学院科创指导先进个人 2012

3. 食品学院“最High课堂”称号 2012

2. 爱普奖教金 二等奖 2011

1. 上海海洋大学青年教师课堂教学艺术比赛 优胜奖 2011