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[专家学者] 哈尔滨理工大学化学与环境工程学院俞志刚

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发表于 2018-8-23 15:31:04 | 只看该作者 回帖奖励 |倒序浏览 |阅读模式
俞志刚    教授,硕士生导师;
    电话:14745160350
    电子信箱:yzgyh@126.com
学习经历:
    1987-1990年,长春师范大学(化学教育)
    2001-2004年,哈尔滨师范大学理学硕士(无机化学)
    2005-2009年,哈尔滨工业大学工学博士(化学工程与技术)
    2012-2013年,美国University of Nebraska-Lincoln大学访问学者(分析化学)
    2015-2016年,美国University of Nebraska-Lincoln大学访问学者(分析化学)
主要社会兼职 :
    中国化学会会员;黑龙江省分析测试学会理事
主要研究方向:
    1. DNA纳米生物传感方面的研究工作,主要包括:纳米材料DNA电化学修饰,电化学适体传感器,电化学DNA生物传感器,生物大分子间相互作用。
    2. 色谱-质谱联用技术在环境监测、食品安全和药物检测中的应用;
    3. 有机金属配合物的设计、合成与性质(生物活性、光致发光和与生物大分子间相互作用)研究。
科研获奖:
    1.俞志刚(1/1), 功能化基因点突变检测的电化学DNA生物传感器,哈尔滨市自然科学技术学术成果奖二等奖,2014
    2. 俞志刚(1/1), 功能化单碱基错配识别的电化学DNA生物传感器,哈尔滨市自然科学技术学术成果奖二等奖,2013
    3. 俞志刚(4/5), 多酸功能材料的制备及其电化学传感器的构建,黑龙江省科学技术奖二等奖,2015
    4. 俞志刚(3/4), 多酸功能材料的制备及其电化学传感器的构建,黑龙江省高校科学技术奖二等奖,2015
科研项目:
    1. 色谱-质谱联用技术在哈尔滨饮水源动态监测中的应用(1/9),5万,(No. E2007-35),2008.01-2010.12,黑龙江省自然科学基金资助,主持人,已结题。
    2. 信号增益型电化学DNA生物传感器(1/8),5万,(No. LC2013C04),2014.01-2017.12,黑龙江省留学归国基金资助,主持人,已结题。
    3. 新型吲哚席夫碱抗癌药物配合物的合成及与DNA相互作用(1/8),1.5万,(No. 12511084),2010.01-2012.12,黑龙江省教育厅项目资助,主持人,已结题。
    4. 新型稀土光频转换材料的合成、表征及其在农膜中的应用研究(1/9),2.5万,(2005AFQXJ07),2008.01-2010.12,哈尔滨市青年科学基金资助,主持人,已结题。
    5. LC-MS技术在农作物产品中农药残留检测中的应用(1/8),1.5万,(No. 11511082),2005.01-2007.12,黑龙江省教育厅基金资助,主持人,已结题。
    6. 有机废水发酵产氢强化系统的自絮凝产氢菌蛋白质组学研究(2/8),25万,(No. 51078120),2010.01-2013.12,国家自然科学基金资助,已结题。
    7. 囊包多酸的多孔轮烷/准轮烷晶态材料的设计合成与性能研究(4/9),25万,(No. 21101045),2013.01-2015.12,国家自然科学青年基金资助,已结题。
    8. 利用蛋白质组学策略解析产氢菌自絮凝机理(2/7),4万,(20092303120004),2011.01-2013.12,教育部博士点新教师基金资助,已结题。
    9. 天然沸石生物改性技术研究(2/7),7万,(2011RFXXG003),2011.01-2013.12,哈尔滨市优秀学科带头人基金资助,已结题。
    10. 基于蛋白质-代谢物调控网络的梅林青霉降解木质素的机制研究(2/9),63万,(No. 21776054),2018.01-2022.12,国家自然科学面上项目基金资助,在研。
    11. 基于多酸的无酶生物传感器的构建与应用研究(3/9),85万,(No. 21371041),2014.01-2017.12,国家自然科学面上项目基金资助,在研。
发表论文:
    1. Zhi-gang Yu, Rebecca Y. Lai* “A reagentless and reusable electrochemical aptamer-based sensor for rapid detection of ampicillin in complex samples” Talanta, 2018, 176: 619-624.
    2. Xiang Yu, Zhigang Yu*, Fengqin Li, et al. “Effect of structure on sensing performance of a target induced signaling probe shifting DNA-based (TISPS-DNA) sensor” Biosensors and Bioelectronics, 2017, 91: 817-823.
    3. Yan-mei Xu, Feng-qin Li, Zhi-gang Yu*, et al. “A dual-probe surface-co-immobilization-based electrochemical sensor for highly sensitive and tunable specific detection of a designated DNA” Sensors and Actuators B: Chemical, 2017, 239, 786-794.
    4. Feng-qin Li, Yanmei Xu, Zhi-gang Yu*, et al. “Effect of the duplex length on the sensing performance of a displacement-based electrochemical nucleic acid sensor with an adjustable point mutation discrimination function” Sensors and Actuators B: Chemical, 2016, 234: 648-657.
    5. Wei-ying Zheng, Yan-hui Chen, Xiao-ting Zhang, Zhi-gang Yu* “Analysis of volatiles in paeonia obovata flowers by HS-SPME-GC-MS” Chemistry of Natural Compounds, 2016, 52: 922-923.
    6. Fengqin Li, Yanmei Xu, Zhigang Yu*, et al. “A “signal on” protection-displacement-hybridization-based electrochemical hepatitis B virus gene sequence sensor with high sensitivity and peculiar adjustable specificity” Biosensors and Bioelectronics, 2016, 82: 212-216.
    7. Weiying Zheng, Fengqin Li, Zhigang Yu*, et al. “Performance assessment of solvent extraction coupled with gas chromatography-mass spectrometry for the analysis of volatile components from Syringa flowers” Analytical Methods, 2016, 8: 3155-3122.
    8. Fengqin Li, Zhigang Yu*, Yanmei Xu, et al. “Using the synergism strategy for highly sensitive and specific electrochemical sensing of Streptococcus pneumonia Lyt-1 gene sequence” Analytica Chimica Acta, 2015, 886: 175-181.
    9. Feng-qin Li, Zhi-gang Yu*, Xiang Yu, et al. “Using the synergism strategy of multi-redox-modified signaling probe, background suppression and large surface area electrode for highly sensitive and specific electrochemical sensing of specific DNA sequence” Sensors and Actuators B: Chemical, 2015, 220: 1-4.
    10. Fengqin Li, Zhi-gang Yu*, Haichao Qu, et al. “A highly sensitive and specific electrochemical sensing method for robust detection of Escherichia coli lac Z gene sequence” Biosensors and Bioelectronics, 2015, 68: 78-82.
    11. Zhi-gang Yu*, Anita J. Zaitouna, Rebecca Y. Lai* “Effect of redox label tether length and flexibility on sensor performance of displacement-based electrochemical DNA sensors” Analytica Chimica Acta, 2014, 812: 176-183.
    12. Zhi-gang Yu, Rebecca Y. Lai* “Effect of signaling probe conformation on sensor performance of a displacement-based electrochemical DNA sensor” Analytical Chemistry, 2013, 85: 3340-3346.
    13. Zhi-gang Yu, Rebecca Y. Lai* “A reagentless and reusable electrochemical DNA sensor based on target hybridization-induced stem-loop probe formation” Chemical Communications, 2012, 48: 10523-10525.
    14. Yu Zhi-gang, Liu Bo, Jiang Zhao-hua*, Zhang Gui-ling “Simultaneous determination of
herbicide mefenacet and its metabolites residues in river water by solid phase extraction and rapid resolution liquid chromatography-mass spectrometry with pre-column derivatization” Journal of Chromatography A, 2009, 1216(15): 3090-3097.
    15. Zhi-gang Yu*, Wei-Min Ding, Yan-Hui Chen, et al. “Oxidized multi-walled carbon nanotubes as SPE sorbent for determination of mefenacet and its degradation products residues in water samples by RRLC-UV-ESI-MS” Chromatographia, 2010, 72: 33-38.
    16. Zhi-gang Yu*, Zhi Qin, Hong-rui Ji, et al. “Application of SPE using multi-walled carbon nanotubes as adsorbent and rapid resolution LC-MS--MS for the simultaneous determination of 11 triazine herbicides residues in river water” Chromatographia, 2010, 72: 1073-1081.
    17. Yu Zhi-gang*, Ding Weimin, Ji Hongrui, et al.“Synthesis and
antibacterial activity of the Schiff base derived from
1-(p-Chlorophenyl)-3-phenyl-4-benzoyl-pyrazolone-5 and amino comp
-ounds and their transitional metallic copper complexes” Chinese Journal of Organic Chemistry, 2010, 30(9): 1358-1365.
    18. Yu Zhi-gang, Liu Bo, Jiang Zhao-hua* “Synthesis, characterization by spectra and identification by HPLC-MS of Schiff bases derived from 1-phenyl-3-methyl-4- naphthylaceto-4,5-dihydropyal-5-one (PMNAP) and 2-a-minobenzimidazole (2-AB) and its transitional metallic complexes” Chinese Journal of Organic Chemistry, 2009, 29(8): 1217-1222.


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