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哈尔滨工业大学基础与交叉科学研究院研究生考研导师简介-赵光宇

本站小编 Free考研网/2019-05-25

基本信息科学研究教育教学论文专著
基本信息

赵光宇,男,汉族,1981年生,副教授,博士生导师;

基础与交叉科学研究院化学与能源材料研究所;

主要从事化学电源(锂离子电池、锂空气电池、超级电容器)方面的研究工作;

Chem. Mater., Journal of Materials Chemistry A, Electrochim. Acta., J. Power Sources等化学或电化学专业期刊上发表学术论文40余篇,以工大为第一单位的一作文章20余篇。

工作经历
时间工作经历
2016.04~哈尔滨工业大学,基础与交叉科学研究院,副教授,博士生导师
2014.01~哈尔滨工业大学,基础与交叉科学研究院,副教授,硕士生导师
2008.06~2013.12哈尔滨工业大学,基础与交叉科学研究院,讲师
2009.12~2013.12哈尔滨工业大学化学工程与技术博士后流动站,合作导师:孙克宁教授





教育经历
2003年-2008年, 就读于兰州大学化学化工学院,博士1999年-2003年, 就读于兰州大学化学化工学院,本科


主要任职
2013年被邀请为Journal of Nanomaterials(SCI,IF=1.547)杂志的特刊编辑

荣誉称号
2008年 宝钢教育奖学金获得者

我的新闻

新闻标题恭喜李长乐同学获得国家奖学金!

发表时间2015-11-05

恭喜李长乐同学获得国家奖学金!


新闻标题恭喜牛艳宁同学获得国家奖学金!

发表时间2015-11-05

恭喜牛艳宁获得国家奖学金!


新闻标题恭喜陈轩同学获得硕士研究生银奖

发表时间2017.7

科研项目

项目名称国基自然科学基金面上项目

开始时间2018.01

结束时间2021.12

项目经费80万

担任角色负责

项目类别纵向项目

项目状态进行中



项目名称国家自然科学基金

开始时间2010-01-01

结束时间2012-12-01

项目经费19万

担任角色负责

项目类别纵向项目

项目状态完成



项目名称中国博士后科学基金面上资助

开始时间2009-09-01

结束时间2012-09-01

项目经费3万

担任角色负责

项目类别纵向项目

项目状态完成



项目名称中国博士后科学基金特别资助

开始时间2010-11-01

结束时间2013-11-01

项目经费10万

担任角色负责

项目类别纵向项目

项目状态完成



项目名称哈尔滨工业大学理工医 交叉学科基础研究培育计划

开始时间2014-06-01

结束时间2016-06-01

项目经费10万

担任角色负责

项目类别横向项目

项目状态完成



项目名称黑龙江省博士后科研启动金

开始时间2014-11-01

结束时间2016-11-01

项目经费10万

担任角色负责

项目类别横向项目

项目状态完成



奖项成果

奖项名称低维纳米有序结构材料的化学/电化学制备及应用

获奖时间2006

完成人排名第六

所获奖项国防科技进步二等奖



研究领域
1. 新型无碳无粘结剂锂空气电池正极的制备与性能研究锂空气电池以其超高的理论比能量成为当前锂离子电池领域的研究热点,而其不理想的循环性能是其进一步发展的主要障碍,这就使开发稳定的正极以改善锂空气电池的循环稳定性成为主要的研究方向。为了避免碳材料和粘结剂在电池循环过程中产生的副产物的不利影响,我们通过电化学方法在集流体表面原位的制备了多种正极催化剂。结果表明:我们制备的电极在电池充放电过程中保持了良好的稳定性,赋予了电池优异的循环性能。其中,我们制备的Pt催化剂修饰的二氧化钛纳米管阵列电极让电池在5C倍率和1000mAh/g的容量限制下循环超过150圈,已经达到了国内领先,国际先进的水平,这个工作发表在了美国化学会的Chemistry of Materials杂志上。目前该方向作为负责人的在研项目有黑龙江省博士后启动经费和校理工交叉研究计划两项项目。经过我们多年在锂空气电池领域的积累和发表文章水平的不断提高,我们的研究逐渐得到了领域同行的认可。2013年被邀请为Journal of Nanomaterials(SCI,IF=1.547)杂志的特刊编辑,近几年多次被邀请为Nano Energy,Journal of Materials Chemistry AJournal of power sources和Langmuir等杂志的审稿人。

2. 高稳定性锂电负极材料的制备与性能研究性能研究Si以其4200mAh/g的理论比能量一直是锂电负极材料的研究热点,而其在充放电过程中超过400%的体积膨胀所导致的活性物质剥离使Si负极材料的循环性能难以达到应用要求。我们通过原位制备Si多孔薄膜及石墨烯复合纳米Si的方法为其在充放电过程中提供足够多的容胀空间来提高材料的循环稳定性。结果表明我们制备的新型Si材料有效地改善了其作为电池负极的多种性能。其中,通过电化学原位制备的Si薄膜无碳无粘结剂电极更是达到了2800mAh/g的比容量循环80圈几乎不衰减的水准,此性能已经达到了国内领先的水平。文章发表在Journal ofPower Sources等杂志上。在Si基负极材料领域本人作为第一负责人承担了国家博士后特别资助,国家博士后面上资助和省博士后面上资助等项目经费。在此锂电负极材料研究的基础上,2013年作为主要参与人完成了工业与信息化部产业化项目“钛酸锂锂电负极材料的产业化”,与江苏华富控股集团共同推进了我国高稳定性钛酸锂负极材料的产业化步伐。


团队成员
在读学生:

龚珊, 2015级博士, 研究方向: 锂离子电池.
刘超, 2016级直博生,研究方向: 锂离子电池. 吴灿龙,2016级直博生,研究方向: 锂离子电池.

黄惠煌,2017级直博生,研究方向: 锂离子电池.

沈晓杰,2017级直博生,研究方向: 锂离子电池.

唐磊, 2016级硕士, 研究方向: 锂离子电池.

孙欣,2016级硕士, 研究方向: 锂离子电池

刘雨菲,2017级硕士, 研究方向: 锂离子电池



已毕业学生:

魏召唤, 硕士研究生,研究方向:锂离子电池 (毕业去向:电子科技大学 讲师)

孟玉凤, 硕士研究生,研究方向:锂离子电池 (毕业去向:上海航天811所)

潘通,硕士研究生,研究方向:锂离子电池 (毕业去向:大连浦发银行)

徐展铭, 硕士研究生,研究方向:锂离子电池 (毕业去向:北京华北电力设计院)

王宝玉, 硕士研究生,研究方向:锂空气电池 (毕业去向:宁德新能源CATL)

吕吉先, 硕士研究生,研究方向:锂空气电池 (毕业去向:上海索尼研究院)

牛艳宁, 硕士研究生,研究方向:锂空气电池 (毕业去向:上海中芯国际)

张东,基础与交叉科学研究院2011级本科生(研究方向:锂离子电池(已毕业,中科院化学所 研究生)

李长乐, 硕士研究生,研究方向:锂空气电池 (毕业去向:南京金龙客车)

包锡洋, 硕士研究生,研究方向:锂空气电池 (毕业去向:广东比亚迪)

陈轩,硕士研究生,研究方向: 锂离子电池 (毕业去向:工业和信息化部电子第五研究所)



讲授课程
暂无填写


招生信息
硕士招生:
应用化学专业

博士招生:

化学工程与技术


论文期刊
paper

2019年

56 PVP incorporated MoS2 as a Mg ion host with enhanced capacity and durability, Canlong Wu, Guangyu Zhao,* Shan Gong, Naiqing Zhang and Kening Sun, JOURNAL OF MATERIALS CHEMISTRY A, Advance Article, 2019

55 A vertically aligned CuO nanosheet film prepared by electrochemical conversion on Cu-based metal-organic framework for non-enzymatic glucose sensors, Li Zhang, Hongbo Liang, Xiaoni Ma, Chen Ye, Guangyu Zhao*, Microchemical Journal, 146(2019),479-485

54 Insights into the intrinsic capacity of interlayer-expanded MoS2 as a Li-ion intercalation host, Gong, Shan; Zhao, Guangyu*;Lyu, Pengbo;Sun, Kening,JOURNAL OF MATERIALS CHEMISTRY A, 7(2019),1187-1195
53 Hierarchically porous delta-manganese dioxide films prepared by an electrochemically assistant method for Mg ion battery cathodes with high rate performance, Wu Canlong; Zhao Guangyu* ;Bao Xiyang; Chen Xuan,Journal of Alloys and Compounds

770(2019), 914-919

2018年

52 A CuNi/C Nanosheet Array Based on a Metal-Organic Framework Derivate as a Supersensitive Non-Enzymatic Glucose Sensor, Zhang, Li; Ye, Chen ; Li, Xu; Ding, Yaru;Liang, Hongbo;Zhao, Guangyu, nano-micro letters, 10(2018),28

51 A Pseudolayered MoS2 as Li-Ion Intercalation Host with Enhanced Rate Capability and Durability, Gong, Shan; Zhao, Guangyu*;Lyu, Pengbo;Sun, Kening, SMALL, 14(2018),**

50 Nanoflake delta-MnO2 deposited on carbon nanotubes-graphene-Ni foam scaffolds as self-standing three-dimensional porous anodes for high-rate-performance lithium-ion batteries,

Zhai, Xue ; Mao, Zhu ; Zhao, Guangyu; Rooney, David ; Zhang, Naiqing ; Sun, Kening, JOURNAL OF POWER SOURCES, 402(2018), 373-380

49 A self-supported metal-organic framework derived Co3O4 film prepared by an in-situ electrochemically assistant process as Li ion battery anodes
Zhao, Guangyu; Sun, Xin ; Zhang, Li; Chen, Xuan;Mao, Yachun ;Sun, Kening

JOURNAL OF POWER SOURCES, 389(2018), 8-12

48 Well-developed capacitive-capacity of metal-organic framework derived Co3O4 films in Li ion battery anodes, Zhao, Guangyu; Tang, Lei; Zhang, Li, et.al. , JOURNAL OF ALLOYS AND COMPOUNDS, 746(2018), 277-284

2017年

47 Ti@MoSx core-shell nanowire arrays as self-supported electrodes for hydrogen evolution reaction, Liu, Chao; Zhao, Guangyu*; Sun, Kening, INTERNATIONAL JOURNAL OF HYDROGEN ENERGY 42(2017): 30646-30652

46. A practical Li ion battery anode material with high gravimetric/volumetric capacities based on T-Nb2O5/graphite composite

Guangyu Zhao, Li Zhang, Changle Li, Huihuang Huang, Xin Sun, Kening Sun
Chemical Engineering Journal 328 (2017) 844–852 (IF=6.216)

45. T-Nb2O5 quantum dots prepared by electrodeposition for fast Li ion intercalation/deintercalation

Guangyu Zhao, Chen Ye, Li Zhang, Changle Li and Kening Sun

Nanotechnology 28 (2017) 215101 (6pp) (IF=3.44)

44. Electrodeposition of ultra-long copper nanowires on a titanium foil electrode for nonenzymatic voltammetric sensing of glucose

Li Zhang, Yaru Ding, Ranran Li, Chen Ye, Guangyu Zhao, Yan Wang

Microchimica Acta 184 (2017) 2837–2843 (IF=4.580)
43. Ni-Based metal–organic framework derived Ni@C nanosheets on a Ni foam substrate as a supersensitive non-enzymatic glucose sensor

Li Zhang, Yaru Ding, Ranran Li, Chen Ye, Guangyu Zhao, Yan Wang

Journal of Materials Chemistry B 5 (2017) 5549-5555 (IF=4.543)

42. A molten Mg corrosion method for preparing porous Ti foam as self-supported Li-O-2 battery cathodes

Guangyu Zhao, Li Zhang, Yanning Niu,Kening Sun

Electrochimica Acta 224(2017) 64–70(IF=4.798)

2016年

41. Ti@δ-MnO2 core-shell nanowire arrays as self-supported electrodes of supercapacitors and Li ion batteries

Guangyu Zhao, Dong Zhang, Li Zhang, Kening Sun

Electrochimica Acta 202 (2016) 8–13 (IF=4.798)

40. Vertically aligned graphitic carbon nanosheet arrays fabricated from graphene oxides for supercapacitors and Li–O2 batteries

Guangyu Zhao, Li Zhang, Jixian Lv, Changle Li and Kening Sun

Chemical Communications, 2016, DOI: 10.1039/C6CC01418F (IF=6.319)

39. Enhanced durability of Li?O2 batteries employing vertically standing Ti nanowire array supported cathodes

Guangyu Zhao, Li Zhang, Yanning Niu, Kening Sun and David Rooney,

Journal of Materials Chemistry A, 2016, 4, 4009–4014 (IF=8.867)

38. A graphitic foam framework with hierarchical pore structure as self-supported electrodes of Li–O2 batteries and Li ion batteries

Guangyu Zhao, Li Zhang, Jixian Lv, Changle Li and Kening Sun,

Journal of Materials Chemistry A, 2016, 4, 1399–1407 (IF=8.867)

2015年

37. “Sea cucumber”-like Ti@MoO3 nanorod arrays as self-supported lithium ion battery anodes with enhanced rate capability and durability

Guangyu Zhao, Changle Li, Li Zhang, Jixian Lv, Yanning Niu , Ying Du, kening sun,

Journal of Materials Chemistry A, 2015,3, 22547-22551 (IF=8.867)

36. Cuprous oxide as Cathode Catalysts of Lithium Oxygen Batteries

Guangyu Zhao, Li Zhang, Baoyu Wang , Kening Sun, Electrochimica Acta,2015, 184,117-123(IF=4.798)

35. Pushing the Limits: 3D Layer-by-Layer-Assembled Composites for Cathodes with 160 C Discharge Rates

Runwei Mo , Siu On Tung , Zhengyu Lei , Guangyu Zhao , Kening Sun , and Nicholas A. Kotov, ACS nano,2015, 9, 5009–5017(IF=13.942)

34. Self-supported porous CoOOH nanosheet arrays as a non-enzymatic glucose sensor with good reproducibility

Li Zhang, Chunli Yang, Guangyu Zhao, Jianshuai Mu, Yan Wang, Sensors and Actuators B: Chemical,2015, 210, 190-196(IF=5.401)

33. Freestanding Cu nanowire arrays on Ti/Cr/Si substrate as tough nonenzymatic glucose sensors

Li Zhang, Junyi Zhang, Chunli Yang, Guangyu Zhao, Jianshuai Mua and Yan Wang, RSC advances, 2015,5, 82998-83003(IF=3.108)

2014




32. Enhanced cyclability of Li-O2 batteries based on TiO2 supported cathodes with no carbon or binder

Guangyu Zhao, Runwei Mo, Baoyu Wang, Li Zhang, Kening Sun, Chemistry of Materials,2014, 26, 2551–2556(IF=9.466)

31. Carbon and binder free rechargeable Li-O2 battery cathode with Pt/Co3O4 flake arrays as catalyst

Guangyu Zhao, Jixian Lv, Zhanming Xu, Li Zhang, Kening Sun, Journal of Power Sources, 2014, 248, 1270-1274(IF=6.395)

30. Free-standing Pt@RuO2·xH2O nanorod arrays on Si wafers as electrodes for methanol electro-oxidation

Guangyu Zhao, Li Zhang, Kening Sun, Hulin Li, Journal of Power Sources, 2014, 245, 892-897(IF=6.395)

29. Ruthenium oxide modified titanium dioxide nanotube arrays as carbon and binder free lithium air battery cathode catalyst

Guangyu Zhao , Yanning Niu, Li Zhang, Kening Sun, Journal of Power Sources, 2014, 270, 386-390(IF=6.395)

28. The crystal plane effect on the peroxidase-like catalytic properties of Co3O4 nanomaterials

Jianshuai Mu, Li Zhang, Guangyu Zhao, Yan Wang, Physical Chemistry Chemical Physics,2014,16, 15709-15716(IF=4.123)

2013年

27. Electrochemical preparation of porous MoO3 film with a high rate performance as anode for lithium ion batteries

Guangyu Zhao, Naiqing Zhang, Kening Sun, Journal of Materials Chemistry A,2013,1, 221-224 (IF=8.867 )

26. Hierarchical porous Co3O4 films as cathode catalysts of rechargeable Li–O2 batteries

Guangyu Zhao, Zhanming Xu, Kening Sun, Journal of Materials Chemistry A,2013,1, 12862-12867 (IF=8.867)

25. Decoration of graphene with silicon nanoparticles by covalent immobilization for use as anodes in high stability lithium ion batteries

Guangyu Zhao, Li Zhang, Yufeng Meng, Naiqing Zhang, Kening Sun, Journal of Power Sources, 2013, 240, 212-218(IF=6.395)

24. Hierarchical porous Co3O4 films with size-adjustable pores as Li ion battery anodes with excellent rate performances

Guangyu Zhao, Zhanming Xu, Li Zhang, Kening Sun, Electrochimica Acta, 2013, 114,251-258(IF=4.798)

23. Capacitive contribution to lithium storage capacity in porous MoO3 films

Guangyu Zhao, Li Zhang, Kening Sun, Journal of Electroanalytical Chemistry, 2013, 694,61-67(IF=3.012)

22. High storage performance of core–shell Si@C nanoparticles as lithium ion battery anodematerial

Guangyu Zhao, Li Zhang, Yufeng Meng, Naiqing Zhang, Kening Sun, Materials Letters, 2013, 96, 170-173(IF=2.572)

21. Preparation of NiO/multiwalled carbon nanotube nanocomposite for use as the oxygen cathode catalyst in rechargeable Li–O2 batteries

Guangyu Zhao, Li Zhang, Tong Pan, Kening Sun Journal of Solid State Electrochemistry, 2013,17, 1759-1764(IF=2.316)

20. Porous MoO3 films with ultra-short relaxation time used for supercapacitors

Guangyu Zhao, Naiqing Zhang, Kening Sun, Materials Research Bulletin, 2013, 48, 1328-1332(IF=2.446)

19. Polyaniline nanowire electrodes with high capacitance synthesized by a simple approach

Li Zhang, Guangyu Zhao, Yan Wang, Materials Science and Engineering: C, 2013, 33, 209-212(IF=4.164)

2012年

18. Electrodeposited Si film with excellent stability and high rate performance for lithium-ion battery anodes

Guangyu Zhao, Yufeng Meng, Naiqing Zhang, Kening Sun, Materials Letters, 2012, 76, 55-58(IF=2.572)

17. Enhanced low temperature performances of expanded commercial mesocarbon microbeads (MCMB) as lithium ion battery anodes

Guangyu Zhao, Zhaohuan Wei, Naiqing Zhang, Kening Sun, Materials Letters, 2012, 89, 243-246(IF=2.572)

2012年以前

16. Template preparation of Pt-Ru and Pt nanowire array electrodes on a Ti/Si substrate for methanol electro-oxidation.

Zhao GY, Xu CL, Guo DJ, et al. JOURNAL OF POWER SOURCES 162 (2006) 492-496.

15. Highly ordered cobalt-manganese oxide (CMO) nanowire array thin film on Ti/Si substrate as an electrode for electrochemical capacitor.

Zhao GY, Xu CL, Li HL, JOURNAL OF POWER SOURCES 163 (2007) 1132-1136.

14. Preparation of polyaniline nanowire arrayed electrodes for electrochemical supercapacitors.

Zhao GY, Li HL, MICROPOROUS AND MESOPOROUS MATERIALS 110 (2008) 590-594.

13. Template preparation of Pt nanowire array electrode on Ti/Si substrate for methanol electro-oxidation.

Zhao GY, Xu CL, Guo DJ, et al. APPLIED SURFACE SCIENCE 253 (2007) 3242-3246.

12. Patterning polycrystalline aluminum by electropolishing at low voltages.

Zhao GY, Xu CL, Guo DJ, et al. JOURNAL OF SOLID STATE ELECTROCHEMISTRY 10 (2006) 266-269.

11. Electrochemical oxidation of methanol on Pt nanoparticles composited MnO2 nanowire arrayed electrode.

Zhao GY, Li HL, APPLIED SURFACE SCIENCE 254 (2008) 3232-3235.

10. Pt-Ru nanowire arrayed electrodes for nitrite detection.

Zhao GY, Xu CL, Li HL, MATERIALS LETTERS 62 (2008) 1663-1665.

9. Fabrication and magnetic properties of amorphous Co0.71Pt0.29 nanowire arrays.

Li H, Xu CL, Zhao GY, et al. SOLID STATE COMMUNICATIONS 132 (2004) 399-403.

8. Effects of annealing temperature on magnetic property and structure of amorphous Co49Pt51 alloy nanowire arrays prepared by direct-current electrodeposition.

Li H, Xu CL, Zhao GY, et al. JOURNAL OF PHYSICAL CHEMISTRY B 109 (2005) 3759-3763.

7. Effective adhesion of Pt nanoparticles on thiolated multi-walled carbon nanotubes and their use for fabricating electrocatalysts.

Yang GW, Gao GY, ZhaoGY, et al. CARBON 45 (2007) 3036-3041.

6. Fabrication of superhydrophobic surfaces by a Pt nanowire array on Ti/Si substrates.

Qu MN, Zhao GY, Wang Q, et al. NANOTECHNOLOGY 19 (2008) 055707.

5. Electrodeposition and magnetic properties of Ni nanowire arrays on anodic aluminum oxide/Ti/Si substrate.

Xu CL, Li H, Zhao GY, et al. APPLIED SURFACE SCIENCE 253 (2006) 1399-1403.

4. Preparation and magnetic properties of amorphous Co-Pt alloy nanowire arrays.

Li H, Xu CL, Zhao GY, et al. ACTA PHYSICO-CHIMICA SINICA 21 (2005) 641-645.

3. Electrodeposition of ferromagnetic nanowire arrays on AAO/Ti/Si substrate magnetic storage devices.

Xu CL, Li H, Zhao GY, et al. MATERIALS LETTERS 60 (2006) 2335-2338.

2. Biomimetic fabrication of lotus-leaf-like structured polyaniline film with stable superhydrophobic and conductive properties.

Qu MN, Zhao GY, Cao XP, et al. LANGMUIR 24 (2008) 4185-4189.

1. Ultrasonic assisted polyol synthesis of highly dispersed Pt/MWCNT electrocatalyst for methanol oxidation.

Wang ZC, Zhao DD, Zhao GY, et al. JOURNAL OF SOLID STATE ELECTROCHEMISTRY 13 (2009) 371-376.



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