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孙长龙
2014-10-19 13:46  

 姓名

 孙长龙


 性别

 男

 出生年月

 1988年11月

 职称

 特聘副教授

 学历(学位)

 博士研究生

 毕业院校

 山东大学

 所属院系

 材料科学与工程学院

 导师类别

 硕士生导师

 主讲课程

 《应用化学前言》

 招生专业

 材料科学与工程

 研究方向

 1.低维纳米材料的制备;2. 电化学储能器件设计和应用研究。

 联系方式

 邮箱:happysunchanglong@126.com手机: 15864017850;QQ: 896985477

 个人简历(包括近期科研项目)

个人简历:

孙长龙,博士,青岛科技大学特聘副教授,硕士生导师。主要研究工作集中于新型电化学储能器件的设计和应用研究。现已在Adv. Mater., Nano Energy, Small, ACS Appl. Mater. Interfaces., J. Power Sources, Adv. Mater. Interfaces, Electrochim. Acta., J. Alloys Compd., ACS Appl. Energy Mater.等国内外重要学术期刊上发表SCI学术论文20余篇。

主要研究方向:

1.无机非金属及低维纳米材料的设计、制备与表征。

2.新型锂(钠)离子电池正(负)极材料的设计与应用。

3.电极材料的储能机理研究。

4.电化学储能器件设计和应用研究。

承担科研项目:

1.青岛科技大学高层次人才启动基金,项目负责人

2.广东省基础与应用基础研究基金莞粤联合基金青年基金项目,2019A1515110933,项目负责人

代表性科研成果:

1. Changlong Sun, Yan-Jie Wang*, Hao Gu, Hongbo Fan, Guanjun Yang, Anna Ignaszak, Xiaofu Tang, Dan Liu, and Jiujun Zhang* Interfacial Coupled Design of Epitaxial Graphene@SiC Schottky Junction with Built-In Electric Field for High-performance Anodes of Lithium Ion Batteries.Nano Energy77, 105092 (2020).

2. Changlong Sun, Xiaofu Tang, Zhengmao Yin, Dan Liu, Yan-Jie Wang*, Guanjun Yang, Anna Ignaszak, Jiujun Zhang* Self-supported GaN nanowires with cation-defects, lattice distortion, and abundant active sites for high-rate lithium-ion storage.Nano Energy68, 104376 (2020).

3. Zhenjiang Li, Shiqi Ding, Jifang Yin, Meng Zhang,Changlong Sun*, Alan Meng* Morphology-dependent electrochemical performance of VS4for rechargeable magnesium battery and its magnesiation/demagnesiation mechanism.J. Power Sources451, 227815 (2020).

4. Qiong Peng, Yong Lei, Zhenkun Tang,Changlong Sun*, Jin Li, Guang Wu, Tailin Wang, Zhengmao Yin, Haichao Liu, Electron density modulation of GaN nanowires by manganese incorporation for highly high-rate Lithium-ion storage.Electrochim. Acta.350, 136380 (2020).

5. Changlong Sun, Mingzhi Yang, Tailin Wang, Yongliang Shao, Yongzhong Wu, and Xiaopeng Hao* Graphene-Oxide-Assisted Synthesis of GaN Nanosheets as a New Anode Material for Lithium-Ion Battery.ACS Appl. Mater. Interfaces.9, 26631–26636 (2017).

6. Changlong Sun, Mingzhi Yang, Tailin Wang, Yongliang Shao, Yongzhong Wu, and Xiaopeng Hao* Stable and Reversible Lithium Storage with High Pseudocapacitance in GaN Nanowires.ACS Appl. Mater. Interfaces.10, 2574–2580 (2018).

7. Changlong Sun, Fukun Ma, Liang Cai, Aizhu Wang, Yongzhong Wu, Mingwen Zhao*, Wensheng Yan*, and Xiaopeng Hao*Metal-free Ternary BCN Nanosheets with Synergetic Effect of Band Gap Engineering and Magnetic Properties.Sci. Rep.7, 6617 (2017).

8. Shouzhi Wang,Changlong Sun, Yongliang Shao, Yongzhong Wu, Lei Zhang, and Xiaopeng Hao* Self-Supporting GaN Nanowires/Graphite Paper: Novel High-Performance Flexible Supercapacitor Electrodes.Small13, 1603330 (2017).

9. Tailin Wang,Changlong Sun, Mingzhi Yang, Gang Zhao, Shouzhi Wang, Fukun Ma, Lei Zhang, Yongliang Shao, Yongzhong, Wu, Baibiao Huang, and Xiaopeng Hao* Phase-transformation engineering in MoS2on carbon cloth as flexible binder-free anode for enhancing lithium storage.J. Alloys Compd.716, 112-118(2017).

10. Jiaxin Lv,Changlong Sun, Fukun Ma, Yongzhong Wu, and Yongliang Shao*Ferromagnetism of p-doped BN nanosheets prepared by red phosphorus assisted ball-milling exfoliated technique.J. Mater. Sci.: Mater. Electron.28, 13149–13156 (2017).

11. Mingzhi Yang,Changlong Sun, Tailin Wang, Yongliang Shao, Yongzhong Wu, and Xiaopeng Hao*Rational Synthesis of Two-Dimensional Ga2O3/reduced Graphene Oxide Nanocomposite for High-Rate Alkali-Ion Batteries.ACS Appl. Energy Mater.1, 4708–4715 (2018).

12. Shouzhi Wang, Lei Zhang,Changlong Sun,Yongliang Shao, Yongzhong Wu, Jiaxin Lv, and Xiaopeng Hao*Gallium Nitride Crystals: Novel Supercapacitor Electrode Materials.Adv. Mater.28, 3768–3776 (2016).

13. Tailin Wang,Changlong Sun, Mingzhi Yang, Yongliang Shao, Yongzhong Wu, Lei Zhang, and Xiaopeng Hao* Enhanced reversible lithium ion storage in stable 1T@2H WS2 nanosheets arrays anchored on carbon fiber.Electrochim. Acta.259, 1-8 (2018).

14. Tailin Wang, Gang Zhao,Changlong Sun, Lei Zhang, Yongzhong Wu, Xiaopeng Hao, and Yongliang Shao*Graphene-Assisted Exfoliation of Molybdenum Disulfide to Fabricate 2D Heterostructure for Enhancing Lithium Storage.Adv. Mater. Interfaces2017, 1601187 (DOI: 10.1002/admi.201601187).

15. Fukun Ma,Changlong Sun, Yongliang Shao, Yongzhong Wu,* Baibiao Huang, and Xiaopeng Hao* One-step exfoliation and fluorination of g-C3N4nanosheets with enhanced photocatalytic activities.New J. Chem.41, 3061-3067 (2017).

16. Dengzhou Yan,Changlong Sun, Jikang Jian, Yanfei Sun, Rong Wu, and Jin Li* Structure and phase transition of BiFeO3particles prepared by hydrothermal method and the verification of crystallization--dissolution--crystallization mechanism.J. Mater. Sci.: Mater. Electron.25, 928-935 (2014).

17. Lei Zhang, Shouzhi Wang, Yongliang Shao, Yongzhong Wu,Changlong Sun, Qin Huo, Baoguo Zhang, Haixiao Hu, and Xiaopeng Hao*One-step fabrication of porous GaN crystal membrane and its application in energy storage.Sci. Rep.7, 44063 (2017).SCI三区,IF = 4.011

18. Zhen Cui, Xia Wang, Enling Li, Yingchun Ding,Changlong Sunand Minglei Sun* Alkali-metal-adsorbed g-GaN monolayer: ultralow work functions and optical properties.Nanoscale Res. Lett.13, 207 (2018).

19. Sake Wang,* Jyh-Pin Chou, Chongdan Ren, Hongyu Tian, Jin Yu,Changlong Sun, Yujing Xu,* Minglei Sun* Tunable Schottky barrier in graphene/graphene-like germanium carbide van der Waals heterostructure.Sci. Rep.9, 5208(2019).

20. Sake Wang,* Hongyu Tian, Yi Luo, Jin Yu, Chongdan Ren,*Changlong Sun, Yujing Xue, Minglei Sun* First-principles calculations of aluminium nitride monolayer with chemical functionalization.Appl. Surf. Sci.481, 1549-1553 (2019).

21. Haichao Liu, Ranran Jian, Hongbo Chen, Xiaolong Tian,Changlong Sun, Jing Zhu, Zhaogang Yang,* Jingyao Sun*, Chuansheng Wang* Application of Biodegradable and Biocompatible Nanocomposites in Electronics: Current Status and Future Directions.Nanomaterials9, 950 (2019).

22. Junying Weng*, Ju Duan,Changlong Sun, Peng Liu, Aixiang Li, Pengfei Zhou*, Jin ZhouConstruction of hierarchical K0.7Mn0.7Mg0.3O2 microparticles as high capacity & long cycle life cathode materials for low-cost potassium-ion batteries.Chem. Eng. J.392, 123649 (2020).

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