基本情況
姓名:崔國峰
性别:男
出生年月:1979-04
籍貫:黑龍江省北安市
職位:工學博士,現任太阳集团1088vip博士生導師、副教授
聯系方式
郵箱:cuigf@mail.sysu.edu.cn
通訊地址:廣州市番禺區大學城外環東路132号太阳集团1088vip, 郵編510006
辦公室地址:太阳集团app首页東校園化學與材料綜合樓A662室
個人網站: www.mecart.cn, www.leadao.cn
教育經曆
1997.09-2001.07 齊齊哈爾工學院,化學與化學工程系,精細化工專業,工學學士,導師:郭祥峰教授。
2001.09-2003.03 哈爾濱工業大學,理學院,電化學專業,工學碩士,導師:李甯教授。
2003.03-2006.07 哈爾濱工業大學,理學院,電化學專業,工學博士,導師:李甯教授。
工作經曆
2006.07-2008.12 太阳集团app首页,化學與化學工程學院,講師
2009.01-2011.01 太阳集团app首页,研究生院副處長
2009.01-至今 太阳集团app首页,太阳集团1088vip副教授
社會兼職
2011.4-至今 廣東省電子電鍍專家委員會,秘書長
2011.4-至今 中國電子學會,高級會員
2011.4 -至今 廣東省腐蝕與表面工程學會,副會長
2019.11-至今 哈爾濱工業大學(威海)廣州校友會,秘書長
2020.10-至今 中關村材料試驗技術聯盟,CSTM委員
2021.4-至今 華南理工大學,專業學位碩士研究生校外指導教師
2022.1-至今 太阳集团app首页科技園,創業導師
科研方向
研究方向為人工智能化學傳感器系統,針對人體嗅覺和味覺傳感系統電子仿生研究。主要成果包括電化學微電極芯片、傳感器模組和相關檢測儀器,研究領域為電化學傳感器(Electrochemical Sensor),量子電化學(Quantum Electrochemistry),電化學檢測儀器(Electrochemical Measuring Instrument)和電子封裝電化學(Electronic Package Electrochemistry)。涉及領域為生物醫學工程中的化學傳感在醫學IVD分子檢測中應用。
研究期間發表SCI論文56篇,授權專利6件,主持20餘項國家級和省部市級重大專項項目,參與了863計劃和國家重大專項2項。行業内獲得台灣線路闆金獎3次,并于2014年獲得台灣線路闆協會和國際IPC協會頒發專業組特别獎。
針對人工智能化學傳感器組建了電子封裝電化學實驗室(EPEC Lab.)和廣州钰芯智能科技研究院(MECART)。目前與美國紐約州立大學布法羅分校的武剛教授建立長期緊密合作關系,并與華南理工大學聯合培養碩士研究生。與太阳集团app首页科技園合作承擔創新創業指導工作。
課題組長期招收電化學、化學傳感、儀器開發等相關專業方向的研究生和博士後。
同時也歡迎有志于大學生挑戰杯和創業大賽項目意願的化學,材料,電子工程專業的本科生加入。
論著一覽
【I.電化學傳感研究】
[1] Hui Li, JieZhao, Shifan Zhao, GuofengCui*. Simultaneous determination of trace Pb(II), Cd(II), and Zn(II) using an integrated three-electrode modified with bismuth film. Microchemical Journal, 2021,168: 109390.
[2] Yu Tian, JieZhao, DongxueHan, Shifan Zhao, Yuanwei Zhang, GuofengCui*. Study of a novel fabrication method of 3D Ag-based nanoporous structures for electrochemical detection. Journal of Electroanalytical Chemistry, 2021,882: 114990.
[3] Chengduan Yang, Cheng Yang, Xiangling Li, Aihua Zhang, Gen He, Qianni Wu, Xingxing Liu, Shuang Huang, Xinshuo Huang, GuofengCui*, Ning Hu, Xi Xie, Tian Hang. Liquid-like Polymer Coating as a Promising Candidate for Reducing Electrode Contamination and Noise in Complex Biofluids. ACS Applied Materials and Interfaces, 2021,13(3): 4450-4462.
[4] FanggenWu, JieZhao, DongxueHan, ShifanZhao, RuiZhu, GuofengCui*. A three-electrode integrated electrochemical platform based on nanoporous gold for the simultaneous determination of hydroquinone and catechol with high selectivity. Analyst, 2021,146(1): 232-243.
[5] ChaoliTan, JieZhao, PengSun, WeiZheng, GuofengCui*. Gold nanoparticle decorated polypyrrole/graphene oxide nanosheets as a modified electrode for simultaneous determination of ascorbic acid, dopamine and uric acid. New Journal of Chemistry, 2020, 44(12): 4916-4926.
[6] GangLi, PengSun, FanggenWu, JieZhao, DongxueHan, GuofengCui*. Significant enhancement in the electrochemical determination of 4-aminophenol from nanoporous gold by decorating with a Pd@CeO2 composite film. New Journal of Chemistry, 2020, 44(7): 3087-3096.
[7] MinJiang, PengSun, JieZhao, Lihua Huo, GuofengCui*. A flexible portable glucose sensor based on hierarchical arrays of Au coated Cu(OH)2 Nanograss. Sensors, 2019, 19(22), 5055.
[8] Huang Chen, Guokang Fan, Jie Zhao, Meijia Qiu, Peng Sun, Yifeng Fu, Dongxue Han, Guofeng Cui*. A portable micro glucose sensor based on copper-based nanocomposite structure. New Journal of Chemistry, 2019, 43(20), 7806-7813.
[9] Guokang Fan, Peng Sun, Jie Zhao, Dongxue Han, Li Niu, Guofeng Cui*. Alleviating concentration polarization: a micro three-electrode interdigitated glucose sensor based on nanoporous gold from a mild process. RSC Advances, 2019, 9(19), 10465-10472.
[10] Huang Chen, Peng Sun, Meijia Qiu, Min Jiang, Jie Zhao, Dongxue Han, Li Niu, Guofeng Cui*. Co-P decorated nanoporous copper framework for high performance flexible non-enzymatic glucose sensors. Journal of Electroanalytical Chemistry, 2019, 841, 119-128.
[11] Han Yang, Jie Zhao, Meijia Qiu, Peng Sun, Dongxue Han, Li Niu, Guofeng Cui*. Hierarchical bi-continuous Pt decorated nanoporous Au-Sn alloy on carbon fiber paper for ascorbic acid, dopamine and uric acid simultaneous sensing. Biosensors and Bioelectronics, 2019, 124-125, 191-198.
[12] Xilai Zou, Yongyin He, Peng Sun, Jie Zhao, Guofeng Cui*. A novel dealloying strategy for fabricating nanoporous silver as an electrocatalyst for hydrogen peroxide detection. Applied Surface Science, 2018, 447: 542-547.
[13] Jie Zhao, Xilai Zou, Peng Sun, Guofeng Cui*. Three-Dimensional Bi-Continuous Nanoporous Gold/Nickel Foam Supported MnO2 for High Performance Supercapacitors. Scientific Reports, 2017, 7: 17857.
[14] Zhihao Li , Yanghua He , Xi Ke**, Lin Gan, Jie Zhao, Guofeng Cui*, Gang Wu. Three-dimensional nanoporous Au films as high-efficiency enzyme-free electrochemical sensors. Electrochimica Acta, 2015,170(10): 337-342。
[15] Lin Gan, Meijia Yang, Xi Ke, Guofeng Cui*, Xudong Chen**, Shiva Gupta, William Kellogg, Drew Higgins, Gang Wu. Mesoporous Ag nanocubes via selectively oxidative etching at room temperature for surface-enhanced raman spectroscopy. Nano Research,2015,8(7): 2351-2362.
[16] Zhihao Li, Yanghua He, Xi Ke**, Lin Gan, Jie Zhao, Guofeng Cui*, Gang Wu***. Three-dimensional nanoporous goldecobalt oxide electrode for high-performance electroreduction of hydrogen peroxide in alkaline medium. Journal of Power Sources, 2015, 294: 136-140.
[17] Yantong Xu, Xi Ke, Changchun Yu, Shaofang Liu, Jie Zhao, Guofeng Cui*, Drew Higgins, Zhongwei Chen, Qing Li, Gang Wu. A strategy for fabricating nanoporous gold films through chemical dealloying of electrochemically deposited Au-Sn alloys. Nanotechnology, 2014, 25: 445602.
[18] Xi Ke, Yantong Xu, Changchun Yu, Jie Zhao,Guofeng Cui*,Drew Higgins, Qing Li,Gang Wu. Nanoporous gold on three-dimensional nickel foam: An efficient hybrid electrode for hydrogen peroxide electroreduction in acid media. Journal of Power Sources, 2014, 269: 461-465.
[19] Xi Ke, Yantong Xu, Changchun Yu, Jie Zhao, Guofeng Cui*, Drew Higgins, Zhongwei Chen, Qing Li, Hui Xu, Gang Wu. Pd-decorated three-dimensional nanoporous Au/Ni foam composite electrodes for H2O2 reduction. Journal of Materials Chemistry A, 2014, 2: 16474-16479.
[20] Wei Li, Shilei Xie, Mingyang Li, Xingwang Ouyang, Guofeng Cui*, Xihong Lu*, Yexiang Tong*. CdS/CeOx heterostructured nanowires for photocatalytic hydrogen production. Journal of Materials Chemistry A, 2013, 1: 4190-4193.
[21] Xi Ke, Lulu Deng, Pei Kang Shen*, Guofeng Cui*. Electrochemical Quartz Crystal Microbalance (EQCM) Characterization of Electrodeposition and Catalytic Activity of Pd-based Electrocatalysts for Ethanol Oxidation. Chemical Research in Chinese Universities, 2010, 26: 443-448.
【II.量子電化學研究】
[22] Meijia Qiu, Liang Ma, Peng Sun, Zilong Wang, Guofeng Cui*, Wenjie Mai. Manipulating Interfacial Stability via Absorption-Competition Mechanism for Long-Lifespan Zn Anode. Nano-Micro Letters, 2021,14(1): 31.
[23] PengSun, MeijiaQiu, JunlongHuang, JieZhao, LuyiChen, YifengFu, GuofengCui*, YexiangTong. Scalable three-dimensional Ni3P-based composite networks for flexible asymmertric supercapacitors. Chemical Engineering Journal, 2020, 380, 122621.
[24] Meijia Qiu, Peng Sun, Guofeng Cui*, Yexiang Tong, Wenjie Mai. A Flexible Microsupercapacitor with Integral Photocatalytic Fuel Cell for Self-Charging. ACS Nano. 2019,13(7), 8246-8255.
[25] Tiantian Fan, Peng Sun, Jie Zhao, Zhiming Cui, Guofeng Cui*. Facile Synthesis of Three-Dimensional Ordered Porous Amorphous Ni-P for High-Performance Asymmetric Supercapacitors. Journal of The Electrochemical Society, 2019, 166(2), D37-D43.
[26] Peng Sun, Meijia Qiu, Mingyang Li, Wenjie Mai, Guofeng Cui*, Yexiang Tong. Stretchable Ni@NiCoP textile for wearable energy storage clothes. Nano Energy.2019,55:506-515.
[27] Guofeng Cui*, Shaofang Liu, Kaiming Wang, Qing Li, Gang Wu. Discovering p-doped mechanism in non-magnetic Ni-P films for HDD substrate:a combined experimentalandtheoretical study. RSCadvances,2014, 4: 14663-14672.
[28] Yulei Liu, Min Xiao*, Shuanjin Wang, Liang Xia, Dongmei Hang, Guofeng Cui*, Yuezhong Meng*. Mechanism studies of terpolymerization of phthalic anhydride, propylene epoxide, and carbon dioxide catalyzed by ZnGA. RSC advances, 2014, 4: 9503-9508.
[29] Guofeng Cui*, Shaofang Liu, Jie Zhao, Edward F. Holby, Qing Li, Gang Wu. AuSn20 Eutectic Electrodeposition through Alternative Complexing of Pyrophosphoric Acid: Insights from Electrochemical and DFT Methods, Journal of Physical Chemistry C, 2013, 117: 21228–21233.
[30] Guofeng Cui*, Jie Zhao, Shaofang Liu, Gang Wu. Structural and Corrosion Properties of NiPx Metallic Glasses: Insights from EIS and DFT, Journal of Physical Chemistry C, 2011, 115: 21169–21176.
[31] Guofeng Cui*, Pei Kang Shen*, Hui Meng, Jie Zhao, Gang Wu. Tungsten carbide as supports for Pt electrocatalysts with improved CO tolerance in methanol oxidation.Journal of Power Sources. 2011, 196: 6125-6130.
[32] Gang Wu*, Mark Nelson, Shuguo Ma, Hui Meng, Guofeng Cui*, Pei Kang Shen. Synthesis of nitrogen-doped onion-like carbon and its use in carbon-based CoFe binary non-precious-metal catalysts for oxygen-reduction. Carbon, 2011, 49: 3972-3982.
[33] Jie Zhao*, Guofeng Cui*. Study on Adsorption and Complexation Behavior of Thiourea on Copper Surface.International Journal of Electrochemical Science, 2011, 6: 4048-4058.
[34] Peikang Shen, Zaoxue Yan, Hui Meng*, Mingmei Wu*, Guofeng Cui*, Ruihong Wang, Lei Wang, Keying Si, Honggang Fu*. Synthesis of Pd on porous hollow carbon spheres as an electrocatalyst for alcohol electrooxidation, RSC Advances, 2011, 1: 191–198.
[35] Xiang Fang, Liangqin Wang, PeiKang Shen*, Guofeng Cui*, Claudio Bianchini*. An in situ Fourier transform infrared spectroelectrochemical study on ethanol electrooxidation on Pd in alkaline solution. Journal of Power Sources, 2010, 195: 1375-1378.
[36] Guofeng Cui*, Shuqin Song, Peikang Shen*. Andrzej Kowal, Claudio Bianchini. First-Principles Considerations on Catalytic Activity of Pd toward Ethanol Oxidation. Journal of Physical Chemistry C, 2009, 113: 15639-15642.
[37] Xi Ke, Guofeng Cui*, Peikang Shen*. Stability of Pd-Fe Alloy Catalysts. Acta Physico-Chimica Sinica, 2009, 25: 213-217.
[38] Gang Wu*, Guofeng Cui*, Deyu Li, Peikang Shen, Ning Li. Carbon-supported Co1.67Te2 nanoparticles as electrocatalysts for oxygen reduction reaction in alkaline electrolyte. Journal of Materials Chemistry. 2009, 19: 6581-6589.
[39] Xianghua Zhang, Hong Liu*, Wenzhao Li, Guofeng Cui*, Hengyong Xu, Keli Han, Qingping Long. Visible-light photocatalytic degradation of aromatic contaminants with simultaneous H2 generation: Comparison of 2,4-dichlorophenoxyacetic acid and 4-chlorophenol. Catalysis Letters. 2008, 125: 371-375.
[40] Guofeng Cui*, Xi Ke, Hong Liu, Jianwei Zhao, Shuqin Song, Peikang Shen. First-principles considerations on spontaneous replacement of copper by tin in the presence of thiourea. JournalofPhysical Chemistry C, 2008, 112: 13546-13553.
[41] Guofeng Cui*, Hong Liu, Gang Wu, Jianwei Zhao, Shuqin Song, Peikang Shen*. Electrochemical impedance spectroscopy and first-principle investigations on the oxidation mechanism of hypophosphite anion in the electroless deposition system of nickel. Journalof Physical Chemistry C. 2008, 112: 4601-4607.
[42] Fengping Hu, Guofeng Cui*, Zidong Wei, Peikang Shen*. Improved kinetics of ethanol oxidation on Pd catalysts supported on tungsten carbides/carbon nanotubes. Electrochemistry Communications. 2008, 10: 1303-1306.
[43] Gang Wu*, Raja Swaidan, Guofeng Cui*. Electrooxidations of ethanol, acetaldehyde and acetic acid using PtRuSn/C catalysts prepared by modified alcohol-reduction process. Journalof Power Sources. 2007, 172: 180-188.
[44] Re Zhao, Ning Li*, Shan Gao and Guofeng Cui*. The irreversible characteristic analysis of thiourea on copper electrodes in aqueous 0.5 mol/L sulphuric acid. Electrochemistry Communications. 2007, 9: 2261-2265.
[45] Jie Zhao, Ning Li, Guofeng Cui*, Jianwei Zhao. Study on immersion tin process by electrochemical methods and molecular orbital theory. Journal of The Electrochemical Society, 2006, 153: C848-C853.
[46] Guofeng Cui*, Ning Li, Jianwei Zhao, Mingbo Zhang. Ab initio MO Study on the Reaction Mechanism of Reduction of Hypophosphorous Acid. Journal of The Electrochemical Society, 2005, 152: C861-864.
【III.電子封裝電化學研究】
[47] YifengFu, GuofengCui*, KjellJeppson. Thermal characterization of low-dimensional materials by resistance thermometers. Materials, 2019, 12(11):1740.
[48] Ning Xiao, Deyu Li, Guofeng Cui*, Ning Li*, Qing Li, Gang Wu. Adsorption behavior of triblock copolymer suppressors duringthecopper electrodeposition. Electrochimica Acta, 2014,116: 284-291.
[49] Ning Xiao, Ning Li*, Guofeng Cui*, Dong Tian, Shiyou Yu, Qing Li, Gang Wu*. Triblock Copolymers as Suppressors for Microvia Filling via Copper Electroplating. Journal of The Electrochemical Society, 2013, 160: D188-D195.
[50] Ning Xiao, Deyu Li, Guofeng Cui*, Ning Li*, Dong Tian, Qing Li, Gang Wu. An effective triblock copolymer as a suppressor for microvia filling via copper electrodeposition. Electrochimica Acta, 2013, 109: 226-232.
[51] Teng Zhai, Xihong Lu, Guofeng Cui*, Gang Wu,Junxiong Qu and Yexiang Tong. Efficient electroless nickel plating from highly active Ni-B nanoparticles for electric circuit pattern on Al2O3 ceramic. Journal of Materials Chemistry C,2013, 1: 5149-5152.
[52] Jie Zhao*, Guofeng Cui*, Hong Liu. Investigation into Rejuvenation of Spent Chromium Plating Solutions by Bipolar Membrane Electrodialysis, Journal of The Electrochemical Society, 2011, 158: D561-D566.
[53] Junxi Liu, Hong Liu*, Chuan Wang, Xiangzhong Li, Yexiang Tong*, Xiaoli Xuan,Guofeng Cui*. Synthesis, characterization and re-activation of a Fe0/Ti system for the reduction of aqueous Cr (VI). Journalof Hazardous Materials.2008, 151: 761-769.
[54] Guofeng Cui*, Jinghe Wang, Ning Li, Xingqiao Huang. A Single Precursor Pit for Pitting Corrosion on Defect of Tinplate Alloy Layer Visualized by Atomic Force Microscopy. Materials Chemistry and Physics, 2006, 97: 488-493.
[55] Guofeng Cui*, Ning Li, Deyu Li, Jian Zheng, Qinglong Wu. The Physical and Electrochemical Properties of Electroless Deposited Black Nickel–Phosphorus Alloys. Surface and Coatings Technology, 2006, 200: 6808-6814.
[56] Guofeng Cui*, Ning Li, Deyu Li, Minglei Chi. Study of Optimized Complexing Agent for Low-Phosphorus Electroless Nickel Plating Bath. Journal of The Electrochemical Society, 2005, 152: C669-C674.
專利成果
- 一種高導熱基闆及其制備方法,國家發明專利,授權号:ZL201310230930.1。
- 一種負載到基材上的去合金法獲得納米多孔銀的方法,國家發明專利,授權号:ZL201510531888.6。
- 一種金錫共晶焊料(AuSn20)電鍍液及制備方法,國家發明專利,授權号:ZL201210116227.3。
- 一種納米氧化鋅微球及其制備方法,國家發明專利,授權号:ZL201911316715.7。
- 載有納米材料包裹保胎藥物的微針給藥系統及制備方法,國家發明專利,授權号:ZL201810366112.7。
- 一種含有還原氧化石墨烯和聚合物的複合膜及其制備和應用,國家發明專利,授權号:ZL201910206401.5。
- 一種碳材料微珠/聚合物複合膜及其制備和應用,國家發明專利,授權号:ZL201910206389.8。
科研項目
- 太阳集团app首页校基金項目:“綠色化學鍍鎳及廢水處理一體化新工藝開發及工程”,項目主持人, No: 2006-31000-1131214,年度:2007, 01~2008, 12。
- 太阳集团app首页校長後備課題項目:“綠色化學鍍鎳及廢水處理一體化新工藝的研究”, 項目主持人, No: 2006-31000-1132-267,年度:2007, 01~2008, 12。
- 國家自然科學基金項目:“化學沉積鎳中非金屬可控析出的催化劑設計及機理研究”, 項目主持人, No: 50801070,年度:2008, 12~2011, 12。
- 廣東省學科建設專項資金項目育苗工程項目:“量子電化學研究化學沉積鎳中磷的催化析出機制”,項目主持人, No: 31000-3211602,年度:2008, 12~2011, 12。
- 2009年廣東省省部産學研“節能減排與可再生能源”重大科技專項資金支持項目,LED照明關鍵技術開發集成:“基于回路熱管散熱技術的大功率白光LED照明光源模組的研究和産業化”,項目負責人,No:2009A080301012, 年度:2010,01~2012,01。
- 2009年廣東省省部産學研合作重大專項:“ 五金刀剪材料表面處理技術及高品質産品的研發”,項目負責人, No:2009A090100045,年度: 2009,09~2011,08。
- 國家863科技計劃:“超低Pt多孔有序立體化膜電極組件的設計與研究”,主要參與人,No: 2009AA05Z110,年度:2009,06~2010,05。
- 廣東省低碳化學與過程節能重點實驗室主任基金:“一體化無碳低熱阻LED金屬基闆的設計及應用”,項目主持人,年度:2010, 10~2012, 10。
- 高校基本科研業務費太阳集团app首页青年教師培育項目:“全印制電子用催化型納米顆粒的結構設計及控制方法”,項目主持人,No:11lgpy08,年度:2011,01~2013,12。
- 2012年廣州市珠江科技新星專項立項項目:“超高導熱金屬核芯基闆材料的設計及應用”,項目主持人,No:31000-4205728,年度:2012,05~2015,05。
- 2011年惠州大亞灣區科技計劃項目:“高性能LED導電銀膠研發與産業化”,項目負責人,No:31000-4207387,年度:2011,10~2014,06。
- 2011年先進技術研究院“面向産業發展的關鍵技術研究與應用”項目:“軍民兩用超高導熱金屬-陶瓷複合基闆的設計及應用”,項目負責人,年度:2012,01~2015,01。
- 2012年惠州大亞灣區科技計劃項目:“超高導熱金屬-陶瓷複合基闆的的設計及應用”,項目負責人,No:20120212,年度:2012,10~2015,06。
- 2012年先進技術研究院“面向産業發展的關鍵技術研究與應用”項目:“高導熱AuSn20共晶電沉積微加工在光電子封裝中的應用及推廣”,項目負責人,年度:2012,01~2015,01。
- 2012年國家自然科學基金項目:“AuSn20共晶電沉積中錫可控析出的配體作用機制及設計原則”, 項目主持人, No: 51271205,年度:2012, 12~2015, 12。
- 2013年廣州市科技計劃重大項目 “大功率LED光源與驅動電源中引線框架和基闆一體化高導熱系統解決方案及産業化”,項目負責人,No:2013Y2-00102,年度:2013,03~2015,12。
- 2013年廣東省優秀青年教師項目,項目負責人,No:Yq2013006,年度:2014,01~2017,01。
- 2013年惠州市科技計劃項目“大功率LED封裝用高導熱低溫燒結銀漿研發與産業化”,項目負責人,No:2012B050013012,年度:2012,10~2014,06。
- 2017年清遠市科技計劃項目“新能源汽車電子用高導熱線路闆關鍵技術開發與産業化研究”,項目參與人,No:2018C005,年度:2017,07~2019,07。
- 2018年太阳集团app首页科技成果轉化類項目“POCT生物醫用血氣檢測傳感芯片”,項目負責人,年度:2019,01~2019,12。
- 2021年廣州市科技計劃項目“殡葬行業火化設備主要污染物便攜式在線檢測裝置的研發與應用”,項目參與人,No:202103000003,年度:2021,04~2023,03。
科研活動
- 分子軌道理論研究次亞磷酸的還原機理(口頭報告)、電化學交流阻抗研究化學鍍鎳液的pH值對沉積的影響(口頭報告)、化學鍍鎳過程中磷析出機理的研究(口頭報告)、化學鍍鎳磷合金的物理和電化學特性(牆報)、采用STM研究光亮劑對化學鍍鎳的影響(牆報).第十三次全國電化學會議. 廣州,2005.12。
- 電化學阻抗和密度泛函理論聯合研究次磷酸根陰離子在化學鍍鎳中的氧化機理(口頭報告). 第十四次全國電化學會議. 揚州,2007.11。
- 化學鍍鎳磷合金的新機理.部分I.界面催化反應(口頭報告). 第十五次全國電化學會議. 長春,2009.12。
- 協助廣州市科協舉辦.“2009年穗港澳台科技與産業發展論壇”,廣州,2009.11。
- 通過EIS和DFT研究NiPx金屬玻璃的耐腐蝕行為(邀請報告). 第十六次全國電化學會議. 重慶,2011.11。
- 通過EIS和DFT研究單晶金電沉積機理. 第十七次全國電化學會議. 重慶,2013.10。
- 通過EIS和DFT研究AuSn20共晶電沉積機理. 第十八次全國電化學會議. 重慶,2015.08。
- 2018年第一屆智能汽車傳感器件與表面處理研讨會,廣州钰芯智能科技研究院,廣州,2018.12。
獲獎情況
- 台灣印制線路闆協會-2010年度台灣電路闆産業學院優秀論文-金獎,江蘇蘇州,評選日期:2010.05。
- 台灣印制線路闆協會-2013年度台灣電路闆産業學院優秀論文-專家組特别獎,台灣,評選日期:2014.4。
- 廣州腐蝕學會-2015年度優秀論文獎,一等獎,廣州,評選日期:2015.12。