研究方向
新型生物燃料電池開發及套用;
納米能源材料與器件的設計與組裝。
主要成就
科研項目
14.河南省自然科學基金面上項目:基於多元信號放大策略自供能感測器的構築及其對腫瘤標誌物的超靈敏攜帶型實時檢測,河南省科技廳,項目編號:252300420263,2025.01-2026.12,主持,在研;
13.河南省重點研發與推廣專項:基於多足 DNA 步行器介導的自供能感測系統用於腫瘤標誌物的多模態檢測與分析,河南省科技廳,項目編號:252102220115,2025.01-2026.12,主持,在研;
12.河南省高等學校重點科研項目:基於酶生物燃料電池高性能攜帶型自供能感測裝置的構建及套用研究,項目編號:24A150038,2024.01-2025.12,主持,已完成;
11.河南省重點研發與推廣專項:基於超級電容器/酶生物燃料電池協同強化信號輸出的自供能感測器的構建及其在腫瘤標誌物中的超靈敏檢測,項目編號:232102220013,2023.01-2024.12,主持,已完成;
10. 河南省重點研發與推廣專項:高比能鎂離子電池正極材料儲鎂機制及關鍵技術研究,項目編號:212102310408,2021.01-2022.12,主持,已完成;
9.河南省高等學校重點科研項目:1-T 相 VSe2 複合材料的設計合成及其儲鎂機制研究,項目編號:21A150051,2021.01-2022.12,主持,已完成;
8.中國石化集團勝利石油管理局有限公司新能源開發中心橫向項目:地熱水動態變化條件下的腐蝕結垢狀態及材質變化測試(YKB1903),2019.01-2019.12,15萬元,主持,已完成;
7.河南省高等學校重點科研項目:核-殼複合納米陣列的設計與合成及其在非對稱型超級電容器中的套用,項目編號:19A150045,2019.01-2020.12,主持,已完成;
6.河南省教師教育課程改革研究項目:信息技術環境下有效教學方略研究,項目編號:2019-JSJYYB-115,2019.01-2020.12,主持,已完成;
5.河南省高等學校重點科研項目:基於二硫化鉬超級電容器納米複合材料在新能源汽車儲能器件方面的套用,項目編號:18B150024,2018.01-2019.12,主持,已完成;
4.國家自然基金青年科學基金項目:介孔溶膠凝膠薄膜電化學可控制備新方法及相關核酸適體生物感測器研究(批准號:21005047),2011.01-2013.12,參與人,已完成;
3.河南省自然科學基金面上項目:套用於大規模電能存儲的高性能鐵鎳電池電極材料的研究,編號:162300410230,2016.01-2020.12,第二參與人,已完成;
2.河南省科技公關項目:鄭州市不同粒徑大氣顆粒物來源權重分析及沉降速率研究,編號:162102210042,2016.01-2020.12,第三參與人,已完成;
1.河南省高等學校重點科研項目:提高頭孢噻圬酸的生產工藝研究,項目編號:15B150013,2015.01-2016.12,主持,已完成;
近期代表性論著
29. Honglei Shuai, Renzhi Liu, Wenxuan Li, Xiaojian Yang, Hao Zhang, Yongping Gao, Hui Lu, Kejing Huang, Interfacial Sb-O-C bond and structural confinement synergistically boosting the reaction kinetics and reversibility of Sb2Se3/NC nanorods anode for sodium storage, Journal of Colloid and Interface Science, 678 (2025) 783-794.(SCI一區, Top期刊,IF:9.4);
28. Suna Song, Yidan Guo, Dongxue Mao, Huashan Gao*, Yong-ping Gao*, Wenqian kang*, An ultrasensitive electrochemical/colorimetric dual-mode self-powered biosensing platform for lung cancer marker detection by multiple-signal amplification strategy, Analytica Chimica Acta, 2024, 1316, 342827-342834.(SCI一區, Top期刊,IF:5.7);
27.Lihui Mao, Yi Zhang, Huan Zhang, Huili Liu, Yong-Ping Gao*, Anti-aggregation colorimetric sensing of cysteine using silver nanoparticles in the presence of Pb, Analytical Methods, 2024, 16, 2378-2385.(SCI三區,IF:2.7);
26. Renzhi Liu, Wenxuan Li, Xiaojian Yang, Hui Lu, Yongping Gao, Honglei Shuai, Bismuth nanoparticles confined in multi-walled carbon nanotubes toward enhanced sodium storage anodes, Journal of Alloys and Compounds, 967(2023)171660-171667.(SCI二區, Top期刊,IF:6.371);
25. Yong-ping Gao*, Ke-jing Huang, Bo-ya Wang, Qianyue Xu, Honglei Shuai, Guoqiang Li, Constructed a self-powered sensing platform based on nitrogen-doped hollow carbon nanospheres for ultra-sensitive detection and real-time tracking of double markers, Analytica Chimica Acta, 1267 (2023) 341333-341339.(SCI一區,Top期刊,IF:6.911);
24. Yong-ping Gao, Ke-jing Huang, Yang-yang Hou, Bo-ya Wang, Qianyue Xu, Honglei Shuai, Jing Xu, Guoqiang Li, Nitrogen-doped dodecahedral hollow carbon combined with amplification strategy to construct ultra-sensitive self-powered biosensor for highly stable and real-time monitoring microRNA, Sensors and Actuators B: Chemical, 2023, 387, 133816-133823 (SCI一區,Top期刊,IF:9.221)
23. Honglei Shuai, Renzhi Liu, Wenxuan Li, Xiaojian Yang, Hui Lu, Yongping Gao, Jing Xu, Kejing Huang, A three-dimensional interconnected molybdenum disulfide/multi-walled carbon nanotubes cathode with enlarged interlayer spacing for aqueous zinc-ion storage, Journal of Colloid and Interface Science, 2023, 639: 292-301. (SCI一區, Top期刊,IF:9.965);
22. Yong-ping Gao, Ke-Jing Huang,Fu-Ting Wang, Yang-Yang Hou, Lu-di Zhao, Bo-ya Wang, Jing Xu, Honglei Shuai, Guoqiang Li, The self-powered electrochemical biosensing platform with multi-amplification strategy for ultrasensitive detection of microRNA-155, Analytica Chimica Acta, 1239 (2023) 340702-340710. ESI高被引論文(SCI一區,Top期刊,IF:6.911);
21. Honglei Shuai, Renzhi Liu, Wenxuan Li, Xiaojian Yang, Hui Lu, Yongping Gao, Jing Xu, Kejing Huang, Recent Advances of Transition Metal Sulfides/Selenides Cathodes for Aqueous Zinc-Ion Batteries[J]. Advanced Energy Materials, 2022, 13(4): 2202992-2203021. (SCI一區,Top期刊,IF:29.698);
20. Yong-ping Gao, Ke-Jing Huang,Fu-Ting Wang, Yang-Yang Hou, Jing Xu,Guoqiang Li, Recent advances for biological detection with rolling circle amplification: Design strategy, biosensing mechanism, and practical application, Analyst, 2022,147:3396-3414.(SCI二區,IF:5.227);
19.Yong-ping Gao, Zibo Zhai, Yujing Dong, Yaxi Pang, Jiaxin Chen, Guoqiang Li, 1T-VSe2 nanoparticles cooperated with reduced graphene oxide as a superior cathode material for rechargeable Mg-ion batteries[J]. Applied Surface Science, 2022,592,153141-153150.(SCI一區,Top期刊,IF:7.392);
18.Yong-Ping Gao, Jing Xu , Ke-Jing Huang, Hui Lu, Ya-Xi Pang, Guo-qiang Li, An overview of current status and prospects of cathode materials based on transition metal sulfides for magnesium-ion batteries,CrystEngComm, 2021, 23, 7546-7564. (SCI二區, IF:3.756). Highlight;
17.Y. P. Gao, Z. N. Wei, J. Xu, High-performance asymmetric supercapacitor based on 1T-MoS2 and MgAl-Layered double hydroxides, Electrochimica Acta, 330 (2020) 135195-135207.(SCI一區, Top期刊,IF:7.336);
16.Y. P. Gao, Zhi-Qiang Hou, K. J. Huang, Nanosheets Assembling Three-Dimensional Molybdenum Disulfide Nanospheres for Efficient Hydrogen Evolution Reaction [J]. Materials Letters, 2019, 255, 126594-126597. (SCI二區,IF:3.574);
15.Yong-Ping Gao, Zi-Bo Zhai, Qian-Qian Wang, Zhi-Qiang Hou, Ke-Jing Huang, Cycling profile of layered MgAl2O4/reduced graphene oxide composite for asymmetrical supercapacitor[J].Journal of Colloid and Interface Science, 539 (2019) 38-44. (SCI一區, Top期刊,IF:9.965);
14.Y. P. Gao, K. J. Huang, C. X. Zhang, S. S. Song,X. Wu,High-performance symmetric supercapacitor based on flower-like zinc molybdate. [J]. Journal of Alloys and Compounds,2018, 731, 1151-1158. (SCI二區, Top期刊,IF:6.371);
13.Y. P. Gao, K. J. Huang, Xu Wu, Zhi-Qiang Hou, Yuan-Yuan Liu, MoS2 nanosheets assembling three-dimensional nanospheres for enhanced-performance supercapacitor. [J]. Journal of Alloys and Compounds, 2018, 741, 174-181. (SCI二區, Top期刊,IF:6.371);
12.Zhi-Qiang Hou*, Zhi-Guang Yang, Yong-Ping Gao*, Synthesis of vanadium oxides nanosheets as anode material for asymmetric supercapacitor.[J].Chemical Papers, 2018, 72:2849-2857 (SCI四區, IF:2.146);
11.Y. P. Gao, K. J. Huang, NiCo2S4 materials for supercapacitor applications. [J]. Chemistry-An Asian Journal. 2017,12,1969-1984. (SCI二區, IF:4.839);
10.Y. P. Gao, K. J. Huang, H. L. Shuai, L. Liu, Synthesis of sphere-feature molybdenum selenide with enhanced electrochemical performance for supercapacitor. [J]. Materials Letters, 2017, 209, 319-322. (SCI二區, IF:3.574);
9.Y. P. Gao, Z. B. Zhai, K. J. Huang, Y. Y. Zhang, Energy storage applications of biomass-derived carbon materials: batteries and supercapacitors. [J]. New Journal of Chemistry, 2017,41,11456-11470. (SCI三區, IF:3.925);
8.Y. P. Gao, X. Wu, K. J. Huang, L. L. Xing, Y. Y. Zhang, L. Liu, Two-dimensional transition metal diseleniums for energy storage application: a review of recent developments. [J]. CrystEngComm. 2017, 19, 404-418. ESI高被引論文 (SCI二區, IF:3.756) Highlight;
7.Jing Xu, Qing Liu, Zhong Dong, Lina Wang, Xingchen Xie, Yong Jiang, Zhengnan Wei, Yongping Gao, Yu Zhang, and Kejing Huang. Interconnected MoS2 on 2D Graphdiyne for Reversible Sodium Storage[J]. ACS Applied Materials & Interfaces, 2021, 13(46): 54974-54980. (SCI一區,Top期刊,IF:10.383);
6.Lihui Mao, Qianqian Wang, Yuhao Luo, Yongping Gao. Detection of Ag ions via an anti-aggregation mechanism using unmodified gold nanoparticles in the presence of thiamazole[J]. Talanta, 2021, 222: 121506-121515.(SCI一區, Top期刊,IF:6.556) ;
5.Zhi-Qiang Hou, Hui-Ping Yue, Yuan-Chun Qi, Yong-Ping Gao, Xiao-Lu Jia, Zhi-Guang Yang, Ning-Ning Liu, Ke-JingHuang. NiCo2S4 nanoparticles grown on reduced graphene oxides for high-performance asymmetric supercapacitors[J]. Advanced Powder Technology, 2020, 31(4): 1603-1611.(SCI二區,IF:4.969);
4.Zhi-Guang Yang, Ning-Ning Liu, Shuo Dong, Feng-Shou Tian, Yong-Ping Gao, Zhi-Qiang Hou, Supercapacitors based on free-standing reduced graphene oxides/carbon nanotubes hybrid films. [J]. SN Applied Sciences (2019) 1:47;
3.Z. Q. Hou, F. S. Tian, Y. P. Gao, W. Wu, L. X. Yang, X. L. Jia, K. J. Huang, Nickel cobalt hydroxide/reduced graphene oxide/carbon nanotubes for high performance aqueous asymmetric supercapacitors. [J]. Journal of Alloys and Compounds, 2018, 753, 525-531. (SCI二區, Top期刊,IF:6.371);
2.Hui Lu, Jinna Zhang, Huan Zhang, Jianzhou Gui, Yongping Gao, Perovskite type Co/Ti substituted Ba0.15Sr0.85FeO3δ as oxygen storage materials for oxygen enrichment application: structural, sintering, and temperature swing oxygen sorption uptake properties at high temperatures, Journal of Thermal Analysis and Calorimetry, 2022;
1.Ke Yan, Juan Wu, Ying-Ying Wang, Ning-Ning Liu, Ji-Tao Li, Yong-Ping Gao & Zhi-Qiang Hou. An asymmetric supercapacitor based on NiCo2O4 nanosheets as anode and partially reduced graphene oxides/carbon nanotubes as cathode[J]. Chemical Papers, 2020, 74(2): 591-599. (SCI四區,IF:2.146)。
獲獎記錄
2025年6月, 榮獲河南省教育廳科技成果獎優秀科技論文獎二等獎
2024年6月, 榮獲河南省教育廳科技成果獎優秀科技論文獎二等獎
2023年6月, 榮獲河南省教育廳科技成果獎優秀科技論文獎一等獎
2022年6月, 2022年度河南省教育廳科技成果獎二等獎
2020年5月, 2020 年度河南省教育廳科技成果獎優秀科技論文獎二等獎
2018年5月, 榮獲信陽市第十屆青年科技獎
社會任職
2022年6月,河南省科學技術協會評審諮詢專家庫入庫專家;
2020年11月,被信陽市科學技術協會聘為信陽市第十一屆自然科學優秀學術論文專家評審委員會委員;
2019年11月,被信陽市科學技術協會聘為信陽市第十一屆青年科技獎專家委員會委員。
所獲榮譽
信陽市第十屆青年科技獎;
河南省文明教師;
河南省高等學校青年骨幹教師
信陽市學術技術帶頭人;
河南省教育廳學術技術帶頭人;
信陽市高層次人才(D類)
人物履歷
2011.08-2025.06 信陽學院
2025.07-至今北部灣大學