陳繪麗

陳繪麗,女,理學博士,教授,博士生導師。主持國家級項目3項,省市級項目及橫向項目10餘項,總經費達590餘萬元。以第一作者或通訊作者發表SCI論文60餘篇。以第一完成人獲山西省科學技術獎自然科學三等獎1項。入選山西省高等學校優秀青年學術帶頭人,山西省高校131領軍人才工程-優秀中青年拔尖創新人才和山西大學“青年英才”支持計畫。受邀為國家自然科學基金通訊評審人和多種SCI期刊審稿人。研究方向圍繞“雙碳”目標,瞄準山西省地方優勢資源,以發展清潔能源為導向,研究氫氣、低濃度煤層氣、焦爐煤氣、氨氣的清潔高效利用技術,實現節能減排的研究目標。

基本介紹

  • 中文名:陳繪麗
  • 畢業院校:山西大學 
  • 學位/學歷:博士 
人物經歷,研究方向,主要成就,主持項目,授權專利,學術論文,學術會議,

人物經歷

2003年博士畢業於山西大學,師從楊頻教授,後留校工作。
2006-2008年赴復旦大學開展博士後研究,師從黃春輝院士和李富友教授。
2014-2015年赴澳大利亞科廷大學訪學,合作導師邵宗平教授。

研究方向

(1) 乏風催化氧化利用。
(2) 電化學合成氨。
(3) 氫氣/低濃度煤層氣(瓦斯)/焦爐煤氣/氨氣的固體氧化物燃料電池發電。
(4) CO2電解。

主要成就

主持項目

(1) 2024年度呂梁引進高層次科技人才專項(2024RC06)低濃度瓦斯催化氧化熱利用技術研究。
(2)山西省科技成果轉化引導專項項目(202204021301010)煤礦乏風及低濃度瓦斯催化氧化技術。
(3)山西省自然科學基金面上項目(202103021224028)氨氣為燃料的質子固體氧化物燃料電池 電極材料研究。
(4)山西省“1331工程”低濃瓦斯梯度多用途利用工程研究中心建設項目(PT 201807)。
(5)中央引導地方科技發展專項資金項目(YDZX20191400002916): 低濃度瓦斯梯度多用途利用。
(6)山西省自然科學基金(2016011025)高溫焦爐煤氣電化學直接發電研究。
(7)山西省留學歸國人員基金(2016-010)煤層氣電化學直接發電研究。
(8) 材料化學工程國家重點實驗室開放基金(KL16-03)套用於低濃度煤層氣的固體氧化物燃料電池陽極催化劑研究。
(9) 國家自然科學基金面上項目 (21071092):糖尿病酮症酸中毒預警因子-β-羥丁 酸的識別檢測研究。
(10) 國家自然科學基金 (20601018):剪式錯配和wobble錯配特異識別的二維核磁和分子模擬研究,國家自然科學基金。
(11) 山西省青年科學基金 (2009021006-3):同型半胱氨酸的時間分辨磷光光譜檢測研究。
(12) 山西省高等學校青年學術帶頭人資助項目。
(13) 山西大學“青年英才”計畫支持項目。

授權專利

(1) 陳繪麗,閆菁,一種將低濃煤層氣利用中高溫燃料電池發電的方法,中國發明專利, 專利號:ZL 202011099142.X
(2) 陳繪麗,鄭立星,張培華,一種低濃度瓦斯階梯加熱裝置, 實用新型專利, 專利號:ZL 201921759098.3
(3) 鄭立星,陳繪麗,張培華,一種餘熱階梯利用的低濃度瓦斯穩態催化氧化裝置, 中國發明專利, 專利號:ZL 201910997535.3
(4) 陳繪麗,王芬,常宏,李思殿,一種具有抗積碳功能的固體氧化物燃料電池,中國發明專利, 專利號: ZL 201510540168.6
(5) 陳繪麗,常宏,閆菁,李思殿,一種電解質支撐的固體氧化物燃料電池鋯基電解質薄膜的製備方法,中國發明專利, 專利號: ZL 201811056407.0。
(6) 陳繪麗,常宏,李思殿,一種高溫電解CO2的電解池陰極材料及其製備方法,中國發明專利, 專利號:ZL 201811462321.8。

學術論文

(以第一作者或通訊作者發表)
(1) Kaihui Wang, Wenyan Zan, Yawei Li, Sidian Li, Zongping Shao, Huili Chen*, A Synergistic Hybrid of Sr3B2O6‐SryTi0.6Fe0.4O3‐δ (y < 1) as a Cathode for High‐Performance Electrochemical Ammonia Synthesis via Protonic Ceramic Electrolysis Cells. Adv. Funct. Mater. (2024), 2418404.
(2) Wenhua Guo, Yawei Li, Si-dian Li, Zongping Shao, Huili Chen*,Synergistic effect of Bi and Fe for suppressing hydrogen evolution reaction (HER) and enhancing electrochemical nitrogen reduction reaction (eNRR) performance, Chemical Engineering Journal 498 (2024) 155124.
(3) Jing Yan, Huili Chen*, Power generation via solid oxide fuel cell using ex-reformed oxygen- containing low-concentration methane, Materials Chemistry and Physics 313 (2024) 128736.
(4) Wenhua Guo, Yawei Li, Si-Dian Li, Zongping Shao, Huili Chen*, Ammonia synthesis via a protonic ceramic electrolysis cell (PCEC) using LaCu0.1Fe0.9O3-δ catalyst, J. Mater. Chem. A, 11(2024), 1200-1210.
(5) Jing Yan, Huili Chen*, Ya Wei Li, Si-Dian Li, Zongping Shao, Bifunctional electrocatalysts Pr0.5Sr0.5Cr0.1Fe0.9−xNixO3−d (x = 0.1, 0.2) for the HOR and ORR of a symmetric solid oxide fuel cell, J. Mater. Chem. A, 11(2023), 21839-21849.
(6) Hong Chang, Wenjuan Tian, Huili Chen*, Si-Dian Li, Zongping Shao, Improved CO2 electrolysis by a Fe nanoparticle-decorated (Ce, La, Sr)(CrFe)O3-δ perovskite using a combined strategy of lattice defect-building, Electrochimica Acta 439 (2023) 141699
(7) Kaihui Wang, Huili Chen*, Si-Dian Li, Zongping Shao,SrxTi0.6Fe0.4O3-δ (x = 1.0, 0.9) catalysts for ammonia synthesis via proton-conducting solid oxide electrolysis cells (PCECs),J. Mater. Chem. A, 10(2022), 24813.
(8) Xiuqing Lv, Huili Chen*, Wei Zhou, Si-Dian Li, Fangqin Cheng, Zongping Shao, SrCo0.4Fe0.4Zr0.1 Y0.1O3-δ, A new CO2 tolerant cathode for protonconducting solid oxide fuel cells, Renewable Energy 185 (2022) 8-16.
(9) Xiuqing Lv, Huili Chen*, Wei Zhou, Si-Dian Li, Zongping Shao, A CO2-tolerant SrCo0.8Fe0.15Zr0.05O3-δ cathode for proton-conducting solid oxide fuel cells, J. Mater. Chem. A, 8(2020) 11292-11301.
(10) Xiuqing Lv, Huili Chen*, Wei Zhou, Fangqin Cheng, Si-Dian Li, Zongping Shao, Direct-methane solid oxide fuel cells with an in situ formed NieFe alloy composite catalyst layer over NieYSZ anodes, Renewable Energy 150 (2020) 334-341.
(11) Xiuqi Yuan, Huili Chen*, Wenjuan Tian, Jing Shi, Wei Zhou, Fangqin Cheng, Si-Dian Li, Zongping Shao, Utilization of low-concentration coal-bed gas to generate power using a core-shell catalyst-modified solid oxide fuel cell, Renewable Energy 147 (2020) 602-609.
(12) Jing Yan, Wenhua Guo, Huili Chen*, Jing Shi, Fangqin Cheng, Si-Dian Li, Zongping Shao, Improvement of solid oxide fuel cell performance by a core shell structured catalyst using low concentration coal bed methane fuel. International Journal of Energy Research 44 (2020) 5516–5526.
(13) Hong Chang, Huili Chen*, Guangming Yang, Wei Zhou, Jianping Bai, Sidian Li, Zongping Shao, Enhanced coking resistance of a Ni cermet anode by a chromates protective layer, Journal of Energy Chemistry, 37(2019) 117-125.
(14) Hong Chang, Jing Yan, Huili Chen*, Guangming Yang, Jing Shi, Wei Zhou, Fangqin Cheng, Si-Dian Li, Zongping Shao, Preparation of thin electrolyte film via dry pressing/heating /quenching/calcining for electrolyte-supported SOFCs, Ceramics International 45 (2019) 9866–9870.
(15) Huili Chen*, Wenhua Guo, Yufang Wu, Guangming Yang, Jing Shi, Wei Zhou, Jianping Bai, Si‐Dian Li, Zongping Shao, A strategy to reduce the impact of tar on a Ni‐YSZ anode of solid oxide fuel cells, International Journal of Energy Research, 43(2019) 3038–3048.
(16) Hong Chang, Huili Chen*, Si-Dian Li, Enhanced coking resistance of Ni cermet anodes for solid oxide fuel cells based on methane on-cell reforming by a redox-stable double-perovskite Sr2MoFeO6-δ, International Journal of Energy Research, 43(2019) 2527–2537.
(17) Huili Chen*, Yufang Wu, Guangming Yang, Jing Shi, Wei Zhou, Jianping Bai, Si-Dian Li, Zongping Shao, Direct Power Generation from Low Concentration Coal-Bed Gas by a Catalyst-Modified Solid Oxide Fuel Cell, Chemelectrochem, 5(2018) 1459-1466.
(18) Hong Chang, Huili Chen*, Zongping Shao, Jing Shi, Jianping Bai, Si-Dian Li, In situ fabrication of (Sr,La)FeO4 with CoFe alloy nanoparticles as an independent catalyst layer for direct methane-based solid oxide fuel cells with a nickel cermet anode, J. Mater. Chem. A, 4 (2016)13997 -14007.
(19) Huili Chen, Fen Wang, Wei Wang, Daifen Chen, Si-Dian Li, Zongping Shao*, H2S poisoning effect and ways to improve sulfur tolerance of nickel cermet anodes operating on carbonaceous fuels. Applied Energy, 179(2016) 765–777.
(20) Xiaomiao Wang, Huili Chen*, Hua Li, An optical material for the detection of β-hydroxybutyrate based on a terbium complex, Optical Materials, 36(2014) 809-812.
(21) Huili Chen*, Xiaokai Li, Ruichun Bai, Yanbo Wu, Yingfang. Fan, Jianbin Chao,Discrimination of Cys from Hcy by an Iridium(III) Complex Based on Time-Dependent Luminescence, Organometallics, 32(2013), 6226-6231.
(22) Ruichun Bai, Wei Gao, Shengdi Bai*, Fengling Yang, Huili Chen*, A Novel Fluorescent Fe3+ Sensor Based on a Europium Complex, Optical Materials, 35(2013), 833-836.
(23) Huili Chen*, Xiaokai Li, Yanbo Wu, Wei Gao, Ruichun Bai, A ruthenium(II) complex with environment-responsive dual emission and its application in the detection of cysteine/homocysteine, Dalton Trans., , 41(2012), 13292-13297.
(24) Huili Chen*, Wei Gao, Miaoli Zhu, Hongfei Gao, Jinfang Xue, Yingqi Li, A highly selective OFF–ON fluorescent sensor for zinc in aqueous solution and living cells. Chem.Commun., 46(2010), 8389–8391.
(25) Liqin Xiong, Qiang Zhao, Huili Chen*, Yanbo Wu, Zesheng Dong, Zhiguo Zhou, Fuyou Li*, Phosphorescence Imaging of Homocysteine and Cysteine in Living Cells Based on a Cationic Iridium(III) Complex, Inorg. Chem. 49(2010), 6402–6408.
(26) Huili Chen*, Wei Gao, Fengmin Zhang, Chunjiao Dou, Pin Yang, The ligand-structure-selective binding of oligonucleotide by cobalt complexes. Inorg. Chem. Commun. 13(2010),310-313.
(27) Huili Chen*, Chunjiao Dou , Yanbo Wu, Hua Li, Xiaoli Xi, Pin Yang, Structure-specific binding of [Co(phen)2(HPIP)]3+ to a DNA duplex containing sheared G:A mismatch base pairs, Journal of Inorganic Biochemistry 103 (2009) 827–832.
(28) Huili Chen *, Chunjiao Dou, Yanbo Wu, Xiaoli Xi, Wei Gao, Pin Yang, The terminal binding of base mismatched oligonucleotide d(CCGAATGAGG)2 by [Co(phen)2(DPQ)]Cl3, Inorganic Chemistry Communications 12 (2009) 122–124.
(29) Huili Chen, Qiang Zhao, Yanbo Wu, Fuyou Li,* Hong Yang, Tao Yi, Chunhui Huang, Selective Phosphorescence Chemosensor for Homocysteine Based on an Iridium(III) Complex, Inorg. Chem. 46(2007), 11075−11081.
(30) Huili Chen, Pin Yang, Caixia Yuan, Xiaohua Pu, Study on the Binding of Base-Mismatched Oligonucleotide d(GCGAGC)2 by Cobalt(III) Complexes, Eur. J. Inorg. Chem. 2005, 3141–3148.

學術會議

(1) 2025國際氫能與燃料電池大會,2025.1.10-12,安徽合肥,邀請報告。
(2) 2024中國燃料電池產業發展高峰論壇暨第二屆江蘇燃料電池產學研技術研討會,2024.4.26-29,江蘇南京, 邀請報告。
(3) 首屆世界能源材料大會,2023.11.25-27日,廣東深圳,特邀報告。
(4) 第四屆全國固體氧化物電池青年學術論壇暨燃料電池專題研討會2023.10.13-15日,湖北武漢,邀請報告。
(5) 第四屆國際電化學能源系統大會,2023.10.21-23日,江西南昌,邀請報告。
(6) 第三屆國際電化學能源系統大會,2022.7.27-30,寧夏銀川,邀請報告。
(7) 中國化工年會稀土催化與過程研討會,2019.10.19,山東青島,口頭報告。
(8) 第十屆全國催化劑製備科學與技術研討會,2018.12.1-3,四川成都,口頭報告。
(9) 第18屆全國固態離子學學術會議暨國際電化學儲能技術論壇,2016.11.3-7,廣西桂林,口頭報告。

相關詞條

熱門詞條

聯絡我們