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碩士生導(dǎo)師、教授名單

謝愛(ài)娟

發(fā)布時(shí)間:2020-03-05瀏覽次數(shù):3140

正高級(jí)實(shí)驗(yàn)師:謝愛(ài)娟

教育經(jīng)歷

  • 2003/06 – 2008/06,上海外國(guó)語(yǔ)大學(xué),碩士

  • 1995/09 – 1999/06,南京師范大學(xué),學(xué)士

工作經(jīng)歷

  • 199212-至今 常州大學(xué)

個(gè)人榮譽(yù)

  • 2025年“萊帕克”杯第九屆江蘇省大學(xué)生化學(xué)化工實(shí)驗(yàn)競(jìng)賽一等獎(jiǎng)指導(dǎo)老師

  • 2021?2025常州大學(xué)優(yōu)秀畢業(yè)論文指導(dǎo)教師

  • 2022 年度普通高等學(xué)校優(yōu)秀本專(zhuān)科畢業(yè)論文三等獎(jiǎng)

研究方向

  • 電化學(xué)、環(huán)境催化、物理化學(xué)

教學(xué)科研項(xiàng)目

  • 虛實(shí)結(jié)合的實(shí)驗(yàn)教學(xué)模式研究與實(shí)踐(GJY2020061) 負(fù)責(zé)人

  • STEAM 理念、開(kāi)展新工科建設(shè) 再探實(shí)驗(yàn)教學(xué)對(duì)工科學(xué)生能力的培養(yǎng)(SHJY201801) (SHJY201801) 負(fù)責(zé)人

  • 協(xié)同視閾下高職園區(qū)高校與社會(huì)實(shí)踐育人模式研究,常州大學(xué)高等職業(yè)教育研究院項(xiàng)目(CDGZ2015005) 負(fù)責(zé)人

  • 基于CDIO理念構(gòu)建“五位一體”基礎(chǔ)化學(xué)實(shí)驗(yàn)教學(xué)體系,常州大學(xué)教育研究課題(NO.2014075),負(fù)責(zé)人

  • 凹凸棒石基低溫光輔助脫硝催化材料及其關(guān)鍵技術(shù)研究(BE2016654)主要參與人

  • 鈣鈦礦/凹凸棒石催化燃燒CVOCs催化材料及關(guān)鍵技術(shù)(CE20205052) 主要參與人

  • 凹凸棒石基低溫光輔助脫硝催化材料及其關(guān)鍵技術(shù)研究(CE20165022)主要參與人

  • 用于高效選擇性化學(xué)反應(yīng)的石墨烯磁性催化劑的研制(BY2015027-18)主要參與人

  • 基于導(dǎo)電高分子電吸附-絡(luò)合的協(xié)同效應(yīng)處理重金屬離子廢水的研究(BY2014037-18) (BY2014037-18) (BY2014037-18) 參與人

3年發(fā)表的SCI 論文

  • High-capacity binder-free supercapacitor electrodes obtained from copper foam loaded with large layer spacing NiMn-LDH. Journal of Energy Storage, 133 (2025) 118025.

  • Advanced Mn-doped CuCo2O4-multiwalled carbon nanotubes for the electrocatalytic oxidation of glycerol. Materials Science in Semiconductor Processing, 200 (2025)109935.

  • In situ synthesis of NiMn-LDH-decorated CuCo2O4 core–shell nanoflowers on copper foam for high-performance supercapacitor. Dalton Transactions, 54(2025)16183–16194.

  • ZnCo(OH)F-derived ZnCo2O4/MWCNTs composite for sensitive detection of 4-nitrophenol. Microchemical Journal. 216 (2025) 114612.

  • Three-Dimensional Mn-Substituted CuCo2S4-MWCNT for Electrocatalytic Oxidation of Glycerol. Langmuir, 41(2025)23917?23931.

  • ZIF-67anchored on sulfur-doped carbon nitride as oxygen evolution electrocatalysts. Diamond & Related Materials, 154 (2025) 112193.

  • Nitrogen and sulfur co-doped porous carbon with metal-organic framework derived Co3O4@NiCo2O4 core-shell nanocomposites for simultaneous detection of mesalazine and acetaminophen. Microchemical Journal, 208 (2025) 112633.

  • Carbon dots modified hydrange-shaped ZnCo(OH)F used as a flexible electrode for sensitive detection of dopamine and uric acid. Colloids and Surfaces A: Physicochemical and Engineering Aspects,705 (2025) 135695.

  • Dual-material synergy in CuMn2O4@CuMn2S4 core-shell nanostructures: Towards high energy density supercapacitors. Journal of Alloys and Compounds, 1014 (2025) 178708. Oxygen-vacancy-enriched CuMn2O4@CoAl2O4@CoAl layered double hydroxide nickel foam serving as a sophisticated electrode material for asymmetric supercapacitors. Journal of Alloys and Compounds, 1005 (2024) 176105.

  • Electrochemical sensor based on ZIF-8/67 derived ZnCo2O4@Fe3O4/ MWCNTs with core - shell structure for simultaneous detection of paraminophen and paracetamol. Microchemical Journal, 204 (2024) 111101.

  • NiCo-layered double hydroxides /Co9S8 with heterogeneous structure as ultra-high performance electrocatalyst for oxygen evolution reaction. International Journal of Hydrogen Energy, 51(2024)349?361

  • Effect of different preparation technologies of CuCo2O4 on electrocatalytic activity for oxidation of alcohols. Journal of Solid State Chemistry, 332 (2024) 124574.

  • Zhong ZY, Zhang QH, Zhu YY, et al. Research progress of Co-based spinel oxide materials for direct methanol fuel cells. New Journal of Chemistry, 48 (2024) 7148-7167.

  • CuFe0.4Mn1.6O4-MWCNT composites synthesized by solvothermal method as high-performance asymmetric supercapacitors. Journal of Alloys and Compounds, 965(2023)171409.

  • Nickel nanoparticle-embedded N-doped carbon catalysts formed by MOF derivatives for the oxygen evolution reaction. New Journal of Chemistry, 47(2023) 12799.

  • Design of NiCo2O4 nanoparticles in-situ grown on lignin-derived porous carbon and MWCNTS composites for supercapacitors. Diamond & Related Materials, 136(2023)110079.

  • Electrochemical sensor based on MOF derived LaFexNi(1-x)O3 using carbon spheres as the template for simultaneous determination of p-aminophenol and paracetamol. Microchemical Journal, 191(2023)108851.

  • Highly sensitive and selective electrochemical sensor based on ZIF-67-derived Co3O4-LaMn0.5Ni0.5O3/MWCNTs for simultaneous detection of protocatechuic acid and ascorbic acid. Surfaces and Interfaces, 36(2023)102550.

  • CeO2 supported MOFs derived LaBxFeyO3 (B=Mn, Co) perovskite catalysts for degradation of toluene. Environmental Science and Pollution Research, 30(15)45414-45427.

  • 3D Sulfur and nitrogen doped carbon materials Ni-MOF electrocatalysts for oxygen evolution reaction. Ionics, 29(2023):1077-1087.

  • 3D RGO/MWCNTs-loaded bimetallic-organic gel derived ZrFeOx as an electrochemical sensor for simultaneous detection of dopamine and paracetamol. Journal of Alloys and Compounds, 938 (2023) 168647.

  • Effect of A, B site cation on the catalytic activity of La1?xAxMn1 yByO3 (A = Ce, B = Ni) perovskite type oxides for toluene oxidation. Environmental Science and Pollution Research, 30(20233) 36993-37003.

  • Well-matched core-shell NiO@LaMnO3/MWCNTs p-p homotype heterojunction for ascorbic acid detection. Well-matched core–shell NiO@LaMnO3/MWCNTs p-p homotype heterojunction for ascorbic acid detection. Journal of Electroanalytical Chemistry, 928 (2023) 117080.

  • CuCo-MOF/MoS2 as a High-performance electrocatalyst for oxygen evolution reaction. Electrocatalysis, 14(2023):333-340.

近幾年發(fā)表的教研論文

  • 物理化學(xué)實(shí)驗(yàn)安全教育實(shí)踐探索, 化學(xué)教育(中英文). 2022,43(10):62-66.

  • 新工科視域下虛實(shí)結(jié)合的物理化學(xué)實(shí)驗(yàn)教學(xué)改革探索. 化工高等教育. 2022, 39(04)68-73,115.

  • 踐行STEAM理念 開(kāi)展新工科建設(shè)——電化學(xué)實(shí)驗(yàn)教學(xué)對(duì)工科學(xué)生創(chuàng)意能力的培養(yǎng). 化學(xué)教育(中英文), 2020 ,41 (20) : 49-54.

近幾年的授權(quán)專(zhuān)利

  • 有機(jī)雜化鈣鈦礦/金屬有機(jī)框架材料的制備方法及應(yīng)用ZL 202210036447.9

  • 催化劑的制備方法及其在催化氧化降解甲苯中的應(yīng)用202110789748.4

  • 顆粒狀CuCo-MOF/MoS2催化劑及其制備方法和應(yīng)用 ZL202110763445.5.

  • 用于制備檢測(cè)咖啡酸的電化學(xué)傳感器的多壁碳納米管/四氧化三鈷ZL202011383477.4

  • 一種雜原子摻雜碳材料/Ni-MOF復(fù)合電催化劑的制備 ZL 201811044661.9

  • 一種γ-Fe2O3納米顆粒修飾nf-MnO2/ATP低溫脫硝催化劑  ZL 201810281773.X

  • 一種凹凸棒石負(fù)載鈰摻雜MnTiOX三元組分低溫脫硝催化劑及制備方法ZL 201810262698.2

  • 一種Mn基凹凸棒石催化劑的制備及表征 ZL 201810182791.2



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