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本科畢業(yè)論文-基于金屬有機(jī)框架結(jié)構(gòu)制備金屬氧化物@多孔碳復(fù)合材料(編輯修改稿)

2025-02-12 16:50 本頁面
 

【文章內(nèi)容簡介】 Q, Hu Y J, et al . Direct electrochemistry of glucose oxidase assembled on graphene and application to glucose detection, Electrochimica Acta2022, 55, 8606–8614 [4]Sivakumar Balakrishnan,Alison and shane .Chem,2022,21,1920719209 [5] Sekretaryova A N, Vokhmyanina D V, Chulanova T O, Reagentless Biosensor Based on Glucose Oxidase Wired by theMediator Freely Diffusing in Enzyme Containing Membrane, Anal. Chem. 2022, 84, 1220?1223 [6] 國帥,呂永根,楊常玲。多孔碳模板法制備 及其雙電層性能研究,: 1002 087 X(2022)04 0406 03 [7], ,Carbon Materials as Adsorbents in Aqueous Chemistry and Physics of Carbon。,Marcel Dekker。New York,2022,Chapter4. [8]Wang Y T, Yu L, Zhu Z Q , Zhang J, Zhu J Z, Fan C H Improved enzyme immobilization for enhanced bioelectrocatalytic activity of glucose sensor, Sensors and Actuators B 2022 ,136, 332. [9] Jasuja K, Berry V, Implantation and Growth of Dendritic Gold Nanostructures on Graphene Derivatives: Electrical Property Tailoring and Raman Enhancement. ACS Nano 2022, 3, 2358?2366 [10]Zhu C, Guo S, Zhai Y, Dong S, LayerbyLayer SelfAssembly for Constructing a Graphene/Platinum Nanoparticle ThreeDimensional Hybrid Nanostructure Using Ionic Liquid as a 2022, 26, 7614?7618. [11]戴春嶺,王先友,黃慶 華,李俊。新型多孔碳材料 — 碳化物骨架碳; PROGRESSINCHEMISTRY 化學(xué)進(jìn)展 Jan,2022 [12]Wang J W, Wang L P, Di J W, etal. Disposable biosensor based on immobilization of glucose oxidase at gold nanoparticles electrodeposited on indium tin oxide electrode [J]. Sens. Actuators. 13 B 2022, 135: 283288. [13]Wang H C, Wang X S, Zhang X Q, etal. A novel glucose biosensor based on the immobilization of glucose oxidase onto gold nanoparticlesmodified Pb nanowires [J]. , 25: 142146. [14]Wen T, Qu F, Li N B, silver nanoclusters as a fluorescence probe for sensitive detection of hydrogen peroxide and glucose [J]. , 749: 56– 62. [15]Xu C, Sun F L, Gao H, Nanoporous platinum–cobalt alloy for electrochemical sensing forethanol, hydrogen peroxide, and glucose [J]. 2022, 8: 232505. [16]Zhang Z, Gua S Q, Ding Y P, etal. A novel nonenzymatic sensor based on modified electrode for hydrogen peroxide and glucose [J]. Anal. Chim. Acta 2022, 745: 112– 117. [17]Boa X J, Ndamanishab J C, Jing B, etal. Nonenzymatic amperometric sensor of hydrogen peroxide and glucose based on Pt nanoparticles/ordered mesoporous carbon nanoposite [J]. Talanta 2022, 82: 85–91. [18]Liu M M, Liu R, Chen W, Graphene wrapped Cu2O nanocubes: Nonenzymaticelectrochemicalsensor for the detection of glucose and hydrogenperoxide with enhanced stability [J]. Biosens. Bioelectron. 2022, 45: 206–212. [19]Yang H W, Hua M Y, Chen S L, etal. Reusable sensor based on high magization carboxylmodified graphene oxide with intinsic hydrogen peroxide catalytic activity for hydrogen peroxide and glucose detection [J]. Biosens. Bioelectron. 2022, 41: 172–179. [20]Guo Y J, Li J, Dong S J. Hemin functionalized graphene nanosheetsbased dual biosensor platforms for hydrogen peroxide and glucose [J]. Sens. Actuators. B 2022, 160: 295– 300. [21]Wu B Y, Hou S H, Yu M, etal. Layerbylayer assemblies of chitosan/multiwall carbon nanotubes and glucose oxidase for amperometric glucose biosensor applications [J]. Mater. Sci. Eng. C 2022, 29: 346349. [22]Wang J W, Wang L P, Di J W, etal. Disposable biosensor based on immobilization of glucose oxidase at gold nanoparticles electrodeposited on indium tin oxide electrode [J]. Sens. Actuators. B 2022, 135: 283288. [23]Wang H C, Wang X S, Zhang X Q, etal. A novel glucose biosensor based on the immobilization of glucose oxidase onto gold nanoparticlesmodified Pb nanowires [J]. Biosens. Bioelectron. 2022, 25: 142146. [24]Wen T, Qu F, Li N B, etal. Polyethyleneiminecapped silver nanoclusters as a fluorescence probe for sensitive detection of hydrogen peroxide and glucose [J]. Anal. Chim. Acta 2022, 749: 14 56– 62. [25]Boa X J, Ndamanishab J C, Jing B, etal. Nonenzymatic amperometric sensor of hydrogen peroxide and glucose based on Pt nanoparticles/ordered mesoporous carbon nanoposite [J]. Talanta 2022, 82: 85–91. [26]Liu M M, Liu R, Chen W, Graphene wrapped Cu2O nanocubes: Nonenzymaticelectrochemicalsensor for the detection of glucose and hydrogenperoxide with enhanced stability [J]. Biosens. Bioelectron. 2022, 45: 206–212. 15 致 謝 本論文是在 宋永海 教授的悉心指導(dǎo)下完成的,從論文的選題、實(shí)驗(yàn)設(shè)計(jì)、實(shí)驗(yàn)操作、結(jié)果分析與討論及本論文的最后完成, 他 都花費(fèi)了很多的時(shí)間和精力。宋 老師知識淵博,對學(xué)生所提問題都能做出詳盡回答,平易近人,和藹可親,工作一絲不茍。讓我由衷的欽佩,在此段時(shí)間內(nèi),我受益匪淺在此謹(jǐn)向我敬愛的導(dǎo)師表示我最崇高的敬意和最衷心感謝! 在本論文的工作期間,還得到了眾多師兄師姐的幫助,尤其是 李霞 師姐 、盧星萍師姐 在大學(xué)四年里,我還得到了許多同班同學(xué)的幫助,在此感謝他們對我的支持和幫助。 同時(shí), 還要感謝在江西師范大學(xué)幫助我,教導(dǎo)過我的 宋永海 、傅海萍、 王玉玲、 陳 受惠 、彭以元、王濤、劉曉玲、 盧章輝 、章磊、張小亮 、熊麗華、楊振 等老師及學(xué)院領(lǐng)導(dǎo)在畢業(yè)論文完成之時(shí),對四年來所有對我有過無私幫助的人們表示誠摯的謝意! 陳亞琴 2022 年 5 月 16 請您刪除一下內(nèi)容, O(∩ _∩ )O 謝謝?。?! Many people have the same mixed feelings when planning a trip during Golden Week. With heaps of time, the sevenday Chinese 請您刪除一下內(nèi)容, O(∩ _∩ )O 謝謝?。?! National Day holiday could be the best occasion to enjoy a destination. However, it can also be the easiest way to ruin how you feel about a place and you may bee more fatigued after the holiday, due to battling the large crowds. During peak season, a dream about a place can turn to nightmare without careful planning, especially if you travel with children and older people. As most Chinese people will take the holiday to visit domestic tourist destinations, crowds and busy traffic are inevitable at most places. Also to be expected are increasing transport and acmodation prices, with the possibility that
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