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电化学与电分析化学:李启隆学术论文选
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电化学与电分析化学:李启隆学术论文选
作 者: 李启隆 等著
出版时间:2011
丛编项: 李启隆学术论文选
内容简介
《电化学与电分析化学:李启隆学术论文选》是从作者及其学生共同发表的180多篇论文中筛选出来的,是作者及其学生多年科研工作的结晶。内容包括如下五个方面: 1.极谱催化波与络合吸附波及其机理; 2.吸附伏安法及其在药物分析中的应用; 3.金属离子注入修饰电极(包括超微电极)的研制及其药物、DNA和蛋白质的电化学行为; 4.有机官能团离子注入修饰电极及其与纳米技术相结合的DNA和蛋白质电化学; 5.化学修饰电极和生物传感器等。
目录
第一部分 极谱催化波与络合吸附波及其机理研究
1.Catalytic Hydrogen Discharge by Cycloserine in Metal-IonContaining Ammonia Buffer
2.Co(II)-半胱氨酸体系中氢的催化放电的研究
3.铝-邻苯二酚紫络合吸附波的研究
4.铜-丁二酮肟-四硼酸钠体系络合吸附波的研究
5.钛(IV)-铜铁试剂体系络合吸附催化波机理的研究
第二部分 吸附伏安法及其在药物分析中的应用研究
6.Studies on the Polarographic Behaviour of Estazolam
7.Polarographic Behaviour of Antiepilepsirine and ItsApplication
8.Adsorptive Stripping Voltammetry of Bleomycin
9.Studies on Electrochemical Behaviour of Cephalexin
10.Studies on the Adsorptive Behaviour of Mazindol and ItsAdsorptive Stripping Voltammetry
11.头孢噻肟钠的降解及其产物伏安行为的研究
12.阿霉素在纳米钴修饰电极上的电化学行为及其应用
13.Studies on the Interaction of Paclitaxel with Tubulin by anElectrochemical Method
14.Voltammetric Behaviour of Puerarin and Its Determination bySingle—Sweep Oscillopolarography
15.抗癌药长春新碱及其与微管蛋白相互作用的电化学研究
第三部分 金属离子注入修饰电极(包括超微电极)的研制及其药物、DNA和蛋白质电化学研究
16.Study of the Voltammetric Behavior of Chloramphenicol and ItsDetermination at a Ni/C Modified Electrode
17.Study on the Voltammetric Behavior of Metronidazole and ItsDetermination at a Co/GC Modified Electrode
18.Voltammetric Behavior of Adriamycin and Its Determination at NiIon-Implanted Electrode
19.Study of the Electrochemical Behavior of Mitoxantrone and ItsDetermination at a Co-C Modified Ultramieroelectrode
20.Studies on the Electrochemical Behavior of Cytochrome C and ItsInteraction with DNA at a Co/GC Ion Implantation
Modified Electrode
2 1.Studies on Electrochemical Behavior of Bleomycin and ItsInteraction with DNA at a Co/GC Ion Implantation
Modified
Electrode
22.Electrochemical Behavior of Adriamycin at a Cobalt IonImplantation Modified Electrode
23.博莱霉索与DNA在镍离子注入修饰电极上的相互作用及其应用
24.吡柔比星在钴离子注入修饰微电极上电化学行为及其应用
25.柔红霉素在钴离子注入修饰玻碳电极上与DNA相互作用
26.镍离子注入修饰电极上米托蒽醌与DNA相互作用的电化学研究
第四部分 有机官能团离子注入修饰电极及其与纳米技术相结合的DNA和蛋白质电化学研究
27.Determination of Daunomycin at a Novel C00H/Indium Tin OxideIon Implantation——Modified Electrode
28.A Novel NH2/ITO Ion ImplantationElectrode:Preparation,Characterization and Application inBioelectrochemistry
29.Direct Electrochemistry of Cytochrome C at a Novel GoldNanoparticles—Attached NH+Ions Implantation-Modified
Indium Tin Oxide Electrode
30.COOH+Ion Implantation—Modified Indium Tin Oxide Electrode forthe Direct Electrochemistry of Cytochrome C
31.Surface Modification of Indium Tin 0xide Films with NH2+IonImplantation:Surface Properties and Gold NanoDarticles
Attachment
第五部分 化学修饰电极及生物传感器等研究
32.功能化纳米金增强的谷胱苷肽电化学检测和巯基识别
33.Electrochemical Study of the Interaction between Cytochrome Cand DNA at a Modified Gold Electrode.
34.自组装膜上细胞色素c的电化学石英晶体微天平实时表征和定量检测
35.柔红霉素修饰的纳米金电极的制备及其对DNA检测
36.Direct Electrochemistry and Superficial Characterization ofDNA—Cytochrome c-MUA Films on Chemically Modified Gold
Surface
37.Direct Electrochemistry and Electrocatalvsis of MyoglobinImmobilized on Gold Nanoparticles/Carbon Nanotubes
Nanohybrid Film
作 者: 李启隆 等著
出版时间:2011
丛编项: 李启隆学术论文选
内容简介
《电化学与电分析化学:李启隆学术论文选》是从作者及其学生共同发表的180多篇论文中筛选出来的,是作者及其学生多年科研工作的结晶。内容包括如下五个方面: 1.极谱催化波与络合吸附波及其机理; 2.吸附伏安法及其在药物分析中的应用; 3.金属离子注入修饰电极(包括超微电极)的研制及其药物、DNA和蛋白质的电化学行为; 4.有机官能团离子注入修饰电极及其与纳米技术相结合的DNA和蛋白质电化学; 5.化学修饰电极和生物传感器等。
目录
第一部分 极谱催化波与络合吸附波及其机理研究
1.Catalytic Hydrogen Discharge by Cycloserine in Metal-IonContaining Ammonia Buffer
2.Co(II)-半胱氨酸体系中氢的催化放电的研究
3.铝-邻苯二酚紫络合吸附波的研究
4.铜-丁二酮肟-四硼酸钠体系络合吸附波的研究
5.钛(IV)-铜铁试剂体系络合吸附催化波机理的研究
第二部分 吸附伏安法及其在药物分析中的应用研究
6.Studies on the Polarographic Behaviour of Estazolam
7.Polarographic Behaviour of Antiepilepsirine and ItsApplication
8.Adsorptive Stripping Voltammetry of Bleomycin
9.Studies on Electrochemical Behaviour of Cephalexin
10.Studies on the Adsorptive Behaviour of Mazindol and ItsAdsorptive Stripping Voltammetry
11.头孢噻肟钠的降解及其产物伏安行为的研究
12.阿霉素在纳米钴修饰电极上的电化学行为及其应用
13.Studies on the Interaction of Paclitaxel with Tubulin by anElectrochemical Method
14.Voltammetric Behaviour of Puerarin and Its Determination bySingle—Sweep Oscillopolarography
15.抗癌药长春新碱及其与微管蛋白相互作用的电化学研究
第三部分 金属离子注入修饰电极(包括超微电极)的研制及其药物、DNA和蛋白质电化学研究
16.Study of the Voltammetric Behavior of Chloramphenicol and ItsDetermination at a Ni/C Modified Electrode
17.Study on the Voltammetric Behavior of Metronidazole and ItsDetermination at a Co/GC Modified Electrode
18.Voltammetric Behavior of Adriamycin and Its Determination at NiIon-Implanted Electrode
19.Study of the Electrochemical Behavior of Mitoxantrone and ItsDetermination at a Co-C Modified Ultramieroelectrode
20.Studies on the Electrochemical Behavior of Cytochrome C and ItsInteraction with DNA at a Co/GC Ion Implantation
Modified Electrode
2 1.Studies on Electrochemical Behavior of Bleomycin and ItsInteraction with DNA at a Co/GC Ion Implantation
Modified
Electrode
22.Electrochemical Behavior of Adriamycin at a Cobalt IonImplantation Modified Electrode
23.博莱霉索与DNA在镍离子注入修饰电极上的相互作用及其应用
24.吡柔比星在钴离子注入修饰微电极上电化学行为及其应用
25.柔红霉素在钴离子注入修饰玻碳电极上与DNA相互作用
26.镍离子注入修饰电极上米托蒽醌与DNA相互作用的电化学研究
第四部分 有机官能团离子注入修饰电极及其与纳米技术相结合的DNA和蛋白质电化学研究
27.Determination of Daunomycin at a Novel C00H/Indium Tin OxideIon Implantation——Modified Electrode
28.A Novel NH2/ITO Ion ImplantationElectrode:Preparation,Characterization and Application inBioelectrochemistry
29.Direct Electrochemistry of Cytochrome C at a Novel GoldNanoparticles—Attached NH+Ions Implantation-Modified
Indium Tin Oxide Electrode
30.COOH+Ion Implantation—Modified Indium Tin Oxide Electrode forthe Direct Electrochemistry of Cytochrome C
31.Surface Modification of Indium Tin 0xide Films with NH2+IonImplantation:Surface Properties and Gold NanoDarticles
Attachment
第五部分 化学修饰电极及生物传感器等研究
32.功能化纳米金增强的谷胱苷肽电化学检测和巯基识别
33.Electrochemical Study of the Interaction between Cytochrome Cand DNA at a Modified Gold Electrode.
34.自组装膜上细胞色素c的电化学石英晶体微天平实时表征和定量检测
35.柔红霉素修饰的纳米金电极的制备及其对DNA检测
36.Direct Electrochemistry and Superficial Characterization ofDNA—Cytochrome c-MUA Films on Chemically Modified Gold
Surface
37.Direct Electrochemistry and Electrocatalvsis of MyoglobinImmobilized on Gold Nanoparticles/Carbon Nanotubes
Nanohybrid Film
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