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电化学生物传感器在细胞活性氧和活性氮检测中的应用研究
商品编号:8089236
ISBN:9787502499761
出版社:冶金工业出版社
作者: 高丽霞, 王小登著
出版日期:2024-09-01
开本:24
装帧:暂无
中图分类:Q2
页数:165
册数:1
大约重量:470(g)
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库存:5
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预计72小时发货
甲虎价: 35.88 (4.6折)
原价:¥78.00
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本书紧密围绕活性氧电化学生物传感器, 重点叙述了超氧阴离子电化学传感器、一氧化氮电化学传感器和过氧化氢电化学传感器的制备与性能研究, 以及当前最新的研究成果。全书共分为5章, 第1章绪论, 第2章为超氧阴离子电化学传感器在细胞超氧阴离子检测中的应用研究, 第3章为rGo-CeO2电化学传感器在细胞NO检测中的应用研究, 第4章为过氧化氢电化学传感器在细胞生物学中的应用研究, 第5章为活性氧电化学传感器在细胞生物学中的应用研究展望。
目 录 第1章 绪论·························································· 1 1.1引言·························································· 1 1.1.1电化学生物传感器概述······································· 3 1.1.2电化学生物传感器的发展现状································· 4 1.1.3电化学生物传感器的发展趋势································· 6 1.1.4活性氧的生物学功能··········································7 1.1.5活性氧电化学传感器的发展进程······························· 9 参考文献····························································· 11 第2章 超氧阴离子电化学传感器在细胞超氧阴离子检测中的应用研究········12 2.1 引言························································· 12 2.1.1 超氧阴离子的生物学功能···································13 2.1.2 超氧阴离子电化学传感器的研究现状·························15 2.2 2.2 CNTDNA@Mn3(PO4)2电化学传感器的构建·························16 2.2.1 CNTDNA@Mn3(PO4)2纳米复合材料的制备···················· 17 2.2.2 CNTDNA@Mn3(PO4)2电极的制备···························· 20 2.2.3 CNTDNA@Mn3(PO4)2电极材料的表征························ 24 2.2.4 CNTDNA@Mn3(PO4)2电极的性能分析························28 2.2.5 CNTDNA@Mn3(PO4)2电极对O2??的灵敏度检测················32 2.3 CNTDNA@Mn3(PO4)2电化学传感器在抗肿瘤药物研究的应用·········33 2.4 新型超氧阴离子电化学传感器的研究现状··························48 2.5 结论··························································48 参考文献·····························································52 第3章 rGO–CeO2电化学传感器在细胞NO检测中的应用研究·············· 55 3.1 引言··························································56 3.1.1 一氧化氮的生物学功能·····································57 3.1.2 一氧化氮电化学传感器的研究现状···························59 3.23.2 rGO–CeO2电化学传感器的构建·································· 60 3.2.1 rGO–CeO2纳米复合材料的制备······························ 62 3.2.2 rGO–CeO2电极的制备······································ 64 3.2.3 rGO–CeO2电极材料的表征·································· 66 3.2.4 rGO–CeO2电极的性能分析···································68 3.2.5 rGO–CeO2电极对NO的灵敏度检测···························70 3.3 rGO–CeO2电化学传感器在细胞释放NO检测中的应用研究···········72 3 3.4 新型一氧化氮电化学传感器的研究现状····························79 3.5 结论··························································80 参考文献·····························································82 第4章 过氧化氢电化学传感器在细胞生物学中的应用研究··················83 4.1引言··························································86 4.1.1 过氧化氢生物学功能········································87 4.1.2 过氧化氢电化学生物传感器的研究现状························90 4.2 过氧化氢电化学传感器在乳腺癌细胞中的应用研究··················91 4.2.1 电极的制备················································95 4.2.2 双组分电极的电化学特性和评估······························98 4.2.3 双组分电极对乳腺癌细胞中过氧化氢的灵敏度·················105 4.34.3 分层Mo2C@MoS2纳米棒电化学传感器在癌细胞过氧化氢检测中的应用研究···························································108 4.4 结论·························································109 参考文献·····························································111 第5章 活性氧电化学传感在细胞生物学中的应用研究展望·················112 参考文献····························································115
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