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Titlebook: Quantum Dots for DNA Biosensing; Jun-Jie Zhu,Jing-Jing Li,Fang-Fang Cheng Book 2013 The Author(s) 2013 Aptamer Analysis.DNA Biosensing.DNA

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Quantum Dot-Electrochemiluminescence-Based Biosensing,roperty, new developments and improvements of its application in DNA-based analysis are discussed. Different types of QDs with different strategies for the DNA-biosensing constructions were expatiated and compared in detail.
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Book 2013 the fabrication of DNA biosensors, using examples to show how these properties can be used in DNA biosensor design and the advantages of quantum dots in DNA biosensing. Further new emerging quantum dots such as metal nanoclusters and graphene dots and their applications in DNA biosensing have also been included..
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Introduction,cally, with the development of nanotechnology, such as the emergence of quantum dots (QDs), numerous QD-based DNA biosensors have been fabricated successfully. In this chapter, the overview of DNA biosensing and QDs is given. Meanwhile, the superior properties of QDs for the preparation of DNA biose
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Quantum Dots,composed of elements from groups III–V, II–VI, or IV–VI of the periodic table, such as CdS, CdSe, CdTe, CdS@ZnS, CdSe@ZnS, CdSeTe@ZnS. These QDs own excellent fluorescence properties and have been widely used in biosensing and intracellular or in vivo imaging. However, the leaked cadmium ions are cu
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Quantum Dot-Fluorescence-Based Biosensing,arious analytes, such as metal ions, environmental samples, protein, deoxyribonucleic acid (DNA), and ribonucleic acid (RNA). More importantly, some of these sensors can realize not only fixed cell labeling, imaging of live cell dynamics, in situ tissue profiling, but also in vivo animal imaging. A
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Quantum Dot-Electrochemical and Photoelectrochemical Biosensing,been discovered and well employed in DNA biosensing. This chapter presents a general description of the electrochemical and photoelectrochemical properties of QDs with their applications in DNA biosensing.
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ns.Detailed discussion of economic policy issues.Excel and M..This is a book on deterministic and stochastic Growth Theory and the computational methods needed to produce numerical solutions. Exogenous and endogenous growth models are thoroughly reviewed. Special attention is paid to the use of thes
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