Application of Carbon Nano Dots

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Bibliographic Details
Author / Creator:Gupta, Abhishek.
Imprint:Ashland : Arcler Press, 2019.
Description:1 online resource (275 pages)
Language:English
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/12542000
Hidden Bibliographic Details
ISBN:1773616579
9781773616575
Notes:ReferencesChapter 7 Graphene Quantum Dots Electrochemistry and Sensitive Electrocatalytic Glucose Sensor Development; Abstract; Introduction; Materials and Methods; Results and Discussion; Conclusions; Acknowledgments; Author Contributions; References; Chapter 8 New Insight Into The Concept of Carbonization Degree in Synthesis of Carbon Dots to Achieve Facile Smartphone Based Sensing Platform; Abstract; Introduction; Methods; Results and Discussion; Conclusion; Acknowledgements; References
Print version record.
Summary:And Future OutlookReferences; Chapter 2 Cancer Targeting and Drug Delivery Using Carbon-Based Quantum Dots and Nanotubes; Abstract; Introduction; Drug Usage And Resistances in Cancer Cells; Ligand-Receptor Mediated Delivery; Summary And Outlook; Acknowledgments; References; Chapter 3 Luminescence Mechanism of Carbon Dots by Tailoring Functional Groups For Sensing Fe3+ Ions; Abstract; Introduction; Results and Discussion; Conclusions; Experimental Section; Acknowledgments; Author Contributions; References
Other form:Print version: Gupta, Abhishek. Application of Carbon Nano Dots. Ashland : Arcler Press, ©2019

MARC

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505 0 |a Cover; Half Title Page; Title Page; Copyright Page; Declaration; About the Editor; Table of Contents; List of Contributors; List of Abbreviations; Preface; Introduction about Carbon Nano Dots; Synthesis; Top-Down Approaches; Bottom-Up Approaches; Physicochemical Properties; Cytotoxicity; Applications; Summary And Outlook; References; Chapter 1 Doped Carbon Dots For Sensing and Bioimaging Applications: A Minireview; Abstract; Introduction; Synthesis And Optical Properties of Doped C-Dots; Doped C-Dots For Sensing Applications; Doped C-Dots For Biomedical Applications 
520 |a And Future OutlookReferences; Chapter 2 Cancer Targeting and Drug Delivery Using Carbon-Based Quantum Dots and Nanotubes; Abstract; Introduction; Drug Usage And Resistances in Cancer Cells; Ligand-Receptor Mediated Delivery; Summary And Outlook; Acknowledgments; References; Chapter 3 Luminescence Mechanism of Carbon Dots by Tailoring Functional Groups For Sensing Fe3+ Ions; Abstract; Introduction; Results and Discussion; Conclusions; Experimental Section; Acknowledgments; Author Contributions; References 
505 8 |a Chapter 4 Initial Study on Thin Film Preparation of Carbon Nanodots Composites As Luminescence MaterialAbstract; Conclusion; Acknowledgement; References; Chapter 5 Carbon Nanodots as Dual-Mode Nanosensors For Selective Detection of Hydrogen Peroxide; Abstract; Background; Methods; Results and Discussion; Conclusions; Acknowledgements; Authors' Contributions; References; Chapter 6 Synthesis of Luminescent Carbon Dots With Ultrahigh Quantum Yield And Inherent Folate Receptor-Positive Cancer Cell Targetability; Abstract; Introduction; Results and Discussion; Conclusion; Acknowledgements 
504 |a ReferencesChapter 7 Graphene Quantum Dots Electrochemistry and Sensitive Electrocatalytic Glucose Sensor Development; Abstract; Introduction; Materials and Methods; Results and Discussion; Conclusions; Acknowledgments; Author Contributions; References; Chapter 8 New Insight Into The Concept of Carbonization Degree in Synthesis of Carbon Dots to Achieve Facile Smartphone Based Sensing Platform; Abstract; Introduction; Methods; Results and Discussion; Conclusion; Acknowledgements; References 
505 8 |a Chapter 9 Design of Carbon Dots Photoluminescence Through Organo-Functional Silane Grafting For Solid-State Emitting DevicesAbstract; Introduction; Results and Discussion; Conclusion; Methods; Acknowledgements; References; Chapter 10 Ca 19-9 Pancreatic Tumor Marker Fluorescence Immunosensing Detection Via Immobilized Carbon Quantum Dots Conjugated Gold Nanocomposite; Abstract; Introduction; Results and Discussion; Experimental; Conclusions; Acknowledgments; Author Contributions; References; Index 
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