Description

Book Synopsis

Consisting of six chapters, written by experts in their field, this book charts the progress made in the use of quantum dots as the signaling component in optical sensors since their discovery in the early 1980s. In particular, it focuses on CdS-, CdSe-, and CdTe-type QDs due to their emission in the visible region of the electromagnetic spectrum. The book begins by detailing the range of methods currently used for the preparation and passivation of core/core–shell quantum dots and follows with a discussion on their electrochemical properties and potential toxicity. The book culminates by focusing on how electron and energy transfer mechanisms can be utilized to generate a range of quantum dot-based probes. This is the first text of its kind dedicated to quantum dot-based sensors and will appeal to those readers who have an interest in working with these versatile nanoparticles.



Trade Review

"This book provides very interesting insights into quantum dots technology, discussing, with adequate detail, the distinct synthetic approaches and functionalisation strategies, the importance of surface passivation and modification to guaranteeing suitable stability, biocompatibility, and reactivity, and the effect of the size, shape, and composition of quantum dots on their unique photochemical properties. … The chapters are attractively organised, and all reviewed topics are meticulously referenced. Although accessible for beginners, this book could also be very useful for experienced researchers, because it clearly emphasises crucial aspects of the material presented and avoids redundant description."
—Prof. João L. M. Santos, Analytical and Bioanalytical Chemistry, 2013


"This book provides very interesting insights into quantum dots technology, discussing, with adequate detail, the distinct synthetic approaches and functionalisation strategies, the importance of surface passivation and modification to guaranteeing suitable stability, biocompatibility, and reactivity, and the effect of the size, shape, and composition of quantum dots on their unique photochemical properties. … The chapters are attractively organised, and all reviewed topics are meticulously referenced. Although accessible for beginners, this book could also be very useful for experienced researchers, because it clearly emphasises crucial aspects of the material presented and avoids redundant description."
—Prof. João L. M. Santos, Analytical and Bioanalytical Chemistry, 2013



Table of Contents

Quantum Dot Synthesis Methods

Biocompatible CdSe–ZnS Core–Shell Quantum Dots

Electrochemical Properties of Semiconductor Quantum Dots

Quantum Dot Reactive Oxygen Species Generation and Toxicity in Bacteria: Mechanisms and Experimental Pitfalls

Electron Transfer Quenching for Biosensing with Quantum Dots

Quantum Dot Probes Based on Energy Transfer Mechanisms

Quantum Dot Sensors: Technology and Commercial

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    £97.75

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    RRP £115.00 – you save £17.25 (15%)

    Order before 4pm today for delivery by Thu 11 Jun 2026.

    A Hardback by John Callan, Francisco M. Raymo

    1 in stock


      View other formats and editions of Quantum Dot Sensors: Technology and Commercial by John Callan

      Publisher: Pan Stanford Publishing Pte Ltd
      Publication Date: 24/01/2013
      ISBN13: 9789814316002, 978-9814316002
      ISBN10: 9814316008

      Description

      Book Synopsis

      Consisting of six chapters, written by experts in their field, this book charts the progress made in the use of quantum dots as the signaling component in optical sensors since their discovery in the early 1980s. In particular, it focuses on CdS-, CdSe-, and CdTe-type QDs due to their emission in the visible region of the electromagnetic spectrum. The book begins by detailing the range of methods currently used for the preparation and passivation of core/core–shell quantum dots and follows with a discussion on their electrochemical properties and potential toxicity. The book culminates by focusing on how electron and energy transfer mechanisms can be utilized to generate a range of quantum dot-based probes. This is the first text of its kind dedicated to quantum dot-based sensors and will appeal to those readers who have an interest in working with these versatile nanoparticles.



      Trade Review

      "This book provides very interesting insights into quantum dots technology, discussing, with adequate detail, the distinct synthetic approaches and functionalisation strategies, the importance of surface passivation and modification to guaranteeing suitable stability, biocompatibility, and reactivity, and the effect of the size, shape, and composition of quantum dots on their unique photochemical properties. … The chapters are attractively organised, and all reviewed topics are meticulously referenced. Although accessible for beginners, this book could also be very useful for experienced researchers, because it clearly emphasises crucial aspects of the material presented and avoids redundant description."
      —Prof. João L. M. Santos, Analytical and Bioanalytical Chemistry, 2013


      "This book provides very interesting insights into quantum dots technology, discussing, with adequate detail, the distinct synthetic approaches and functionalisation strategies, the importance of surface passivation and modification to guaranteeing suitable stability, biocompatibility, and reactivity, and the effect of the size, shape, and composition of quantum dots on their unique photochemical properties. … The chapters are attractively organised, and all reviewed topics are meticulously referenced. Although accessible for beginners, this book could also be very useful for experienced researchers, because it clearly emphasises crucial aspects of the material presented and avoids redundant description."
      —Prof. João L. M. Santos, Analytical and Bioanalytical Chemistry, 2013



      Table of Contents

      Quantum Dot Synthesis Methods

      Biocompatible CdSe–ZnS Core–Shell Quantum Dots

      Electrochemical Properties of Semiconductor Quantum Dots

      Quantum Dot Reactive Oxygen Species Generation and Toxicity in Bacteria: Mechanisms and Experimental Pitfalls

      Electron Transfer Quenching for Biosensing with Quantum Dots

      Quantum Dot Probes Based on Energy Transfer Mechanisms

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