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Product details:
- ISBN 10: 1788012496
- ISBN 13: 9781788012492
- Author: P John Thomas
The field of nanoscience continues to grow at an impressive rate and, with such a vast landscape of material, careful distillation of the most important discoveries will help researchers find the key information they require. Nanoscience Volume 4 provides a critical and comprehensive assessment of the most recent research and opinion from across the globe. Coverage includes diverse topics such as 2D nanomaterials, quantum dot solar cells and core nanoparticles for drug delivery applications. Anyone practising in any nano-allied field, or wishing to enter the nano-world will benefit from this resource, presenting the current thought and applications of nanoscience.
Table of contents:
Recent highlights in advanced transmission electron microscopy techniques: applications to nanomaterials
Introduction to aberration corrected S/TEM
AC-TEM imaging of carbon nanomaterials and related hybrid structures
Nanoparticles
1D Nanomaterials
2D Materials
Beam sensitive materials
3D Techniques
In situ electron microscopy
Conclusions
Acknowledgements
References
Gold fabricated core–shell nanoparticles as innovative cancer therapeutic strategies to improve drug delivery
Introduction to cancer therapeutics
Gold based core–shell nanoparticles for cancer drug delivery
Nano-drug formulations for cancer drug delivery
Pharmaceutical formulation and drug development
Future perspectives for gold based core–shell nanoparticles
Acknowledgements
References
Supramolecular chemistry of AIE-active tetraphenylethylene luminophores
Introduction
AIE-active TPE luminogen
General syntheses and reactivity
Self-assembly of PDI, NDI and porphyrin bearing TPE moieties
TPE moieties bearing macromolecules
Chiral assembly
Applications
Acknowledgements
References
A review of two-dimensional nanomaterials beyond graphene
Introduction
Two-dimensional (2D) nanomaterials
Heterostructures
Conclusions and outlook
Notes and references
Colloidal quantum dots solar cells
Introduction, historical background of colloidal quantum dots
Semiconductors: dimensionality and quantum confined structures
Optoelectronic properties of CQDs
CQD chemical properties
Doped CQDs
CQD synthesis
Thin film fabrication
Electrical properties of colloidal quantum dots
Solar cell device physics and performance
Conclusion and perspective
References
The role of ligands in mediating charge transport in nanocrystalline medium
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