£120.00

Taylor & Francis Self-Assembled Organic-Inorganic Nanostructures: Optics and Dynamics

Price data last checked 15 day(s) ago - will refresh soon

View at Amazon

We'll watch every seller, every day. One email when your price arrives.

This is the most expensive it has ever been. Walk away.

£120 today · previous high £120 · all-time low £114

NEW HERE?

Amazon shows you one price. We show you all of them.

Tosheroon watches Amazon prices so you don't have to. Every product on Amazon has a price history — we make it visible. Set the price you'd actually pay, and we'll email you the second it gets there. No app, no account, one email.

WHAT'S ON THIS PAGE

↓ Price chart
when this has been cheap or pricey
↓ Forecast
where the price is heading next
↓ Statistics
all-time high & low, recent range
↑ Price alert
name your number, we'll email you

Price History & Forecast

Grey patches = out of stock. Cheaper = lower on the chart. Hover for exact prices.

Last 76 days · 76 data points (no recent data)

Historical
Generating forecast…
£120.00 £113.39 £114.83 £116.27 £117.72 £119.16 £120.60 25 April 2026 13 May 2026 01 June 2026 20 June 2026 09 July 2026

Price Distribution

Price distribution over 76 days • 3 price levels

Days at Price
Current Price
15 days 15 days 46 days · current 0 12 23 35 46 £114 £119 £120 Days at Price

Price Analysis

Most common price: £120 (46 days, 60.5%)

Price range: £114 - £120

Price levels: 3 different prices over 76 days

Description

The current state and perspectives in natural and life sciences are strongly linked to the development of novel complex organic-inorganic materials at various levels of organization, including semiconductor quantum dots (QDs) and QD-based nanostructures with unique optical and physico-chemical properties. This book provides a comprehensive description of the morphology and main physico-chemical properties of self-assembled inorganic-dye nanostructures as well as some applications in the field of nanotechnology. It crosses disciplines to examine essential nanoassembly principles of QD interaction with organic molecules, excited state dynamics in nanoobjects, theoretical models, and methodologies. Based on ensemble and single-nanoobject detection, the book quantitatively shows (for the first time on a series of nanoassemblies) that surface-mediated processes (formation of trap states) dictate the probability of several of the most interesting and potentially useful photophysical phenomena (FRET- or non-FRET-induced quenching of QD photoluminescence) observed for colloidal QDs and QD–dye nanoassemblies. Further, nanostructures can be generated by nanolithography and thereafter selectively decorated with dye molecules. A similar approach applies to natural nanosized surface heterogeneities. Review "This book provides a comprehensive overview of different aspects of hybrid nanostructures self-assembled from light-emitting inorganic semiconductor quantum dots and organic dyes. Single-nanoobject spectroscopy data analysis is especially useful, as it allows for sound insights into a variety of photophysical phenomena in these hybrid systems, such as luminescence quenching and FRET. The book will be a useful reference in the field of the synthesis, optical spectroscopy studies, and applications of hybrid inorganic-organic assemblies."―Prof. Andrey Rogach, City University of Hong Kong, Hong Kong About the Author Christian von Borczyskowski is full professor at Technische Universität Chemnitz, Germany. He is one of the pioneers in the optical detection of single molecular spins. His research areas are optical spectroscopy and molecular physics, including microscopy of single molecules and quantum dots, and he is currently involved in single molecular probes in soft matter, nano-assemblies, and dynamics of quantum dots. He has published more than 250 refereed papers and five book chapters. Eduard Zenkevich is full professor of physics at the National Academy of Sciences of Belarus and full professor and director of the Research Laboratory of Applied Physics and Informatics, Belarusian National Technical University, Belarus. His research focuses on the structure/dynamics relationship of nanoscale self-assembled objects: multiporphyrin systems, pigment–protein complexes, and functional quantum dot–dye assemblies. Since 1993, he is visiting professor at Technische Universität Chemnitz and accredited expert of RUSNANO Corporation. He acts as a referee for various scientific programs and journals and has contributed more than 200 publications in refereed periodicals.

Product Specifications

Format
hardcover
Domain
Amazon UK
Release Date
21 October 2016
Listed Since
09 July 2016

Barcode

No barcode data available