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- W2073022175 endingPage "603" @default.
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- W2073022175 abstract "Organic dendrimers have been considered for a number of optical applications and are now of great interest for the purpose of enhanced nonlinear optical effects. In order to understand the mechanism of the enhanced effects in branched structures it is important to probe the fundamental excitations and the degree of intramolecular interactions utilizing various spectroscopic techniques. In this review, the nonlinear optical and excited state dynamics of different dendritic and other branching chromophore structures are discussed. The methods of two-photon absorption, time-resolved fluorescence, transient absorption, and three-pulse photon echo peak shift are discussed in regards to the degree of intramolecular coupling in the macromolecular systems. These techniques are also used for a comparison of the dynamics in the linear molecular analog systems as well. Thus, this review focuses on the aspect of intramolecular interactions in a branched system and its importance to enhanced nonlinear optical effects useful for modern optical devices." @default.
- W2073022175 created "2016-06-24" @default.
- W2073022175 creator A5062998654 @default.
- W2073022175 date "2005-05-05" @default.
- W2073022175 modified "2023-10-09" @default.
- W2073022175 title "TIME-RESOLVED SPECTROSCOPY OF ORGANIC DENDRIMERS AND BRANCHED CHROMOPHORES" @default.
- W2073022175 cites W1567174955 @default.
- W2073022175 cites W1965474536 @default.
- W2073022175 cites W1966295848 @default.
- W2073022175 cites W1974342585 @default.
- W2073022175 cites W1975689256 @default.
- W2073022175 cites W1977389341 @default.
- W2073022175 cites W1983501361 @default.
- W2073022175 cites W1985093608 @default.
- W2073022175 cites W1985703382 @default.
- W2073022175 cites W1989393704 @default.
- W2073022175 cites W1997208731 @default.
- W2073022175 cites W1997887120 @default.
- W2073022175 cites W1998705991 @default.
- W2073022175 cites W2007189194 @default.
- W2073022175 cites W2007684864 @default.
- W2073022175 cites W2009500363 @default.
- W2073022175 cites W2009824358 @default.
- W2073022175 cites W2010542051 @default.
- W2073022175 cites W2013404225 @default.
- W2073022175 cites W2013745321 @default.
- W2073022175 cites W2014816627 @default.
- W2073022175 cites W2014881634 @default.
- W2073022175 cites W2015336212 @default.
- W2073022175 cites W2016079960 @default.
- W2073022175 cites W2016431421 @default.
- W2073022175 cites W2017214542 @default.
- W2073022175 cites W2019001468 @default.
- W2073022175 cites W2022341787 @default.
- W2073022175 cites W2034079892 @default.
- W2073022175 cites W2035821461 @default.
- W2073022175 cites W2039929450 @default.
- W2073022175 cites W2046092966 @default.
- W2073022175 cites W2046308260 @default.
- W2073022175 cites W2047611564 @default.
- W2073022175 cites W2049400208 @default.
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- W2073022175 cites W2064743804 @default.
- W2073022175 cites W2065296226 @default.
- W2073022175 cites W2067266464 @default.
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- W2073022175 doi "https://doi.org/10.1146/annurev.physchem.56.092503.141130" @default.
- W2073022175 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/15796712" @default.
- W2073022175 hasPublicationYear "2005" @default.
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