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    <rdf:Description rdf:about="https://research-explorer.ista.ac.at/record/21823">
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        <dc:title>Improving the kinetics and dark equilibrium of donor-acceptor Stenhouse adduct by triene backbone design</dc:title>
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                <foaf:name></foaf:name>
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                <foaf:givenname></foaf:givenname>
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        <bibo:abstract>DFT calculations were used to find an optimal substitution site on the triene backbone of a donor–acceptor Stenhouse adduct photoswitch to tune the equillibrium and switching kinetics of DASA without modifying the donor and acceptor groups. Using this approach we demonstrate a new means to tuning DASA based photoswitches by increasing the energy of the closed form relative to the open form. To highlight the potential of this approach a new DASA derivative bearing a methyl substituent on the 5-position of the triene was synthesized and the effect of this substitution was studied using 1H NMR spectroscopy, time-dependent UV-Vis and solvatochromic analysis. The new DASA derivative shows a higher dark equillibrium, favoring the open form, and drastically faster thermal recovery than the unsubstituted derivative with the same donor and acceptor.</bibo:abstract>
        <bibo:volume>58</bibo:volume>
        <bibo:issue>14</bibo:issue>
        <bibo:startPage>2303-2306</bibo:startPage>
        <bibo:endPage>2303-2306</bibo:endPage>
        <dc:publisher>Royal Society of Chemistry</dc:publisher>
        <bibo:doi rdf:resource="10.1039/d1cc06235b" />
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