Solvent control of intramolecular proton transfer: Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane?

Research output: Contribution to journalJournal articleResearchpeer-review

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Solvent control of intramolecular proton transfer : Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane? / Manolova, Y.; Marciniak, Heinz; Tschierlei, S.; Fennel, F.; Kamounah, Fadhil S; Lochbrunner, S.; Antonov, L.

In: Physical Chemistry Chemical Physics, Vol. 19, No. 10, 2017, p. 7316-7325.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Manolova, Y, Marciniak, H, Tschierlei, S, Fennel, F, Kamounah, FS, Lochbrunner, S & Antonov, L 2017, 'Solvent control of intramolecular proton transfer: Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane?', Physical Chemistry Chemical Physics, vol. 19, no. 10, pp. 7316-7325. https://doi.org/10.1039/c7cp00220c

APA

Manolova, Y., Marciniak, H., Tschierlei, S., Fennel, F., Kamounah, F. S., Lochbrunner, S., & Antonov, L. (2017). Solvent control of intramolecular proton transfer: Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane? Physical Chemistry Chemical Physics, 19(10), 7316-7325. https://doi.org/10.1039/c7cp00220c

Vancouver

Manolova Y, Marciniak H, Tschierlei S, Fennel F, Kamounah FS, Lochbrunner S et al. Solvent control of intramolecular proton transfer: Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane? Physical Chemistry Chemical Physics. 2017;19(10):7316-7325. https://doi.org/10.1039/c7cp00220c

Author

Manolova, Y. ; Marciniak, Heinz ; Tschierlei, S. ; Fennel, F. ; Kamounah, Fadhil S ; Lochbrunner, S. ; Antonov, L. / Solvent control of intramolecular proton transfer : Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane?. In: Physical Chemistry Chemical Physics. 2017 ; Vol. 19, No. 10. pp. 7316-7325.

Bibtex

@article{39b78f04758149119cc80e95b08f61dc,
title = "Solvent control of intramolecular proton transfer: Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane?",
abstract = "The solvent dependent excited state dynamics of 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde (compound 2), a candidate for a molecular switch based on intramolecular proton transfer, was investigated by ultrafast spectroscopy and quantum-chemical calculations. In acetonitrile a mixture of molecules in the enol and zwitterionic proton transfer (PT) form exists in the ground state. However, the zwitterion is the energetically favored one in the electronically excited state. Optical excitation of the enol form results in intramolecular proton transfer and formation of the PT form within 1.4 ps. In addition we observe the appearance of a long living species with a rate of 1/(330 ps) which returns to the original ground state on time scales beyond 2 ns and which is attributed to the triplet state. In toluene the enol form is the only observed ground state tautomer, but no light induced proton transfer occurs. Again the long living triplet state is formed, even with a faster rate of 1/(11 ps). In methanol hydrogen bonds between 2 and solvent molecules stabilize strongly the PT form in the ground as well as in the excited state. Also in this case no light induced intramolecular proton transfer was observed but the formation of a long living species was. However, its absorption spectrum is distinctly different from the triplet state seen in acetonitrile and methanol.",
author = "Y. Manolova and Heinz Marciniak and S. Tschierlei and F. Fennel and Kamounah, {Fadhil S} and S. Lochbrunner and L. Antonov",
year = "2017",
doi = "10.1039/c7cp00220c",
language = "English",
volume = "19",
pages = "7316--7325",
journal = "Physical Chemistry Chemical Physics",
issn = "1463-9076",
publisher = "Royal Society of Chemistry",
number = "10",

}

RIS

TY - JOUR

T1 - Solvent control of intramolecular proton transfer

T2 - Is 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde a proton crane?

AU - Manolova, Y.

AU - Marciniak, Heinz

AU - Tschierlei, S.

AU - Fennel, F.

AU - Kamounah, Fadhil S

AU - Lochbrunner, S.

AU - Antonov, L.

PY - 2017

Y1 - 2017

N2 - The solvent dependent excited state dynamics of 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde (compound 2), a candidate for a molecular switch based on intramolecular proton transfer, was investigated by ultrafast spectroscopy and quantum-chemical calculations. In acetonitrile a mixture of molecules in the enol and zwitterionic proton transfer (PT) form exists in the ground state. However, the zwitterion is the energetically favored one in the electronically excited state. Optical excitation of the enol form results in intramolecular proton transfer and formation of the PT form within 1.4 ps. In addition we observe the appearance of a long living species with a rate of 1/(330 ps) which returns to the original ground state on time scales beyond 2 ns and which is attributed to the triplet state. In toluene the enol form is the only observed ground state tautomer, but no light induced proton transfer occurs. Again the long living triplet state is formed, even with a faster rate of 1/(11 ps). In methanol hydrogen bonds between 2 and solvent molecules stabilize strongly the PT form in the ground as well as in the excited state. Also in this case no light induced intramolecular proton transfer was observed but the formation of a long living species was. However, its absorption spectrum is distinctly different from the triplet state seen in acetonitrile and methanol.

AB - The solvent dependent excited state dynamics of 4-hydroxy-3-(piperidin-1-ylmethyl)-1-naphthaldehyde (compound 2), a candidate for a molecular switch based on intramolecular proton transfer, was investigated by ultrafast spectroscopy and quantum-chemical calculations. In acetonitrile a mixture of molecules in the enol and zwitterionic proton transfer (PT) form exists in the ground state. However, the zwitterion is the energetically favored one in the electronically excited state. Optical excitation of the enol form results in intramolecular proton transfer and formation of the PT form within 1.4 ps. In addition we observe the appearance of a long living species with a rate of 1/(330 ps) which returns to the original ground state on time scales beyond 2 ns and which is attributed to the triplet state. In toluene the enol form is the only observed ground state tautomer, but no light induced proton transfer occurs. Again the long living triplet state is formed, even with a faster rate of 1/(11 ps). In methanol hydrogen bonds between 2 and solvent molecules stabilize strongly the PT form in the ground as well as in the excited state. Also in this case no light induced intramolecular proton transfer was observed but the formation of a long living species was. However, its absorption spectrum is distinctly different from the triplet state seen in acetonitrile and methanol.

U2 - 10.1039/c7cp00220c

DO - 10.1039/c7cp00220c

M3 - Journal article

C2 - 28239718

AN - SCOPUS:85015866234

VL - 19

SP - 7316

EP - 7325

JO - Physical Chemistry Chemical Physics

JF - Physical Chemistry Chemical Physics

SN - 1463-9076

IS - 10

ER -

ID: 176612198