The nature of the light absorption and emission transitions of 4-hydroxybenzophenone in different solvents. A combined computational and experimental study. Issue 4 (19th January 2017)
- Record Type:
- Journal Article
- Title:
- The nature of the light absorption and emission transitions of 4-hydroxybenzophenone in different solvents. A combined computational and experimental study. Issue 4 (19th January 2017)
- Main Title:
- The nature of the light absorption and emission transitions of 4-hydroxybenzophenone in different solvents. A combined computational and experimental study
- Authors:
- Barsotti, Francesco
Ghigo, Giovanni
Berto, Silvia
Vione, Davide - Abstract:
- Abstract : The photophysics and photochemistry of 4-hydroxybenzophenone (4HOBP) are interesting because they can give some insight into the behavior of humic material. Abstract : The photophysics and photochemistry of 4-hydroxybenzophenone (4HOBP) are interesting because they can give some insight into the behavior of humic material. Here we show that 4HOBP has a number of fluorescence peaks: (i) an intense one at excitation/emission wavelengths Ex/Em ∼ 200–230/280–370 nm, likely due to an excitation transition from S0 to S5 or S6, followed by S2 → S0 in emission (S n denotes the singlet states of 4HOBP); (ii) a minor peak at Ex/Em ∼ 270–300/320–360 nm (S0 → S2 in absorption and S2 → S0 in emission), and (iii) very interesting signals in the typical emission region of humic substances, most notably at Ex/Em ∼ 200–220/400–500 nm and Ex/Em ∼ 260–280/400–470 nm (in both cases the emission corresponded to an S1 → S0 transition). The peak (i) (Ex/Em ∼ 200–230/280–370 nm) is quite intense at low 4HOBP concentration values, but it undergoes an effective inner-filter phenomenon. Remarkably, 4HOBP shows fluorescence peaks that arise from S2 → S0 transitions and that do not follow Kasha's rule. Fluorescence is observed in aprotic or poorly protic solvents, and to a lesser extent in aqueous solution. The excited states of 4HOBP, and most notably 4HOBP-S1, are much stronger acids than 4HOBP-S0 . Therefore, excited 4HOBP is quickly deprotonated to 4OBP − -S0 in ∼neutral solution, with aAbstract : The photophysics and photochemistry of 4-hydroxybenzophenone (4HOBP) are interesting because they can give some insight into the behavior of humic material. Abstract : The photophysics and photochemistry of 4-hydroxybenzophenone (4HOBP) are interesting because they can give some insight into the behavior of humic material. Here we show that 4HOBP has a number of fluorescence peaks: (i) an intense one at excitation/emission wavelengths Ex/Em ∼ 200–230/280–370 nm, likely due to an excitation transition from S0 to S5 or S6, followed by S2 → S0 in emission (S n denotes the singlet states of 4HOBP); (ii) a minor peak at Ex/Em ∼ 270–300/320–360 nm (S0 → S2 in absorption and S2 → S0 in emission), and (iii) very interesting signals in the typical emission region of humic substances, most notably at Ex/Em ∼ 200–220/400–500 nm and Ex/Em ∼ 260–280/400–470 nm (in both cases the emission corresponded to an S1 → S0 transition). The peak (i) (Ex/Em ∼ 200–230/280–370 nm) is quite intense at low 4HOBP concentration values, but it undergoes an effective inner-filter phenomenon. Remarkably, 4HOBP shows fluorescence peaks that arise from S2 → S0 transitions and that do not follow Kasha's rule. Fluorescence is observed in aprotic or poorly protic solvents, and to a lesser extent in aqueous solution. The excited states of 4HOBP, and most notably 4HOBP-S1, are much stronger acids than 4HOBP-S0 . Therefore, excited 4HOBP is quickly deprotonated to 4OBP − -S0 in ∼neutral solution, with a considerable loss of the fluorescence properties. Higher fluorescence intensity can be observed under acidic conditions, where excited-state deprotonation is less effective, and in basic solution where the dissociated 4OBP − -S0 form prevails as the ground state. The excited states of 4OBP − are formed directly upon radiation absorption, and being weak bases they do not undergo important acid–base equilibria. Therefore, they can undergo radiational deactivation to produce significant fluorescence emission. … (more)
- Is Part Of:
- Photochemical & photobiological sciences. Volume 16:Issue 4(2017)
- Journal:
- Photochemical & photobiological sciences
- Issue:
- Volume 16:Issue 4(2017)
- Issue Display:
- Volume 16, Issue 4 (2017)
- Year:
- 2017
- Volume:
- 16
- Issue:
- 4
- Issue Sort Value:
- 2017-0016-0004-0000
- Page Start:
- 527
- Page End:
- 538
- Publication Date:
- 2017-01-19
- Subjects:
- Photochemistry -- Periodicals
Photobiology -- Periodicals
541.35 - Journal URLs:
- https://www.springer.com/journal/43630/ ↗
http://www.rsc.org/ ↗ - DOI:
- 10.1039/c6pp00272b ↗
- Languages:
- English
- ISSNs:
- 1474-905X
- Deposit Type:
- Legaldeposit
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- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 6465.979100
British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 1709.xml