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The orientation of the triplet axes with respect to the optical transition moments in (bacterio) chlorophylls

Vrieze, J ; Hoff, A.J

Chemical Physics Letters, 1995, Vol.237(5), pp.493-501 [Peer Reviewed Journal]

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Selective excitation in pulsed EPR of spin-correlated radical pairs: electron–electron interactions, zero-, single-, and double-quantum relaxation and spectral diffusion

Borovykh, I.V ; Kulik, L.V ; Dzuba, S.A ; Hoff, A.J

Chemical Physics Letters, 2001, Vol.338(2), pp.173-179 [Peer Reviewed Journal]

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Probing the energy landscape of bacterial photosynthetic reaction centers at cryogenic temperatures by ESEEM of spin-polarised D +Q A− radical pairs

Dzuba, S.A ; Gast, P ; Hoff, A.J

Chemical Physics Letters, 1997, Vol.268(3), pp.273-279 [Peer Reviewed Journal]

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4
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The balance between primary forward and back reactions in bacterial photosynthesis

Rademaker, H ; Hoff, A.J

Biophysical Journal, 1981, Vol.34(2), pp.325-344 [Peer Reviewed Journal]

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5
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Triplet EPR spectra of the primary electron donor in bacterial photosynthesis at temperatures between 15 and 296 K

Hoff, A.J ; Proskuryakov, I.I

Chemical Physics Letters, 1985, Vol.115(3), pp.303-310 [Peer Reviewed Journal]

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6
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Absorbance-detected electron spin echo spectroscopy of non-radiative triplet states in zero field: An application to the primary donor of the photosynthetic bacterium rhodobacter sphaeroides R-26

Lous, E.J ; Hoff, A.J

Chemical Physics Letters, 1987, Vol.140(6), pp.620-625 [Peer Reviewed Journal]

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7
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Electron spin polarization in a three-electron spin system. An application to bacterial photosynthesis

Hoff, A.J ; Hore, P.J

Chemical Physics Letters, 1984, Vol.108(1), pp.104-110 [Peer Reviewed Journal]

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8
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Photooxidation and triplet formation of the primary electron donor of the green photosynthetic bacterium Prosthecochloris aestuarii observed with ESR spectroscopy

Swarthoff, T ; Gast, P ; Hoff, A.J

FEBS Letters, 1981, Vol.127(1), pp.83-86 [Peer Reviewed Journal]

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9
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A single-crystal EPR study of the reduced iron-quinone acceptor complex in reaction centers of Rhodopseudomonas viridis

Evelo, R.G ; Nan, H.M ; Hoff, A.J

FEBS Letters, 1988, Vol.239(2), pp.351-357 [Peer Reviewed Journal]

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10
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Determination of the number of detergent molecules associated with the reaction center protein isolated from the photosynthetic bacterium Rhodopseudomonas viridis: Effects of the amphiphilic molecule 1,2,3-heptanetriol

Gast, P ; Hemelrijk, P ; Hoff, A.J

FEBS Letters, 1994, Vol.337(1), pp.39-42 [Peer Reviewed Journal]

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11
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Oscillations within the B L absorption band of Rhodobacter sphaeroides reaction centers upon 30 femtosecond excitation at 865 nm

Streltsov, A.M ; Aartsma, T.J ; Hoff, A.J ; Shuvalov, V.A

Chemical Physics Letters, 1997, Vol.266(3), pp.347-352 [Peer Reviewed Journal]

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12
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The primary acceptor quinone Q A in reaction centers of Rhodobacter sphaeroides R26 is hydrogen bonded to the N σ(1) -H of His M219. An electron spin echo study of Q A−•

Bosch, M.K ; Gast, P ; Hoff, A.J ; Spoyalov, A.P ; Tsvetkov, Yu.D

Chemical Physics Letters, 1995, Vol.239(4), pp.306-312 [Peer Reviewed Journal]

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Evidence that Ala M260 is hydrogen-bonded to the reduced primary acceptor quinone Q A−. in reaction centers of Rb. sphaeroides

Spoyalov, A.P ; Hulsebosch, R.J ; Shochat, S ; Gast, P ; Hoff, A.J

Chemical Physics Letters, 1996, Vol.263(5), pp.715-720 [Peer Reviewed Journal]

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14
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Photoselection effects in laser flash-induced spin-polarised EPR spectra of the radical pair state [P +Q A−] in Rhodobacter sphaeroides reaction centers

Proskuryakov, I.I ; Klenina, I.B ; Borovykh, I.V ; Gast, P ; Hoff, A.J

Chemical Physics Letters, 1999, Vol.299(6), pp.566-570 [Peer Reviewed Journal]

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15
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Effect of bicarbonate on the S 2 multiline EPR signal of the oxygen-evolving complex in photosystem II membrane fragments

Hulsebosch, R.J ; Allakhverdiev, S.I ; Klimov, V.V ; Picorel, R ; Hoff, A.J

FEBS Letters, 1998, Vol.424(3), pp.146-148 [Peer Reviewed Journal]

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16
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Jan Amesz: 11.03.1934–29.01.2001

Hoff, A.J ; Aartsma, T.J

BBA - Bioenergetics, 2001, Vol.1507(1), pp.3-4 [Peer Reviewed Journal]

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17
Jan Amesz
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Jan Amesz

Hoff, A.J ; Aartsma, T.J

Biochimica et Biophysica Acta (BBA) - Bioenergetics, 10/2001, Vol.1507(1-3), pp.3-4 [Peer Reviewed Journal]

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18
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Rota-MARY, a novel way of measuring anisotropic magnetic field effects on reaction yield

van Dijk, B ; van Der Vos, R ; Hoff, A.J

Chemical Physics Letters, 1994, Vol.226(1), pp.206-212 [Peer Reviewed Journal]

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19
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Magic-angle-spinning 13C NMR with atomic resolution of a photosynthetic reaction center enriched in [4′- 13C]tyrosine

de Groot, H.J.M ; Raap, J ; Winkel, C ; Hoff, A.J ; Lugtenburg, J

Chemical Physics Letters, 1990, Vol.169(4), pp.307-310 [Peer Reviewed Journal]

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20
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ESE relaxation measurements in photosystem II The influence of the reaction center non-heme iron on the spin-lattice relaxation of Tyr D

Bosch, M.K ; Evelo, R.G ; Styring, S ; Rutherford, A.W ; Hoff, A.J

FEBS Letters, 1991, Vol.292(1), pp.279-283 [Peer Reviewed Journal]

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21
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Absorbance-detected electron spin echoes from bacterial photosynthetic reaction centers. A theoretical study

Vreeker, R ; Lous, E.J ; Hoff, A.J

Chemical Physics Letters, 1989, Vol.158(1), pp.24-30 [Peer Reviewed Journal]

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22
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Evidence for a very early intermediate in bacterial photosynthesis. A photon-echo and hole-burning study of the primary donor band in Rhodopseudomonas sphaeroides

Meech, S.R ; Hoff, A.J ; Wiersma, D.A

Chemical Physics Letters, 1985, Vol.121(4), pp.287-292 [Peer Reviewed Journal]

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23
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Sublevel decay kinetics of the triplet state of bacteriochlorophyll a and b in methyltetrahydrofuran at 1.2 K

Den Blanken, H.J ; Hoff, A.J

Chemical Physics Letters, 1983, Vol.96(3), pp.343-347 [Peer Reviewed Journal]

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24
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Theoretical calculations of RYDMR effects in photosynthetic bacteria

Hunter, D.A ; Hoff, A.J ; Hore, P.J

Chemical Physics Letters, 1987, Vol.134(1), pp.6-11 [Peer Reviewed Journal]

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25
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Low-power, low-field RYDMAR of the primary radical pair in photosynthesis

Moehl, K.W ; Lous, E.J ; Hoff, A.J

Chemical Physics Letters, 1985, Vol.121(1), pp.22-27 [Peer Reviewed Journal]

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26
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Resolution enhancement of the triplet—singlet absorbance-difference spectrum and the triplet-esr spectrum in zero field by the selection of sites. An

Den Blanken, H.J ; Hoff, A.J

Chemical Physics Letters, 1983, Vol.98(3), pp.255-262 [Peer Reviewed Journal]

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27
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Electron spin-echo envelope modulation (ESEEM) studies of the tyrosyl radical DOF plant photosystem II

Evelo, R.G ; Dikanov, S.A ; Hoff, A.J

Chemical Physics Letters, 1989, Vol.157(1), pp.25-30 [Peer Reviewed Journal]

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28
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Linear dichroism in triplet–singlet difference spectra of photosynthetic pigment–protein complexes, monitored with absorbance-detected magnetic resonance: correction for non-ideal optical effects

Louwe, R.J.W ; Vrieze, J ; van Der Vos, R ; Aartsma, T.J ; Hoff, A.J

Chemical Physics Letters, 1999, Vol.306(1), pp.25-32 [Peer Reviewed Journal]

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29
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Electron paramagnetic resonance of the primary radical pair [D ·+φA·−] in reaction centers of photosynthetic bacteria

Proskuryakov, I.I ; Klenina, I.B ; Hore, P.J ; Bosch, M.K ; Gast, P ; Hoff, A.J

Chemical Physics Letters, 1996, Vol.257(3), pp.333-339 [Peer Reviewed Journal]

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30
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An optical and ESR investigation on the acceptor side of the reaction center of the green photosynthetic bacterium Prosthecochloris aestuarii

Swarthoff, T ; Gast, P ; Hoff, A.J ; Amesz, J

FEBS Letters, 1981, Vol.130(1), pp.93-98 [Peer Reviewed Journal]

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31
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High-resolution triplet-minus-singlet absorbance difference spectrum of photosystem II particles

Den Blanken, H.J ; Hoff, A.J ; Jongenelis, A.P.J.M ; Diner, B.A

FEBS Letters, 1983, Vol.157(1), pp.21-27 [Peer Reviewed Journal]

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32
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Orientation-dependent ESEEM spectroscopy in disordered systems. Applications to bis(acetylacetonato)oxovanadium(IV) adducts in frozen solution and comparison with ENDOR data

Dikanov, S.A ; Evelo, R.G ; Hoff, A.J ; Tyryshkin, A.M

Chemical Physics Letters, 1989, Vol.154(1), pp.34-38 [Peer Reviewed Journal]

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33
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Single-site absorption spectroscopy of pheophytin-a and chlorophyll-a in a n-octane matrix

Platenkamp, R.J ; Den Blanken, H.J ; Hoff, A.J

Chemical Physics Letters, 1980, Vol.76(1), pp.35-41 [Peer Reviewed Journal]

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34
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Magneto-optical absorbance difference spectroscopy. A new tool for the study of radical recombination reactions. An application to bacterial photosynthesis

Hoff, A.J ; Lous, E.J ; Moehl, K.W ; Dijkman, J.A

Chemical Physics Letters, 1985, Vol.114(1), pp.39-43 [Peer Reviewed Journal]

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35
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Polarized triplet-minus-singlet absorbance difference spectra measured by absorbance-detected magnetic resonance. An application to photosynthetic reaction centres

Den Blanken, H.J ; Meiburg, R.F ; Hoff, A.J

Chemical Physics Letters, 1984, Vol.105(3), pp.336-342 [Peer Reviewed Journal]

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36
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Electron paramagnetic resonance of spin-correlated radical pairs in photosynthetic reactions

Hore, P.J ; Hunter, D.A ; Mckie, C.D ; Hoff, A.J

Chemical Physics Letters, 1987, Vol.137(6), pp.495-500 [Peer Reviewed Journal]

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