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1 able-temperature measurements in cases where Dexter and electron-transfer mechanisms can lead to indi
2 lar transfer of energy (FRET) and electrons (Dexter) are of great interest for the scientific communi
3               We dissect the bridge-mediated Dexter coupling mechanisms and formulate a theory for tr
4                                     However, Dexter coupling pathways must convey both an electron an
5 ty to inhibit production of myeloid cells in Dexter cultures but not that of lymphoid cells in Whitlo
6 n when the antibody was added to established Dexter cultures.
7 gonucleotides, a minor contribution from the Dexter electron exchange mechanism at short distances is
8 ystals to the orange polymers via Forster or Dexter energy transfer is analyzed through time resolved
9 iated spin change of the donor and acceptor, Dexter energy transfer, is critically important in solar
10 e pathway framework developed here shows how Dexter energy-transfer rates depend on donor, bridge, an
11 sion among the host chromophores followed by Dexter exchange energy transfer to the trap chromophore.
12 istance dependence, which is consistent with Dexter exchange transfer.
13                           The mechanism is a Dexter hopping process consisting of the simultaneous ex
14 nism can under certain circumstances exhibit Dexter-like "behavior", thus illustrating the danger of
15 xcited by green light, engage in interfacial Dexter-like triplet-triplet energy transfer with surface
16 ng both quenching data sets according to the Dexter mechanism also shows an excellent correlation.
17 al axes, which favors exciton diffusion by a Dexter mechanism.
18 e, when studied individually(r = 0.03 ocular dexter [OD], r = -0.05 ocular sinister [OS]).
19 enlarged blind spot in the right eye (oculus dexter, OD).
20                   Using TACE-negative murine Dexter-ras-myc cell monocytes, we found that in these ce
21 2 core allows for a definitive assignment of Dexter transfer as the dominant excited-state reaction p
22                                              Dexter transfer between chemically linked donors and acc
23 ) = -0.1 eV), the increase in probability of Dexter transfer due to the closer proximity of the donor
24            Electronic coupling constants for Dexter transfer were determined to be approximately 10 c
25 long-lived, their transport occurs through a Dexter transfer, making them slower than singlet exciton
26                                The nature of Dexter triplet energy transfer between bonded systems of
27  can be interpreted as strong evidence for a Dexter triplet energy transfer mechanism, it does not im
28 tion and differentiation of myeloid cells in Dexter type bone marrow cultures.
29 ry low temperature, but this is augmented by Dexter-type electron exchange at higher temperatures.
30 jugates to pendant ytterbium(III) cations, a Dexter-type energy transfer mechanism is suggested, whic
31 n bone marrow suspensions to pre-established Dexter-type long-term bone marrow culture stromal layers

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