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2 terface of the recording chamber after their photolytic activation in a diffraction-limited volume.
3 ium sulfate with methylglyoxal changes under photolytic aging by UVA radiation in the aqueous phase.
5 (i)Pr)]}(2)(mu-eta(1):eta(1)-N(2)) (9) under photolytic and dark conditions, respectively, to produce
6 f dediazoniation in the IL (both thermal and photolytic) and the evolution of the products were direc
11 for photolysis, DECM-caged glutamate and its photolytic byproducts were found to be biologically iner
13 the O3 + hnu --> O((3)P) + O2(X(3)Sigmag(-)) photolytic channel at the interface, leads to an enhance
18 borylene that can be liberated by selective photolytic CO extrusion and that, although highly reacti
20 ith C60 in toluene solution under thermal or photolytic conditions produces C60{eta(1)-Ru(CO)2(eta(5)
23 xygen trapping products did not change under photolytic conditions, where dediazoniation occurs at ro
24 ion was achieved under both the tin-free and photolytic conditions; in this case, the adduct bears al
25 e-dependent paired-pulse facilitation of the photolytic currents, indicating that a change in the sub
27 ally mimicking the effect of locomotion, and photolytic damage of VIP neurons abolished the enhanceme
30 r current and previous work illustrates that photolytic dechlorinations of 2-Cl-, 3-Cl-, and 4-Cl-ani
32 In addition, product studies confirmed clean photolytic decomposition to the expected alcohol, 2-hydr
33 oduct ArF is also formed in both thermal and photolytic dediazoniation, depending on the substituent(
34 These syntheses also feature stereospecific photolytic deformylation of beta,gamma-unsaturated aldeh
37 cabromodiphenyl ether (BDE-209), that formed photolytic degradation products in tetrahydrofuran (THF)
38 , which may be linked to a TDBDPB source via photolytic degradation to more bioavailable and persiste
40 '-OH group by a thioacetyl unit, followed by photolytic deoxygenation or radical-based 2'-deoxygenati
41 the methane abundance was maintained against photolytic depletion throughout Titan's history, either
42 in the form of cyanuric acid, preventing the photolytic destruction of residual chlorine by sunlight.
43 n isotopic fractionation mechanism, based on photolytic destruction, to explain the 15N/14N and 18O/1
46 e) have been investigated by thermolytic and photolytic experiments to investigate the chemical react
48 d to solutions with SRN, indicating that the photolytic fate of select antibiotics varies for agricul
53 haracterized as the radical 5b, based on its photolytic generation in the less polar CH(3)CN and on i
54 the appearance of vinylcyclopropyl following photolytic generation of pentadienyl is more likely the
57 dary C(sp(3) )-H bonds, by either thermal or photolytic initiation, is supported by NMR and UV/Vis da
58 3- completely suppresses the yield of 3b The photolytic intermediate is identified as the aryloxenium
60 -metal carbonyl complexes is demonstrated by photolytic liberation of CO and subsequent intramolecula
67 ubility of the assembly was measured using a photolytic micromethod over a temperature range of 17-31
70 transporter currents (GTCs) were induced by photolytic or synaptic glutamate release and isolated ph
72 ent, the possibility of OH formation through photolytic pathways indoors has been ignored up to now.
73 ed BPs can be used as markers to distinguish photolytic PBDE transformation products from naturally p
75 ne of the reasons why the quantum yields for photolytic polymer degradation (and long-chain molecules
78 material escaping from Pluto, as well as the photolytic processing of this material into more complex
79 at it is possible to adjust and modulate the photolytic product distribution by varying the parameter
83 ccelerating growth may result from increased photolytic production of condensable organic species in
84 that Fe(III)-binding ligands can enhance the photolytic production of reactive iron species in the eu
86 ng gulls are exposed (e.g., via the diet) to photolytic products of TeDB-DiPhOBz, OH-PB-DiPhOBz and o
88 kcal/mol) and, as a result, the (laser flash photolytic) rate constants for fragmentation were essent
89 ds and the formation of the O-O bond in this photolytic reaction involve low-energy triplet states an
90 e major component (approximately 86%) of the photolytic reaction is 45 microseconds, while that of th
93 by 71% within 50 ms of the initiation of the photolytic reaction when the concentration of released D
96 -bi-1,2,3-triazolyl) undergoes unprecedented photolytic reactivity to liberate free btz (Phi363 appro
98 of the probe angle change and tension after photolytic release [Ca2+] by laser photolysis of NP-EGTA
101 ned at 0.09 ML s-1 immediately following the photolytic release of ATP and at 0.04 ML s-1 prior to th
102 ontractions were elicited at 12 degrees C by photolytic release of ATP from the P3 -1-(2-nitrophenyl)
103 rse of isometric force development following photolytic release of ATP in the presence of Ca(2+) was
105 ured on activation from the relaxed state by photolytic release of Ca2+ from a caged Ca2+ compound, n
106 ulture, including puffer pipet spritzing and photolytic release of caged effectors, each is limited i
107 We used electrophysiological recording, photolytic release of caged glutamate and a newly develo
108 and Cl(-) currents following the controlled photolytic release of caged-InsP(3) or caged-Ca(2+).
111 ors of glutamate clearance after synaptic or photolytic release of glutamate in striatal slices.
112 current evoked by uncaging Ca(2+) or by the photolytic release of higher concentrations of InsP(3).
114 the role of InsP3 in the induction of LTD by photolytic release of InsP3 from its biologically inacti
116 trypanosomes or isolated acidocalcisomes and photolytic release of IP(3) in intact trypanosomes loade
117 rlying the sEPSP was investigated with rapid photolytic release of L-glutamate from nitroindolinyl (N
118 ooth muscle, but rigor force decreased after photolytic release of Mg(2+) in the presence of ADP.
120 s, in the microsecond time scale through the photolytic release of substrates from caged compounds.
126 on resonance mass spectrometry of N(2)/CH(4) photolytic solid products at 60 and 82.5 nm indicates th
127 cordingly, the rate limitation in the second photolytic step originates from a slow calcium-induced d
135 , we addressed this question by applying the photolytic uncaging approach to induce focal increases i
138 -activation of presynaptic GABA receptors by photolytic uncaging of RuBi-GABA has a biphasic effect o
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