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1 the redox capable molecules it relies on are chromophoric.
2                                  A novel pai-chromophoric 1,4-bis(anthracenylethynyl)benzene (BAB)-ba
3 ld-splitting-induced transitions between the chromophoric (2)T(1) and (4)T(1) states (1-Pd and 1-Pt)
4 d on the selective consumption of the highly chromophoric 4-nitrothiophenolate by thiaminase I, resul
5 ad to exquisite control in the regulation of chromophoric absorption properties, spanning the visible
6 n used to describe the optical properties of chromophoric aggregates, is solely a transition dipole c
7 carboxylation reaction, was studied with the chromophoric alternate substrate (E)-2-oxo-4(pyridin-3-y
8  PTE variants toward the S(P)-enantiomers of chromophoric analogues of GB, GD, GF, VX, and VR have be
9 the hydrolysis of the R(P) enantiomer of the chromophoric analogues of sarin and cyclosarin, whereas
10 nts sarin (GB) and cyclosarin (GF) and their chromophoric analogues.
11                                          The chromophoric and fluorescent coenzyme A analogues pyrene
12          The (2)T(1) state equilibrates with chromophoric and NN radical-derived excited states, resu
13 ding electronic communication among multiple chromophoric and redox units requires construction of we
14 tion of a panel of eight Abs elicited to the chromophoric antigen 8-methoxypyrene-1,3,6-trisulfonate
15 amined a panel of antibodies elicited to the chromophoric antigen fluorescein.
16 cent years owing to the occurrence in unique chromophoric architectures and consequent emergent prope
17 nder a lattice structure that reminisces the chromophoric arrangement in the light harvesting system
18                         Orthogonally stacked chromophoric arrays are considered as a highlighted arch
19 lent interactions in the assembly of ordered chromophoric arrays.
20  is a key photoinduced process in biological chromophoric assemblies.
21 s toward design strategies for cross-stacked chromophoric assemblies.
22                        Similar tuning of the chromophoric behavior of the enzyme-bound CEAS acryloyl.
23 ition experiments between moenomycin and the chromophoric beta-lactam nitrocefin.
24                                              Chromophoric biomolecules are exploited as reporters of
25 al structure determination of asymmetric pai-chromophoric bola-amphiphilic BAB1 (dodecyl and triethyl
26 c covalent bonds (boronate esters) and small chromophoric building blocks appended with terminal boro
27 et of 11,12-dihydrorhodopsin also leads to a chromophoric C12/C13 twist conformation with the 13-Me i
28    Limited proteolysis, NMR spectroscopy and chromophoric calcium chelation experiments showed that t
29  between a nonracemic chiral substrate and a chromophoric, CD-silent probe that is achiral or exists
30 nzene and the 6-pyrazolyl-2-phenoxylpyridine chromophoric chelate are synthesized.
31                           In this study, the chromophoric chelator 2,2',2"-terpyridine (terpy) has be
32 ion NMR, intrinsic protein fluorescence, and chromophoric chelator methods to be approximately 50 mic
33 nts, directly measured by competition with a chromophoric chelator, and the concerted binding-conform
34 mined by replacing the active-site zinc by a chromophoric cobalt atom.
35 , and a smaller protein, AhpC, which lacks a chromophoric cofactor.
36 y important for applications involving multi-chromophoric conjugated polymers where interactions betw
37 tively, from competition titrations with the chromophoric Cu(I) ligand bathocuproine disulfonate.
38 l2 is rapidly captured by oxygen to afford a chromophoric dichlorocarbene carbonyl oxide.
39 lene tetracarboxylic diimide (PTCDI) and its chromophoric dimer as a function of conformation to rela
40         Singlet oxygen ((1)O(2)) and triplet chromophoric dissolved organic matter ((3)CDOM*) are pho
41                        Excited triplet state chromophoric dissolved organic matter ((3)CDOM*) is a sh
42  as a probe and quencher for triplet-excited chromophoric dissolved organic matter ((3)CDOM*), an imp
43 ormed by reaction with the triplet states of chromophoric dissolved organic matter ((3)CDOM*).
44 be the oxidative properties of triplet-state chromophoric dissolved organic matter ((3)CDOM*).
45 e unveil molecular transformations of marine chromophoric dissolved organic matter (CDOM) across the
46 molecular basis of the optical properties of chromophoric dissolved organic matter (CDOM) and humic s
47                                       Marine chromophoric dissolved organic matter (CDOM) and its rel
48 and quality of its photosensitizers, chiefly chromophoric dissolved organic matter (CDOM) and nitrate
49 wever, the roles of the functional groups of chromophoric dissolved organic matter (CDOM) and the fat
50 on of 1O2 in irradiated solutions containing chromophoric dissolved organic matter (CDOM) by using mo
51 ment of whether correlations existed between chromophoric dissolved organic matter (CDOM) characteris
52 is supports the notion that some oil-derived chromophoric dissolved organic matter (CDOM) components
53 gen ((1)O(2)) generation quantum yields from chromophoric dissolved organic matter (CDOM) have been r
54 e-electron reductants (OER) photoproduced by chromophoric dissolved organic matter (CDOM) have been s
55                        The photobleaching of chromophoric dissolved organic matter (CDOM) is consider
56 their indirect photolysis in the presence of chromophoric dissolved organic matter (CDOM) is poorly u
57 roduced photochemically in natural waters by chromophoric dissolved organic matter (CDOM) via the rea
58 ion of oligopeptides in solutions containing chromophoric dissolved organic matter (CDOM) was assesse
59 n monoxide (CO) photoproduction from natural chromophoric dissolved organic matter (CDOM).
60 te in cold waters, involving ROS mediated by chromophoric dissolved organic matter (CDOM).
61 ansformations of Cys in solutions containing chromophoric dissolved organic matter (CDOM).
62  concentrations of dissolved organic carbon, chromophoric dissolved organic matter (DOM), and fluores
63          Algal biomass and pigments impacted chromophoric dissolved organic matter concentrations.
64 ial importance, including the way irradiated chromophoric dissolved organic matter in surface waters
65                                              Chromophoric dissolved organic matter in the excited tri
66                         Spectral analyses of chromophoric dissolved organic matter showed wide tempor
67 2)) is photoproduced by humic substances and chromophoric dissolved organic matter was probed by exam
68 *)OH, (1)O2, and (3)CDOM* (triplet states of chromophoric dissolved organic matter).
69 and possibly also with the triplet states of chromophoric dissolved organic matter.
70 ering, we establish a link between the inter-chromophoric distances and emerging transport properties
71 pectroscopy for structural studies of highly chromophoric DNA complexes.
72  to investigate the potential variability of chromophoric DOC (CDOC).
73 s role in the production of optically active chromophoric DOM (CDOM) and a subset of fluorescent DOM
74                       Upon light absorption, chromophoric DOM (CDOM) can sensitize the formation of d
75                            While half of the chromophoric DOM (CDOM) was removed by flocculation, app
76  from raw waters with noticeable presence of chromophoric DOM (CDOM), which is assumed to originate f
77                             In the dyads the chromophoric electron donors 4-(N-pyrrolidinyl)- and 4-(
78                           The self-assembled chromophoric films exhibit a dramatically blue-shifted o
79 upport the earlier model that nph1 is a dual-chromophoric flavoprotein photoreceptor regulating photo
80      Single molecule fluorescence studies on chromophoric foldamers reveal that the maximum domain le
81 ersion between neutral cis and anionic trans chromophoric forms, mutations tune photoisomerization an
82 esponse to initial photoisomerization of the chromophoric group.
83  structure for methanobactin shows these two chromophoric groups forming an N2S2 binding site for a s
84                     Solar photoexcitation of chromophoric groups in dissolved organic matter (DOM), w
85 the labelled nucleic acid sequences, the FNA chromophoric groups should resemble the natural nucleoba
86 ted or shorter-chain acceptors with the same chromophoric headgroup compared at identical concentrati
87 l purification trials were plagued both by a chromophoric impurity which was difficult to remove and
88                                            A chromophoric inhibitor of the enzyme is used as a spectr
89         Under pre-steady-state conditions, a chromophoric intermediate (I320) is observed that accumu
90         P decays spontaneously to the highly chromophoric intermediate, compound Q (Q).
91 levulinate (ALA) indicated various transient chromophoric intermediates.
92 pproach is the bifunctional behaviour of the chromophoric iridium hydride photocatalyst.
93                           Here we employ the chromophoric l-Trp analogue, trans-3-indole-3'-acrylate
94                                     Although chromophoric labels may be used to enhance the spectral
95 ld(I)-complexes (1-6) containing pyrenyl-NHC chromophoric ligand (NHC = N-heterocyclic carbene) has b
96 monstrated that the UV/visible spectrum of a chromophoric ligand, trans-3-indoleacryloyl-coenzyme-A (
97 molecule also contains coelenterazine as its chromophoric ligand.
98  self-assembly of Zn2+ ions and tetradentate chromophoric ligands based on quinaldichydroxamic acid (
99 nergy transfer (FRET) between fluorescent or chromophoric ligands for each binding site were employed
100 xes, excited by the electronic states of the chromophoric ligands, showed the presence of characteris
101 ramework, denoted as PCN-128W, starting from chromophoric linker and zirconium salt.
102              Here we show that a predesigned chromophoric linker with extremely poor ISC efficiency (
103 operties that stem from the highly organized chromophoric linkers within their frameworks.
104 method obviates the general prerequisite for chromophoric metal ligands to generate chiroptical signa
105 nstrates the intricate role of aliphatic and chromophoric moieties in natural organic matter in the p
106 nes two main features: (i) it must include a chromophoric moiety that possesses a large molar absorpt
107 metal-organic frameworks (MOFs) can assemble chromophoric molecules into a wide range of spatial arra
108 nd polyhydroxylated aromatic rings (PHA) and chromophoric mono- and polyhydroxylated quinones (PHQ),
109                                          The chromophoric multilayers have been characterized by tran
110                                    Given the chromophoric nature of aryl groups and the known suscept
111 esults explain the interfacial production of chromophoric nitrocatechols that modify the absorption p
112                  Nucleodyes, visibly colored chromophoric nucleoside analogues, are reported.
113  enabled by rapid isolation and detection of chromophoric or fluorescent glycosylated natural product
114 ed, and NO(y) production is less affected by chromophoric organic matter sinks in the bulk phase.
115 )O(2)), formed by indirect photochemistry of chromophoric organic matter.
116 a Cruz, Bolivia, we studied light absorbing (chromophoric) organic or "brown" carbon (BrC) with surfa
117  cleavage site have all been replaced with a chromophoric p-nitroaniline moiety which is directly lin
118 he enzymatic activity was followed using the chromophoric p-nitrophenyl-phosphorylcholine as a model
119 resceins bearing a carboxyethyl group in the chromophoric portion of the dyes were prepared by a reac
120 point is observed in overlaid spectra when a chromophoric precursor is converted to a product with a
121 e heart ferricytochrome c (Cyt c) is a novel chromophoric probe for investigation of the mechanism of
122 hiral alcohol (inducer) to the stereodynamic chromophoric probe through cooperative interactions.
123 pesticides to form stoichiometric amounts of chromophoric products that absorb light at specific wave
124                             Furthermore, the chromophoric properties of the quinone moiety can be lev
125 e pyridinium nitrogen that is perturbing the chromophoric properties.
126 ons of light-absorbing molecules embedded in chromophoric proteins.
127 along each branch of the V-shaped array, two chromophoric relays differ only slightly in terms of the
128 f silver clusters for sensing: they are both chromophoric reporters and ligands that modulate analyte
129    In a previously published structure, both chromophoric residues contain a thiocarbonyl attached to
130 obactin comprises seven amino acids plus two chromophoric residues that appear unique to methanobacti
131 xyimidazolate rings form the core of the two chromophoric residues.
132    Thus an interaction between opsin and the chromophoric ring shifts the spectral maxima of the red
133 these movements involving a flip-over of the chromophoric ring trigger changes in cytoplasmic membran
134 ociated linear and NLO properties of the new chromophoric salts.
135 ociated linear and NLO properties of the new chromophoric salts.
136  DNA oligonucleotides serve as templates for chromophoric silver clusters and as recognition sites fo
137 12 also was shown to be associated with this chromophoric site.
138                We examined the photolysis of chromophoric soil DOM coated onto hematite nanoplatelets
139 ulations aided the assignment of the trapped chromophoric species (3) as a nickel-hypochlorite specie
140 ds to Fe(II)TauD prior to the formation of a chromophoric species.
141 rate (S)-styryl-alpha-alanine that yielded a chromophoric styrylacrylate product upon deamination by
142  multistep anaerobic binding reaction of the chromophoric substrate 4-nitrocatechol (4NC) is shown to
143  Cryoenzymologic experiments with use of the chromophoric substrate 6-N-[3-(2-furanyl)-propen-2-oyl]-
144  The reaction of benzaldehyde lyase with the chromophoric substrate analogue ( E)-2-oxo-4(pyridin-3-y
145 he ESI-MS assay presented herein requires no chromophoric substrate or product, and the analysis time
146 of all six mutants with both DNA and a small chromophoric substrate, thymidine-3',5'-di(p-nitrophenyl
147 trically by the employment of an artificial, chromophoric substrate.
148 ficient induction of optical activity in the chromophoric system is observed.
149 e first time in the ever-versatile pentacene chromophoric systems can offer an extensive ground for t
150 highlights the possibility to employ doublet chromophoric systems for light-harvesting and energy upc
151 excitonic coupling within these cyclic multi-chromophoric systems.
152 zation of peptides that generates an inbuilt chromophoric triazene moiety at the site of cyclization
153  state, which possesses (bpy(*-))Pt(CAT(*+)) chromophoric triplet character.
154 explained by centrosymmetric stacking of the chromophoric Tyr66 and the neighboring Tyr203 residue.
155                 Complexation of the cationic chromophoric units in cucurbit[7]uril (CB7) hosts decrea
156 he second involves the covalent insertion of chromophoric units into the macromolecule backbone or si
157 nd efficient electronic interactions between chromophoric units such as energy or electron transfers.
158 ash photolysis (LFP) experiments, CCl2 forms chromophoric ylides or oxides with pyridine, 2-picoline,
159        Zinc competition titrations employing chromophoric Zn(II) indicators provide a 2:1 Zn(II):CP s

 
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