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1 o yield an optical color change from blue to colorless.
2  [Fe(III)(HCOO)(3)].HCOOH, both of which are colorless.
3  the visible region distinguishing them from colorless 1 and 2a.
4  an electron transport chain and convert the colorless 15-cis-phytoene to the red-colored all-trans-l
5  The samples were divided in two categories: colorless (22 samples) and colored (22 samples).
6 process due to reaction with quinone to give colorless adduct.
7       These compounds are isolated as nearly colorless, air-stable crystals.
8                                    Clear and colorless amphiphilic networks could be achieved when lo
9                          Reversible color-to-colorless and color-to-color transitions were demonstrat
10 ate constants for the conversion between the colorless and colored complexes.
11 .e., differences in the absorption maxima of colorless and colored forms, observed for a rationally d
12 ifficult to study because the iron is nearly colorless and EPR silent.
13                                              Colorless and highly transparent copolymers of poly(mono
14 atalyzed oxidation of Amplex Red, which is a colorless and nonfluorescent derivative of dihydroresoru
15                              The crystalline colorless and yellow polymorphs are both luminescent at
16 ) is a naturally occurring chemically inert, colorless, and odorless radioactive gas produced from th
17                        Samples were sterile, colorless, and radiochemically pure (100%); maintained t
18 solution and nitrite at -40 degrees C remain colorless at -160 degrees C but turn amber-brown when wa
19 n peripheral nerves (erbb2, erbb3, and sox10/colorless), axons form numerous aberrant sodium channel
20                               The previously colorless birefringent images of organelles, cells, and
21               Each polymorph melts to give a colorless but luminescent liquid which reverts to the ye
22 he apo-HppE from Streptomyces wedmorensis is colorless, but turns green with broad absorption bands a
23 ost of the abundant natural phyllobilins are colorless, but yellow phyllobilins (phylloxanthobilins)
24 ete loss of p1 function indicated by pink or colorless cob glumes.
25 iminated by adding fluoride ions to form the colorless complex FeF6(3-).
26  structure of IACoA remained unchanged (the "colorless" complex), followed by a slow isomerization st
27 L-3, that form well-defined, air-stable, and colorless complexes with Cu(I) in aqueous solution.
28 ximate 30 min lag time, using disposable and colorless contact lenses.
29 ser Au...Au separations than are seen in the colorless counterparts.
30 as a strong propensity to recrystallize to a colorless crystalline phase.
31                                          The colorless crystalline solid DABCO.(SO(2))(2) was used as
32 ether react with CO at -78 degrees C to form colorless crystals of the (CO)(1-) radical complex, {[(R
33 gion in a strip-like muPAD and the number of colorless detection microzones in a multi-zone muPAD.
34                    In addition, an isolable, colorless dimer, Mn(2)(mu-NHPh)(2)(NR(2))(2)(THF)(2), wa
35                                            A colorless end point, at which the blue color is complete
36                               This yielded a colorless enzyme preparation, a band of approximately 10
37 ions, respectively, during the conversion of colorless etiolated seedlings into green, photosynthetic
38 oaded into the selective film is oxidized to colorless Fe(bipy)3(3+), which gives rise to an absorban
39  oxidized blue-colored form into the reduced colorless form.
40  and [(C(6)H(11)NC)(2)Au(I)](PF(6)) into the colorless forms are reported along with related studies
41       Crystallographic studies of yellow and colorless forms of [(C(6)H(11)NC)(2)Au(I)](PF(6)) show t
42                  The Cnr mutation results in colorless fruits with a substantial loss of cell-to-cell
43 tands, converting yellow-orange solutions to colorless; however, addition of 18-crown-6 binds the KPF
44 icarbene zinc compound (cAAC)2Zn (2) and the colorless hydrogenated zinc compound (cAACH)2Zn (3), res
45  quantitative yield along with well-defined, colorless hydroquinone byproducts.
46 4 times faster electron transfer affords the colorless hydroquinone.
47 ographic structures of PYP in the ground and colorless I2 states allowed us to design mutants and to
48 ady decrease with time until the protein was colorless in the near UV/visible region.
49 lue of 0.04, the aqueous phase is considered colorless, indicating that the end point has been reache
50 e, [nBu(4)N(+)](2)[BABCO][BABCO(-)](2), is a colorless insulator where the dicarboxylic acid cocrysta
51 his sensor stems from its ability to take up colorless iron ion (Fe2+) from solution and complex it w
52                              The reaction of colorless iron(II) formate or the mixed-valence cluster
53                   The P1-wr allele specifies colorless kernel pericarp and red cobs, whereas Ufo1 mod
54  anthocyanin-pigmented kernels in maize from colorless kernels of its progenitor, teosinte.
55 romatic switches (blue-to-green and green-to-colorless), leading to trackability and spatiotemporal c
56 omote the reduction of methylene blue to its colorless leuco form.
57 n land plants, chlorophyll is broken down to colorless linear tetrapyrroles in a highly conserved mul
58 tion of dye crystallites naturally extend to colorless molecular crystals.
59                          When supplied with (colorless) molybdate Indian mustard (Brassica juncea) se
60             The 360 nm band in both LIBM and colorless monomer originates from a Schiff base-reduced
61             Both the PM-->LIBM and monomer-->colorless monomer photoconversions are mediated by simil
62   Monomeric BR forms a previously unreported colorless monomer photoproduct which lacks a chromophore
63 , and the oxygenase was purified as a stable colorless N-terminally His-tagged protein.
64 utant) Saccharomyces cerevisiae subjected to colorless native polyacrylamide gel electrophoresis in t
65 ening is likely to be the gene at the tomato Colorless non-ripening (Cnr) locus.
66 rinogen IX, the tetrapyrrole substrate, is a colorless nonfluorescent compound.
67 mes") mediate the NADH-driven oxidation of a colorless, nonfluorescent phenoxazine dye (Amplex Red) t
68 se anilinomethylrhodamines (AnMR) maintain a colorless, nonfluorescent spirocyclic structure at high
69 ast, [Au[C(NMe(2))(NHMe)](2)](PF(6)) forms a colorless, nonluminescent solid, and in that solid there
70     Upon freezing in a liquid N(2) bath, the colorless, nonluminescent solutions of [Au[C(NHMe)(2)](2
71 t the ripening-specific transcription factor COLORLESS NONRIPENING gene locus, further clarifying the
72 es show reversible photochromism between the colorless off and the deeply colored on states when irra
73 traightforward procedure resulted in CILs as colorless oils at room temperature in good yields.
74 bserved when the diarylethene unit is in the colorless open form.
75 e green and the other half of the cells were colorless or clear.
76                                          The colorless or pale yellow crystals are remarkable for the
77 h luminescent at 298 K, lambda(max): 424 nm (colorless) or 480 nm (yellow).
78 e, colored moiety could be incorporated in a colorless organic compound with the aim of generating hi
79       The P1-wr allele conditions a white or colorless pericarp and a red cob glumes phenotype.
80   Recombination was scored by the numbers of colorless pericarp sectors (somatic frequency) and herit
81 patterns of the P-wr allele, which specifies colorless pericarps and red cob tissues.
82       RNA transcripts of P-wr are present in colorless pericarps as well as in the colored cob tissue
83  to a TAG codon to yield DNA substrates with colorless plaque phenotypes.
84 otosynthetic plants and algae still retain a colorless plastid and an associated genome, which perfor
85 toma members have retained a genome in their colorless plastid.
86                                       In the colorless polymorph the gold cations form linear chains
87       Crystallographic studies show that the colorless polymorphs, which display blue luminescence, a
88                                     Although colorless, Polytomella spp. have a plastid, but it is st
89 absorption spectra, exposure of the reduced (colorless, presumably diferrous) DcrH-Hr to air resulted
90 dilute solutions of 7 are yellow but produce colorless products when exposed to low concentrations of
91  an oxidative pathway leading to Fe(III) and colorless products.
92                                          The colorless protein contained 2 mol of iron per mol of pro
93 ike common rubredoxins, the HoxR protein was colorless, rather unstable, and essentially metal-free.
94                                          The colorless resin's good light transmittance (>60% transmi
95  of all samples, Czech, Hungarian and Slovak colorless samples were properly classified in both the c
96    Crystalline piroxicam anhydrate exists as colorless single crystals irrespective of the polymorphi
97                                            A colorless solid, mp 52 degrees C, it sublimes readily at
98 for all adducts, yielding fully transparent, colorless solutions and films.
99                                              Colorless solutions of the two polymorphs have identical
100 ion when irradiated at 350 nm, forming a new colorless species B nearly quantitatively.
101 ible, optically driven transitions between a colorless spiro (SP) state and a brightly colored merocy
102 ical control of the colorful merocyanine and colorless spiro states of the NitroBIPS acceptor, donor
103 e three states of the molecular switch are a colorless spiropyran, a purple trans-merocyanine, and it
104        Stretching a macromolecule containing colorless STP converts it into green thiomerocyanine (TM
105     The peroxidase catalyzes conversion of a colorless substrate to a colored product which can be qu
106 nsferase (DlaT)/alkylhydroperoxide reductase colorless subunit gene (ahpC)-neighboring subunit (AhpD)
107 he stoichiometry of thiosulfate oxidation by colorless sulfur bacteria have failed to demonstrate mas
108 gnized that although ionic liquids should be colorless, they are frequently not.
109 r, leading to a pronounced color change from colorless to blue and to the development of intense Rama
110 ased on selective color change of paper from colorless to blue-black via formation of iodine-starch c
111 he sol-gel sensor film turns the sensor from colorless to dark yellow/brown, also visible to the nake
112             Thus WO3 is metallic but remains colorless, unlike other methods to realize tunable elect
113              In contrast, the bonding in the colorless uranium(IV) azido complex is purely ionic in n
114                   The crystal structure of a colorless variant of green fluorescent protein (GFP) con
115 entration-controlled deposition of a single, colorless, water-based ink containing a reversible cross
116      Here, we demonstrate that the initially colorless Y66L variant, designed to trap chromophore pre

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