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1 uency), and medium optical properties (e.g., extinction coefficient).
2 metric detection, thanks to their high molar extinction coefficient.
3 bsorption and estimating by means of a molar extinction coefficient.
4 attering and also on a correct value for the extinction coefficient.
5 is is nearly a doubling of the band averaged extinction coefficient.
6 photobleaching and 10-100 times higher molar extinction coefficient.
7 different structure types to have different extinction coefficients.
8 ure their hypochromicity and determine their extinction coefficients.
9 vation of oil quality, as indicated by lower extinction coefficients.
10 ation may have been obtained using different extinction coefficients.
11 incorrect lifetimes and underestimated mass extinction coefficients.
12 y the orders of magnitude variation in molar extinction coefficients.
13 tructures share an apparent maximum in their extinction coefficients.
14 -I substituents, mostly due to higher molar extinction coefficients.
15 ably parts per billion) with very high molar extinction coefficients.
16 ed as a change in fluorescence intensity and extinction coefficients.
17 line widths inversely proportional to their extinction coefficients.
18 ectly absorbs both UVA and UVB light with an extinction coefficient 10-100 times that of opsins and c
19 ectral overlap, low quantum efficiencies and extinction coefficients [10], or rapid photobleaching [6
20 tly blue-shifted from thioindigo, with molar extinction coefficients 17-70% higher compared to thioin
21 42/670-nm excitation-emission peaks, a large extinction coefficient (180,000 M(-1)cm(-1)) and quantum
22 in concentration by linear regression (molar extinction coefficient 23.2 (+/-0.3)x10(3)M(-1)cm(-1)).
23 lix[n]phyrins 4 and 5 display extremely high extinction coefficients (3.67 and 4.82x10(5) m(-1) cm(-1
24 gated TTA pi-bridge, these dyes exhibit high extinction coefficients (4.5-5.2 x 10(4) M(-1) cm(-1)).
26 porphyrin, cyclo[8]pyrrole (CP), with a high extinction coefficient (89.16 L/g.cm) within the second
31 chia coli, we have accurately determined the extinction coefficient and cluster content of the enzyme
32 sed for protein labeling because of its high extinction coefficient and fluorescence emission quantum
33 transduction resulting in a doubling of the extinction coefficient and improving the resulting fluor
35 We now show that DsRed has a much higher extinction coefficient and quantum yield than previously
36 dependent tunability of emission wavelength, extinction coefficient and quantum yield through distinc
37 ggregates also show up to a 25% reduction in extinction coefficient and significantly lower heating (
38 n, resulting in cuprophilic sensitization in extinction coefficient and solid-state photoluminescence
39 erve as a light collector that increases the extinction coefficient and transfers excitation energy t
40 e, having approximately 660,000 M(-1) cm(-1) extinction coefficient and up to 40% quantum yield, wher
41 fective masses) and optical properties (high extinction coefficient and wide absorption) suitable for
42 bance at 260 nm is simulated using published extinction coefficients and computed base pair probabili
43 NMR techniques further enables us to extract extinction coefficients and construct sizing curves for
44 indicated a strong correlation between molar extinction coefficients and decreasing energy gaps betwe
45 well as online methods to determine protein extinction coefficients and dn/dc values both unconjugat
47 roscopy showed little difference between the extinction coefficients and quantum yields of wtGFP and
49 mber density were experimentally controlled, extinction coefficients and scattering coefficients were
50 the visible spectral region with high molar extinction coefficients and significantly enhanced fluor
51 dampen metal/substrate peaks, ensuring high extinction coefficients and spectral purity for biosensi
52 d detection is desirable because of the high extinction coefficients and strong distance-dependent op
54 The assay can also be used to determine PA extinction coefficients and to measure binding kinetics;
55 rcome enhancement in canopies with low light extinction coefficients and/or leaf area, pointing towar
56 anisotropies in refractive index and optical extinction coefficient, and can therefore probe structur
57 chromophore due to its photostability, large extinction coefficient, and high triplet yield, but the
59 ltaneous measurements of aerosol scattering, extinction coefficient, and soot mass concentration.
60 sent a blue-shifted absorption, higher molar extinction coefficients, and higher E(ox) values compare
61 asurements were made of refractive index and extinction coefficient anisotropies with two exciting li
62 bound to ds calf thymus DNA) and large molar extinction coefficient (approximately 70,000 cm-1 M-1).
63 Absolute molecular number concentration and extinction coefficient are simultaneously determined fro
64 spectra of oligomers having these backbones, extinction coefficients are obtained and compared to oth
65 We show that the experimentally determined extinction coefficient (around 5.0 cm(-1) g(-1) L depend
66 absorptions in the near-UV region show molar extinction coefficients as high as ca. 3.5 x 10(5) M(-1)
73 denaturations monitored by the change in the extinction coefficient at 695 nm, which is sensitive to
74 include red-shifted excitation and a higher extinction coefficient at the preferred uncaging wavelen
77 ld analogues and due to their vastly greater extinction coefficient both visual and absorption analys
80 ng is formally analogous to that of apparent extinction coefficient data for optical binding titratio
81 ther positions led to the increment in molar extinction coefficients due to the increase in the chrom
82 s a great enhancement of absorptivity (molar extinction coefficient epsilon > 42,000 M(-1) cm(-1)), u
83 tarting with the 19 dye, which shows a molar extinction coefficient epsilon of over 14,000 M(-1) cm(-
85 states, endowing Ar-Iso and Rf-Iso with high extinction coefficient (epsilon approximately 10(5) M(-1
86 g particles exhibit brightness values (molar extinction coefficient (epsilon) x quantum yield (Phi))
87 s redshifted absorption, a fast rising molar extinction coefficient (epsilon), and markedly boosted f
88 tuents in the alkenyl moiety with high molar extinction coefficients (epsilon up to 88,200 M(-1) cm(-
89 ficient emission (Phi(total) >/= 50%), large extinction coefficients (epsilon(max) >/= 20,000 M(-1) c
91 with respect to values of lambda(max), molar extinction coefficients (epsilon), bandwidths at half-he
92 to assemble new chromophores with high molar extinction coefficients (epsilon), whose absorption feat
93 c shifts in absorption of up to 500 nm, with extinction coefficients exceeding 30,000 M(-)(1) cm(-)(1
95 a mutant of GFP with a significantly larger extinction coefficient for excitation at 488 nm with a r
96 rst amplitude and kinetics suggests that the extinction coefficient for the cinnamoyl acyl-enzyme is
98 leaf area index (LAI) data and an empirical extinction coefficient for V(cmax) , and converted to an
100 that nearly all of the previously published extinction coefficients for the nucleoside-5'-monophosph
103 s uniformity, the first nanoparticle optical extinction coefficients for these eight shapes were anal
105 90 nm, high fluorescence quantum yield, high extinction coefficient), good photostability, minimal ag
106 ission profiles >650 nm and high brightness (extinction coefficient >140,000 M(-1) cm(-1) and fluores
107 sion maxima of 684 and 708 nm, respectively; extinction coefficient >90,000 M(-1) cm(-1); and quantum
108 without the perylene trap exhibit high molar extinction coefficients (>10(5) M(-1) cm(-1)) and high f
110 -PNPs are demonstrated to have strong NIR-II extinction coefficient, high photostability and excellen
111 mes is used to determine that the resorcinol extinction coefficient in 1100 EW PSA membrane has a val
112 elding a non-fluorescent sonophore with high extinction coefficient in the near infrared that increas
113 nanoshells used were designed to have a peak extinction coefficient in the NIR, where penetration of
114 they have a high thermal conductivity, a low extinction coefficient in UV-vis spectral range, and sta
115 t are shifted to lower energies with smaller extinction coefficients in comparison to those for NCTPP
117 obtained for refractive indices and optical extinction coefficients in these two directions, as well
118 (rFAP) exhibited identical pH optima of 7.5, extinction coefficients (in(280 nm)(1%)) of 20.2 and 20.
120 -1 absorbs UV photons with an unusually high extinction coefficient, involving essential tryptophans.
122 10-fold decrease in the charge transfer band extinction coefficient is found for the complex with the
123 rbance of CdSe at lambda = 350 nm, where the extinction coefficient is independent of size, and the d
124 NA modifications database of UV profiles and extinction coefficient is reported within a 2.3-5.2 % re
125 ptical bandgap (E(g)), refractive index (n), extinction coefficient (k), optical conductivity (sigma(
127 al range between 300 and 800 nm witnesses an extinction coefficient larger than 100 000 M(-1) cm(-1).
128 a selective metallochromic sensor with high extinction coefficient, low quantum yield, and high phot
130 ptically determined molar concentrations and extinction coefficients match gravimetric determinations
131 (PMO) structure, suggests that the UV-260 nm extinction coefficient may need to be re-established for
132 hange resulted in enhanced brightness (i.e., extinction coefficient multiplied by fluorescence quantu
133 al ions and oxidoreduction cofactors, and an extinction coefficient of (6.2 +/- 0.4) x 10(4) M-1 cm-1
134 ibit an absorbance maximum at 288 nm with an extinction coefficient of 1,500 M(-1) small middle dotcm
135 gap of 1.49 eV in thin film and a high molar extinction coefficient of 1.90 x 10(5) m(-1) cm(-1) in s
137 est case, a photocage was identified with an extinction coefficient of 124000 M(-1) cm(-1), a quantum
138 low reactivity of (3) with (2) and the high extinction coefficient of 2-nitro-5-thiobenzoate produce
139 sing a copper-coated cadmium reagent with an extinction coefficient of 29,500 M(-1) cm(-1) and a dete
140 h has an absorption maximum of 489 nm and an extinction coefficient of 37,615, to facilitate visible
141 optical (NLO) responses, with the nonlinear extinction coefficient of 374 cm GW(-1) , much higher th
147 thod that can be used to determine the molar extinction coefficient of a light-generated metastable s
148 ally, the protocol was used to determine the extinction coefficient of alloyed semiconductor nanopart
149 e pink membrane analog, dIbR485, has a molar extinction coefficient of approximately 39,000 cm-1 M-1
152 ayed an absorption maximum at 464 nm with an extinction coefficient of epsilon 464 = 11700 M-1 cm-1.
156 results show that the transition energy and extinction coefficient of the 2S(h3/2)1S(e) excitonic ba
159 Moreover, we determine the absolute molar extinction coefficient of the CT transition for an arche
160 er is approximately 100 times lower than the extinction coefficient of the donor chromophore involved
162 ive amino acid analysis, we have revised the extinction coefficient of the HIV-1 RT heterodimer and s
163 e reactions slowed down but, due to the high extinction coefficient of the Lewis acid/dihydropyridone
166 ine type chromophore ( (max) 542, 546 nm, 1% extinction coefficient of the sodium salt = 244 2).
167 een in use for many years, the correct molar extinction coefficient of this complex ion under FRAP as
168 Cu center at 280, 390, 500, and 720 nm have extinction coefficients of 13.9, 7.0, 2.2, and 0.9 mM(-1
169 orption maxima at 323 and 326 nm, with molar extinction coefficients of 2100 and 2900 M-1 cm-1, for B
170 n of total nitric oxide/nitrite levels using extinction coefficients of 38,000 and 36,900 M(-1) cm(-1
175 bsolute concentrations were calculated using extinction coefficients of each of the RNA modifications
176 nature even at elevated temperature, and the extinction coefficients of nucleic acids are also affect
177 nown structures, absorbance frequencies, and extinction coefficients of residues and cofactors, analy
182 ous species because of their relatively high extinction coefficients, outstanding fluorescence quantu
183 ion and emission to red and increasing their extinction coefficient, photostability, and sensitivity
184 in terms of light sensitivity (higher molar extinction coefficient), photoswitch efficiency (higher
185 ured Stark tuning rates, peak positions, and extinction coefficients provide the primary information
190 orted, for the first time, a highly accurate extinction coefficient ratio for metallic to semiconduct
191 axima, Stokes shifts, vibronic progressions, extinction coefficients, Stark tuning rates, and spontan
192 ause the released dye (resorufin) has a high extinction coefficient, substantially lower amounts are
194 he hypsochromic wavelength shift and reduced extinction coefficient suggest that the polar perfluoros
196 of 9-cis astaxanthin, with its higher molar extinction coefficient than that of all-trans-astaxanthi
197 was also characterized with 1.3-fold higher extinction coefficient that together with FQY resulted i
198 ectroscopy (DRIFTS) with known site-specific extinction coefficients to quantify the fraction of Rh s
203 tween theoretical and experimental values of extinction coefficients, where the latter is affected by
204 CPPs have tunable emission, possess large extinction coefficients, wide effective Stokes shifts, a
206 ted, the nonempirical approximations yielded extinction coefficients within 20% of the measured value