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1  direct band gap of 1.45-1.65 eV and a large absorption coefficient.
2 ubstituents, influencing the values of molar absorption coefficient.
3  by the theoretical calculation of the sound absorption coefficient.
4 hich contrast originates from the materials' absorption coefficient.
5 ton binding energy; and (iii) a high optical absorption coefficient.
6 se temperature control to measure the liquid absorption coefficient.
7 xidation state determines a variation of the absorption coefficient.
8 d yielding further increase in the effective absorption coefficient.
9 which is a direct result of the film's large absorption coefficient.
10 and are not related to differing DHA bilayer absorption coefficients.
11 photon absorbers, exhibiting high two-photon absorption coefficients.
12 overing reduced scattering (5-26 cm(-1)) and absorption coefficients (0-10 cm(-1)) in hemoglobin-base
13 tion with a low band gap of 1.55 eV and high absorption coefficient (1.3x10(5) cm(-1) ).
14             Additionally, it displays a high absorption coefficient (10(5) cm(-1)) in the visible spe
15 ess a direct optical band gap of 1.24 eV, an absorption coefficient ~10(5) cm(-1) through the visible
16 e porphyrin acceptor, we obtain an effective absorption coefficient 12 times larger than for direct e
17 red 3-(tropon-2-yl)-indolizin-1-ols and high absorption coefficient 3-(tropolon-5-ylazo)-indolizin-1-
18 , that exhibits a strong optical absorption (absorption coefficient = 3.8 x 10(5 )cm(-1)) and a relat
19 arrower bandgap (1.43 eV) with a much higher absorption coefficient (6.15 x 10(4) cm(-1) ).
20                                      Aerosol absorption coefficient (@ 678 nm) decreases from 90 Mm(-
21 teresting properties, such as a high optical absorption coefficient (above 10(5) cm(-1)), low thermal
22 ces, including wood combustion, to PM2.5 and absorption coefficient (ABS) at home outdoor locations.
23 ulating the minimum detectable change in the absorption coefficient (alphamin) and comparing with tho
24 ined with a minimum detectable change in the absorption coefficient, alphamin(t), of 5.3 x 10(-5) cm(
25 ngly affected by changes in the out-of-plane absorption coefficients (alphaTM); they are also correla
26 t effects of RYGB on protein or carbohydrate absorption coefficients, although protein coefficients d
27 mated optical properties agree within 7% for absorption coefficient and 30% for scattering coefficien
28 ctionalization greatly improves the optical (absorption coefficient and fluorescence efficiency) and
29 rties of materials such as refractive index, absorption coefficient and gain dynamics.
30 tions can be partly attributed to their high absorption coefficient and long carrier lifetime, which
31  class of versatile semiconductors with high absorption coefficient and luminescence efficiency.
32  modifications, and without the necessity of absorption coefficient and quantum yield values.
33 ional theory calculations show that both the absorption coefficient and reflection coefficients of th
34                                          The absorption coefficient and refractive index have been me
35 ualitative analysis of the dependence of the absorption coefficient and the acoustoelectric current o
36 ions show a non-proportional increase in the absorption coefficient and the hydration number, with a
37 e excitation intensity dependence of the NLO absorption coefficient and the NLO response sensitivity.
38                  BC properties, particularly absorption coefficient and volume concentration, were ac
39 cle counter (OPC) to measure multiwavelength absorption coefficients and aerosol mass concentrations,
40 t and non-toxic nature of the elements, high absorption coefficients and band gaps commensurate with
41 SOA samples were measured, and the effective absorption coefficients and fluorescence quantum yields
42 rigidity of BN-compounds result in very high absorption coefficients and high fluorescence quantum yi
43                             Their high light absorption coefficients and long diffusion lengths sugge
44 for photocatalytic reactions, including high absorption coefficients and long photogenerated carrier
45 y-conversion efficiencies due to low optical-absorption coefficients and low quantum-conversion yield
46 andidates due to their inherent high optical absorption coefficients and minimized reflection arising
47 en analyzed in terms of refractive index and absorption coefficient, and compared with simulation res
48  thermal stability, isoelectric point, molar absorption coefficient, and effects of phosphate buffer
49 hotolysis on the molecular composition, mass absorption coefficient, and fluorescence of secondary or
50 wer-dependent Raman measurement, laser power absorption coefficient, and laser spot sizes.
51  aerosol particle size, mass, extinction and absorption coefficients, and aerosol number density, res
52 00-2500 Hz range, the reported average sound absorption coefficients are as high as 0.79, while the a
53 conductor direct-bandgap materials with high absorption coefficients are particularly promising for p
54 ith their narrow absorption spectra and high absorption coefficients, are optimal probes for fast and
55  UV/vis spectrophotometry based on the molar absorption coefficient as molecular property.
56 en acrylate photoproduction and the seawater absorption coefficient at 330 nm.
57 nomer molecular weight of 6500, gave a molar absorption coefficient at 492 nm of 6.89 mM(-1) cm(-1) w
58 rode materials and consists of recording the absorption coefficient at a fixed energy while varying a
59 ults indicated that LBO has very low optical absorption coefficient at terahertz frequencies especial
60                       Also, water has a high absorption coefficient at these frequencies and could le
61                     Quantum yields and molar absorption coefficients at 222 nm for both CBZ and NDMA
62 the spectral slope coefficients and ratio of absorption coefficients at 254 to 365 nm (E2:E3) of the
63                                     The mass absorption coefficients at 365 nm (MAC365, m(2) g(-1)C)
64 ical properties (aerosol optical depth, AOD; absorption coefficient, b(abs); mass absorption efficien
65 ncrease in water-soluble organic carbon mass absorption coefficients below 370 nm and as a drop in si
66 te measurements of BC mass concentration and absorption coefficient (beta(abs)).
67                    The calculation of the IR absorption coefficient (beta) of the gelatinized samples
68 ion in ZnCu-Por-COF enabled a high nonlinear absorption coefficient (beta=4470 cm/GW) and figure of m
69                          Observed two-photon absorption coefficients (beta ~75 cm/GW) and two-photon
70  make them panchromatic black dyes with high absorption coefficients between 200 and 800 nm.
71 (OPDs) are attractive for their high optical absorption coefficient, broad wavelength tunability, and
72 ngredient concentrations from changes in the absorption coefficient but also variation of particle si
73 Our results reveal a significant increase in absorption coefficients, by almost one order of magnitud
74 stabilisation of the flavodoxin semiquinone (absorption coefficient calculated as 4933 M(-1) cm(-1) a
75 alyzed, focusing on the dielectric function, absorption coefficient, conductivity, reflectivity, refr
76 rences (p < 0.05) among the means of optical absorption coefficient data for the folding degree and f
77 al model based on the spectral phytoplankton absorption coefficient derived from satellite ocean colo
78 photovoltaics due to their ultrahigh optical absorption coefficients, desirable band gaps and self-pa
79 rection factors were derived using iron(III) absorption coefficients determined at wavelengths common
80 ifferent temperatures show anisotropy in the absorption coefficient due to an anisotropic orientation
81           These provide a highly anisotropic absorption coefficient due to patterns created by vertic
82 ry, it requires the use of anthocyanin molar absorption coefficients (E).
83 oxo-3H-xanthen-9-yl)methyl (1), with a molar absorption coefficient epsilon of approximately 4 x 10(4
84 ntration is by measuring the A(280) using an absorption coefficient (epsilon) and applying the Beer-L
85                                    The molar absorption coefficient (epsilon) for citrulline at 464 n
86 ign provided access to Ir-bpph, with a molar absorption coefficient, epsilon = 9800 M(-1) cm(-1), at
87                 Phytofluors have large molar absorption coefficients, fluorescence quantum yields gre
88         These findings may imply that higher absorption coefficient for CO2 laser energy results in g
89 Titration with Co(III) yielded the molecular absorption coefficient for each mutant except D63A, wher
90 ment's ability to quantitatively measure the absorption coefficient for species of interest to the cl
91       In the absence of external strain, the absorption coefficient for the HBLs reaches around 1 x 1
92 earch suggests that pheomelanin has a better absorption coefficient for X-rays than eumelanin.
93 2.77 or 6.45 microm-wavelengths with matched absorption coefficients for hydrated corneas that respec
94                                 The measured absorption coefficients for the HBLs are over ~ 10(5) cm
95                                         Mass-absorption coefficients for the tea matrix and the criti
96 e precautions, all compounds have equal NMR "absorption coefficients" for protons.
97     Due to its high refractive index and low absorption coefficient, gallium phosphide is an ideal ma
98 ction results from the helical ribbons' high absorption coefficient, good electron mobility, and shar
99  with completely converted layers exhibiting absorption coefficients &gt;10(5) cm(-1) in the visible ran
100 solved imaging, their inherently lower molar absorption coefficient has limited applications in singl
101 anisotropies in refractive index and optical absorption coefficient in a dielectric film adsorbed ont
102                The new indicators have molar absorption coefficients in a 20 000-50 000 M(-1) cm(-1)
103  in the range from 1.3330 to 1.4553 and with absorption coefficients in the range 0-16 cm-1.
104 ogen, and black carbon (as measured by light absorption coefficient) in six U.S. metropolitan regions
105                                   Changes in absorption coefficients indicate deoxygenation of hemogl
106 rection technique whereby an effective molar absorption coefficient is assigned to an absorbing speci
107 nal processing to the material, and MoS(2)'s absorption coefficient is discovered during the measurem
108 with unknown concentration and unknown molar absorption coefficient is explored.
109 fur-containing pheomelanin because the X-ray absorption coefficient is proportional to the fourth pow
110 ntly, a transparency window appears when the absorption coefficient is zero, making graphene nanoribb
111 methods needed to precisely determine the IR absorption coefficients is given, making IR a quantitati
112 g an absorbing antenna chromophore with high absorption coefficient linked to an acceptor emitter wit
113 ique combination of properties, such as high absorption coefficient, long charge-carrier diffusion le
114 hotodetection technologies due to their high absorption coefficients, long diffusion lengths, low tra
115  The open lake pool was characterized by low absorption coefficient, low fluorescence, and low DOC, b
116                                     The mass absorption coefficient (MAC(300-500 nm)) of aerosolized
117 g wavelength-dependence, as seen by the mass absorption coefficient (MAC) and absorption angstromngst
118 ficant, as exemplified by the increased mass absorption coefficient (MAC) measured at 405 nm from 0.1
119          NO(3)(*) reactions augment the mass absorption coefficient (MAC) of the aerosols by a factor
120  using two methods, a thermodenuder and mass absorption coefficient method, which agreed well.
121 ly recovers the top layer thickness (L), the absorption coefficient (micro a ) and the reduced scatte
122 ntitative matrix correction models--the mass absorption coefficient, [mu/rho], and the backscatter co
123                     We observe a peak in the absorption coefficient near 0.705 THz and 215 K, which c
124                                The increased absorption coefficient near a molecular resonance leads
125 precedentedly large nonlinear refraction and absorption coefficients near excitonic resonances.
126 or less (corresponding to a noise equivalent absorption coefficient of <1 x 10(-8) cm(-1) Hz(-1/2)).
127  frequency of 61.04 Hz and the highest sound absorption coefficient of 0.67 at about 2000 Hz, which w
128                       We measure a very high absorption coefficient of 1.0 x 10(5) cm(-1) near the ab
129 ht-harvesting capabilities, achieving a high absorption coefficient of 1.1 x 10(5) M(-1) cm(-1) and a
130 which reaches a bandwidth normalized minimum absorption coefficient of 1.3 x 10(-11) cm(-1) Hz(-1/2)
131        Laboratory characterization showed an absorption coefficient of 40,838 1127 L.mol(-1).cm(-1) a
132 16-nm particles, corresponding to a particle absorption coefficient of 4x10(7) M(-1) cm(-1) .
133 er comb mode of 51 dB and a noise equivalent absorption coefficient of 5.4(9).10(-6) cm(-1) Hz(-1/2)
134                         A minimum detectable absorption coefficient of 9.1 x 10(-7) cm(-1) Hz(-1/2) a
135 mum ring-down time of 159.4 ns and a minimum absorption coefficient of alpha(min) = 1.67 x 10(-6) cm(
136 r dry, acidic conditions has an average mass absorption coefficient of approximately 300 cm(2) g(-1).
137                   Diurnal variability in the absorption coefficient of BrC at 365 nm (babs_365) showe
138 he finite conductivity of metals or the high absorption coefficient of dielectric materials in this s
139        Thus, nitrogen doping allows the high absorption coefficient of graphitic CDs to be translated
140 l band gap ( approximately 1.5 eV) with high absorption coefficient of over >10(4) cm(-1).
141                 The THz refractive index and absorption coefficient of paraffin-embedded brain tissue
142 e imaging modality that depends on the light-absorption coefficient of the imaged tissue and the inje
143 frequency dependence of refractive index and absorption coefficient of the LBO crystal was experiment
144 ss, photoluminescence quantum efficiency and absorption coefficient of the organic polymer film.
145  of phenol resulted in an enhancement in the absorption coefficient of the stretching overtone of the
146 orescence, quantum yields of 0.81, and molar absorption coefficients of (4 2) x 10(8) M(-1) cm(-1).
147 nd NDMA were determined, with measured molar absorption coefficients of 26 422 and 8170 M(-1) cm(-1),
148 xima between 350 and 550 nm in THF with high absorption coefficients of 5-15 x 10(3) M(-1) cm(-1) for
149 ch was mainly attributed to the higher molar absorption coefficients of halogenated aromatic DBPs at
150                           The scattering and absorption coefficients of many homogeneous biological t
151  of absolute fluorescence quantum yields and absorption coefficients of suspensions of fluorescent be
152       The overnight aging increases the mass absorption coefficients of the BrC by a factor of 1.3-3.
153 the nonlinear refractive index and nonlinear absorption coefficients of the material.
154                          The mass-normalized absorption coefficients of the particles were comparable
155                   Indicators have high molar absorption coefficients of ~80,000 M(-1) cm(-1), good qu
156 ults indicate that these particles have mass absorption coefficients on the same order as black carbo
157 unts of purified QDs are needed and specific absorption coefficient or quantum yield values are neces
158 wed high and dynamic absorption (95%) at the absorption coefficient peaks and an adaptive shift to lo
159 tions from emission, lifetime, and MAC (mass absorption coefficient) per model, with MAC and emission
160 ity between the AFM-IR signal and the sample absorption coefficient, producing images and spectra tha
161 A) were chosen because of their unique molar absorption coefficient profiles, quantum yields (QYs) at
162 s, which have a steep absorption onset, with absorption coefficients reaching >10(5) cm(-1) just abov
163       These NCs were found to have very high absorption coefficients reaching 10(5) cm(-1) and band g
164 rtant electronic features such as high molar absorption coefficients, rich redox chemistry and intere
165  shorter carrier diffusion lengths and lower absorption coefficient than lead-based perovskites, limi
166 -dependence was more influenced by the molar absorption coefficient than the apparent/innate quantum
167 ive nonlinear refractive index and nonlinear absorption coefficients that can be used for predicting
168                          Since MB has a high absorption coefficient, the intensity of the reflected w
169 he visible range is hindered by their larger absorption coefficient, thus encouraging the search for
170      However, converting the IS-based sample absorption coefficient to the UV-vis absorbance quantifi
171 cted with conventional SEM, causing the bulk absorption coefficient to vary by as much as 25%.
172 arent polymer films covering a wide range of absorption coefficients (to the exciting wavelength and
173 ic applications, owing to their high optical absorption coefficients, tunable bandgaps, long carrier
174 excellent optical properties including large absorption coefficients, tunable optical properties and
175 p powers, with a maximal effective nonlinear absorption coefficient up to 29.4 +/- 5.8 cm/W at 560 nm
176 ile the perylene antenna increased the molar absorption coefficient (up to 5 times) in comparison to
177 onductivity, while both the reflectivity and absorption coefficient vary rapidly but continuously.
178                       The minimum detectable absorption coefficient was measured to be 3.2 x 10(-6) c
179            Substantial increase of BrC light absorption coefficient was observed during the night-lon
180  spectrometer, expressed as noise equivalent absorption coefficient, was estimated as 4.9 x 10(-9) cm
181                                   The linear absorption coefficients were determined to be 2300 +/- 3
182 elded the dielectric response from which the absorption coefficients were directly determined.
183                         PM2.5 extinction and absorption coefficients were measured at 405, 532, and 8
184 esponse includes a remarkably low two-photon absorption coefficient, which means minimal nonlinear op
185 der, and Urbach energy coupled with a higher absorption coefficient, which yields a reduced Voc,loss
186 ctron rich chromophores exhibit a high molar absorption coefficient with extended absorption up to 46

 
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