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1 rusion method with 1, 3, and 5% w/v (PBAT to chloroform).
2 its (e.g., DAN.DeUG, Kassoc = 10(8) M(-1) in chloroform).
3 lipidated peptides in organic solvent (e.g., chloroform).
4 ger aggregates (in 80% methylcyclohexane/20% chloroform).
5 ions were avoided in the less polar solvent (chloroform).
6 filled with nanoink (10 wt % of AgNPs-OA in chloroform).
7 nd accompanied by a photochemical process in chloroform.
8 ing and often employs toxic solvents such as chloroform.
9 ith dithioerythritol, ethanol, and isooctane/chloroform.
10 e they are not extracted by rapid dipping in chloroform.
11 (5) M(-1), determined by UV-vis titration in chloroform.
12 GEO12CF that tolerated 83 muM (10 mg.L(-1)) chloroform.
13 l carbene C-H insertion into the C-H bond of chloroform.
14 ls when the data were acquired in deuterated chloroform.
15 ganglion (DRG) neurons that are activated by chloroform.
16 was extracted successively with n-hexane and chloroform.
17 ene blue (MB) and ca. 30 equiv of aspirin in chloroform.
18 oroethene to ethene in 14 muM (1.6 mg.L(-1)) chloroform.
19 at control the chlorine isotope signature of chloroform.
20 mportant role in the biosynthesis of natural chloroform.
21 eated with a 10-fold excess of NOBF4 salt in chloroform.
22 system does not act as a sink or a source of chloroform.
23 s (VOCs), such as formaldehyde, benzene, and chloroform.
24 ide, (alkyl=butyl, hexyl and octyl group) in chloroform.
25 lamine, DBU, and dimethylphenylphosphine) in chloroform.
26 ed solvents, such as 1,2-dichlorobenzene and chloroform.
27 d brominated analogues were formed alongside chloroform.
31 rease of vcrA transcripts in the presence of chloroform (45 muM; 5.3 mg.L(-1)) in culture GEO12CF was
32 ation associated with alkaline hydrolysis of chloroform (-53 +/- 3 per thousand) and its independence
33 4, 2.8, 2.8, and 11% by cross-validation for chloroform (7 stocks), thionyl chloride (3 stocks), acet
34 m 435 and a binary solvent system of toluene/chloroform 9:1 (v/v) were found to be the most suitable
37 ate that O-H...O hydrogen bonds in crystals, chloroform, acetone, and water have nearly identical len
38 on, followed by extraction with LESA using a chloroform-acetonitrile-water (49:49:2) mixture and dire
41 al (TRP) channel family members in mediating chloroform activation and the molecular determinants of
42 l studies was carried out to investigate how chloroform acts as a hydrogen atom donor in Barton reduc
47 ghly 0.5 kcal/mol to the helix stability (in chloroform), although their strength is sensitive to sub
48 d by spin coating a 10 wt% solution of F8 in chloroform and 10:1 wt% solution of F8:CdSe QDs, respect
49 low pH led to a more significant increase of chloroform and a more significant short-term increase of
52 and, may well be considered unacceptable for chloroform and benzene (upper IUR) and for the combinati
56 t as the chlorine doses increased, levels of chloroform and DCAA in the heated water increased signif
63 systems designed for CO2, CH4, and N2O emit chloroform and other volatile chlorinated compounds (VOC
64 1H NMR spectra of synthetic 26 in deuterated chloroform and pyridine were identical to those of authe
65 molecular basis of DRG neuron activation by chloroform and the opposing effects chloroform has on di
66 ome of the analytes showed high affinity for chloroform and the others were more efficiently extracte
67 4 THM in separate models, 4 THM in 1 model, chloroform and the sum of brominated THM in 1 model, and
69 the delta(37)Cl value of naturally produced chloroform and to better understand the reaction steps t
71 amer pai-stack (in 75% methylcyclohexane/25% chloroform) and a subsequent self-assembly of pentamer 1
72 onformations in both low-dielectric solvent (chloroform) and high-dielectric solvent (DMSO) to experi
75 lly infectious, sensitive to extraction with chloroform, and circulate in the blood of infected human
76 est performance using a mixture of n-hexane, chloroform, and dichloromethane (70 mL) for extraction.
77 oxidant activity, as compared to the hexane, chloroform, and n-butanol fractions, as well as the crud
78 polyphosphate extraction in water, methanol-chloroform, and phenol-chloroform followed by polyphosph
79 ground-based measurements of methane, methyl chloroform, and the C(13)/C(12) ratio in atmospheric met
80 them was observed to selectively encapsulate chloroform, and the other was observed to selectively en
83 shell featuring two clearly distinguishable chloroform arrangements that undergo chemical exchange w
86 ion presented an optimal value for 600muL of chloroform as extraction solvent using acetonitrile as d
88 discovery that the use of ethanol-stabilized chloroform as solvent leads to the generation of alpha-e
89 o, and others on the reactivity of NHCs with chloroform as well as a simple organocatalytic method fo
91 e complex as a catalyst and triethylamine in chloroform at -45 degrees C proceeded in a new type of a
94 iolates to diethyl acetylenedicarboxylate in chloroform at room temperature affords solely the meso d
96 cules, in a parallel stacked arrangement (in chloroform at room temperature; concentration 1 mM-0.1 m
99 as obtained after protein precipitation with chloroform before different rinsing stages for removing
103 g bladder cancer risk associated with 4 THM (chloroform, bromodichloromethane, dibromochloromethane,
104 st that SA exists predominately as dimers in chloroform, but in the other five solvents there is no c
105 een measured for tetraethylammonium salts in chloroform by employing a variation of Cram's extraction
106 t reveal the presence of H bonds between the chloroform C-H group and an amide carbonyl oxygen atom i
108 non, sulfur hexafluoride, nitrous oxide, and chloroform cause rapid increases of different magnitude
109 PBAT concentrations dissolved in deuterated chloroform (CDCl(3)), demonstrating accurate quantitatio
111 characterization of PTB7 film formation from chloroform (CF), chlorobenzene (CB), and 1,2-dichloroben
112 ation for the common groundwater contaminant chloroform (CF), this study investigated for the first t
114 etween the new EA methods and an established chloroform (CH) method was carried out on 24 cheese samp
115 increased PBAT extraction efficiencies into chloroform (CHCl(3)) with methanol (MeOH) as cosolvent,
116 e (CH(2)Cl(2)), perchloroethene (C(2)Cl(4)), chloroform (CHCl(3)), and methyl chloride (CH(3)Cl), are
117 AA at a pH of 13 (>pKa(2, AA) of 11.79) and chloroform (CHCl3) was a transformation byproduct of CCl
120 tocols are provided for the synthesis of the chloroform-compatible poly(methyl methacrylate) and dime
124 rized sampling probe that enables the use of chloroform-containing extraction solvents for efficient
125 f cyclohexene-1,2-dicarboxylate monoanion in chloroform-d and on the (19)F NMR chemical shifts of dif
126 of different polarities such as benzene-d6, chloroform-d, acetonitrile-d3, acetone-d6, methanol-d4,
127 m exchange reactions between pseudoacids and chloroform-d1, while the analogous saturated NHC 1,3-bis
129 he NH/SH ratio of OH with the help of methyl chloroform data (a proxy for OH concentrations) and an a
130 ility, which currently rely purely on methyl chloroform data and its uncertain emissions estimates.
131 missions and mean OH abundance to fit methyl chloroform data from two surface-measurement networks an
133 ere performed to evaluate the feasibility of chloroform degradation by alkaline hydrolysis and the po
134 allowed the calculation of the percentage of chloroform degradation in field-scale pilot experiments
136 tegorical DBP exposures including bromoform, chloroform, dibromochloromethane (DBCM), bromodichlorome
137 id extractions (i.e., methanol combined with chloroform, dichloromethane, and methyl-tert butyl ether
142 es increasingly more difficult in the order: chloroform, ethyl acetate acetonitrile, acetone, methano
144 he PBPK model successful reproduced observed chloroform exhaled air concentrations resulting from an
145 8) and betulinic acid (9) were isolated from chloroform extract by column chromatography over silica
146 In the oral glucose tolerance test, the chloroform extract exerted the highest response (33.3%),
147 st levels of total saponins were observed in chloroform extract of the Chinese bitter melon pericarp
148 14-day administration in diabetic rats, the chloroform extract recorded the highest blood (23.5%) an
152 shown to be catalyzed by both synthetic and chloroform-extracted phospholipid surfaces, it is instea
153 to achieve the optimal conditions: 300 uL of chloroform (extracting solvent), 1500 uL of acetonitrile
155 antities of DNA (p < 0.001), with the phenol-chloroform extraction method producing the highest total
158 200 muL of this extract along with 50 muL of chloroform (extraction solvent) and 10 muL of IBCF was r
159 Optimum extraction conditions were: 200 muL chloroform (extraction solvent), 1.0 mL acetonitrile (di
161 he isotope enrichment factor for the abiotic chloroform/Fe(0) reaction was large at -29.4 +/- 2.1 per
162 study describes a system designed to measure chloroform flux from terrestrial systems, providing a re
164 nic arsenic present in the acid medium using chloroform followed by back-extraction to acidic medium.
165 on in water, methanol-chloroform, and phenol-chloroform followed by polyphosphate purification by bin
168 ,3-thiazol- and 1,3,4-thiadiazol-2-amines in chloroform gives a mixture of two regioisomeric binuclea
170 mine, hydroxythiol, and dithiol compounds in chloroform has been investigated by (1)H NMR spectroscop
171 ation by chloroform and the opposing effects chloroform has on different TRP channel family members,
172 The competitive process took place in a chloroform-hexane 50% (V/V) mixture, while the subsequen
176 rther research is required, the treatment of chloroform in groundwater through the use of concrete-ba
178 nt, we measured field NO emissions, and used chloroform in the laboratory to reduce microbial activit
180 though foldamer self-association in nonpolar chloroform increased with length, with a approximately 1
182 ) and Cl(-) concentrations, the formation of chloroform induces a smaller AKIE (1.005-1.006) likely a
183 Hg methylation assays following molybdate or chloroform inhibition (a specific inhibitor of the acety
185 o polymers with functional groups at a water-chloroform interface using microfluidic technology.
187 s the median delta(37)Cl value of industrial chloroform is -3.0 per thousand, the present study sugge
194 We combined four filters in a 5 mL Phenol-Chloroform-Isoamyl (PCI) procedure to allow for larger v
198 strain GEO12 in increasing concentrations of chloroform led to culture GEO12CF that tolerated 83 muM
201 extracts obtained by maceration with hexane, chloroform, methanol, and ethanol were screened for thei
202 ere extracted from frozen sperm in 1:2 (v/v) chloroform-methanol solvent, fractionated into neutral a
205 ete extraction of inner membrane lipids with chloroform-methanol-water, revealing that one-half of hy
206 edia containing 100% butanol or a mixture of chloroform/methanol (2:1, v/v) can be used to solubilise
208 extracted with n-hexane (Soxhlet method) and chloroform/methanol (Folch method) from coriander, caraw
211 12, 11, and 10 kDa were first detected after chloroform/methanol extraction in the flow through of hy
213 e also used ammonium sulfate ((NH4)2SO4) and chloroform/methanol precipitation of heart effluents to
214 with desalting/delipidation of the sample by chloroform/methanol precipitation with extra water washi
216 led to the identification of CM inhibitors (chloroform/methanol soluble proteins) as main contributo
217 stard and coriander seed oils extracted with chloroform/methanol was higher than in their counterpart
219 f total fatty acids (TFA), was in the order: chloroform/methanol>ethanol>hexane>ethanol/hexane for bo
220 urations of exposure to extraction solvents (chloroform/methanol), physical disruption (homogenizatio
221 FAs) during 12, 24, 48, 72 and 96 h, in 2 mL chloroform: methanol mixture (2:1); (2) acid methylation
222 HPTLC plates using mobile phase consisted of chloroform:methanol:acetone:25% ammonium hydroxide (75:1
223 -coated TLC plates, mobile phase composed of chloroform:methanol:water:25% ammonium hydroxide (70:30:
224 o RNA extraction using a conventional phenol-chloroform method, the LMJ-based method provided a 3-fol
226 ggests that chlorine isotopic composition of chloroform might be used to discriminate industrial and
227 wo distinct solvation shells formed by three chloroform molecules, where one thermally undergoes hydr
228 32 total THM; n = 4,080 bromoform; n = 4,582 chloroform; n = 4,374 bromodichloromethane; n = 4,464 di
229 study show that hydrogen atom transfer from chloroform occurs directly under kinetic control and is
231 plant cell walls in organic solvents such as chloroform or acetonitrile, which can then be analyzed b
232 infused with one of two ionization reagents, chloroform or ammonium hydroxide, to aid in ionization.
234 p electrophysiology to assess the effects of chloroform or the VGA isoflurane on TRP channel activati
235 ate data analyses (PCA and OPLS-DA) of liver chloroform phase showed that high levels of sesamin affe
237 um (A336(+)) salt) from aqueous media into a chloroform phase with significantly improved efficiency
238 ly transferred from the aqueous phase to the chloroform phase, is proposed as titration end point.
240 s, after which an immiscible organic (phenol-chloroform) phase was introduced in a headspace channel
242 fluorescent switching behaviors in toluene, chloroform, poly(methyl methacrylate) (PMMA) film, and p
243 ished a protocol for AAV production based on chloroform-precipitation, which allows for fast in-house
245 eported time-dependent air concentrations of chloroform released during showering and of 2-butyoxyeth
247 t -29.4 +/- 2.1 per thousand, while that for chloroform respiration by Dehalobacter was minimal at -4
248 ystem of immiscible solvents (here water and chloroform) results in a 3D constitutional dynamic netwo
249 traints obtained for alpha/gamma-peptides in chloroform reveal that AMCP-containing oligomers are con
252 r thousand, the delta(37)Cl value of natural chloroform should vary between -5 per thousand and -8 pe
253 ns D-K (4-11), were isolated from the active chloroform-soluble extract of the root bark of Sphenosty
254 diate is stable for a period of ~20 hours in chloroform solution at 0 degrees C, allowing for an expl
255 ins that vary in length and base sequence in chloroform solution by means of femtosecond time-resolve
256 tion of DABCO to the porphyrin macrocycle in chloroform solution leads to the formation of a stable 2
262 gold surfaces with dilute tetrahydrofuran or chloroform solutions of tetraalkylstannanes (alkyl = met
265 ted of ethanol, acetone, dichloromethane and chloroform solvents and their binary, ternary and quater
266 ons of impurities unique to specific TEA and chloroform stocks, and thus indicative of their use, wer
267 better predicted blood chloroform than water chloroform, suggesting showering/bathing was a more impo
270 ed for biomarkers of trihalomethanes (THMs): chloroform (TCM), bromodichloromethane, dibromochloromet
271 230), air chloroform better predicted blood chloroform than water chloroform, suggesting showering/b
272 comprising an amphiphilic imine dissolved in chloroform that catalyses its own formation by bringing
273 icts an annual mean NH-SH gradient of methyl chloroform that is a tight linear function of the modell
274 These two receptors also solubilize into chloroform the otherwise insoluble sulfate salt, (TMA)2S
275 A switch of the processing solvent from chloroform to 2-MeTHF leads to no negative impacts on th
276 ent detoxifying activity against benzene and chloroform to suggest that biofilters using transgenic p
277 roacetyl compounds in soil to the release of chloroform to the atmosphere varied between 1 and 116 ac
278 e a variety of oil-water mixtures, including chloroform, toluene, kerosene and other contaminations.
280 NO emission pulses were up to 19x greater in chloroform-treated soils than in the controls, and these
283 folded monomeric and dimeric MC subunits (in chloroform) up to the full pentamer pai-stack (in 75% me
284 ,2-dicarboxylate monoanion was determined in chloroform using the NMR method of isotopic perturbation
285 lies of P3BHT was greatly improved following chloroform vapor annealing, resulting in a fourfold incr
287 Using an assessment level of 0.02 mug/L, chloroform was detected in 36.5% of public-well samples
291 A high separation efficiency up to 98.5% for chloroform-water mixture was achieved when used for grav
292 tion solvents consisting of 10% methanol and chloroform were evaluated under dynamic and static extra
293 DFT calculations (GIAO/B3LYP/6-31G(d,p)/PCM, chloroform), were readily applied to these structures, p
294 arly relevant for authorities' regulation of chloroform which in the case of Denmark was very strict
295 annel (ELIC) in complex with a derivative of chloroform, which reveals important features of anesthet
296 ically inert cyclic tetramers is observed in chloroform, while in toluene an equilibrium between tetr
297 amples of food supplements were dissolved in chloroform with help of saponification with 1M solution
298 ows the crystal to take up 2.5 mmol g(-1) of chloroform with high adsorption selectivity (CHCl3 /EA >
300 material in organic solvents such as THF and chloroform yields sheet- and belt-like nanostructures wi