Extended knowledge of 1159408-72-6

HPLC of Formula: 1159408-72-6. I’m so glad you had the patience to read the whole article, if you want know more about 1159408-72-6, you can browse my other blog.

HPLC of Formula: 1159408-72-6. Today I’d like to introduce a new chemical compound, CAS is 1159408-72-6, Name is (2S,4R)-2-[[Bis(4-methoxyphenyl)phenylmethoxy]methyl]-4-hydroxy-λ-oxo-N-[2-[3-oxo-3-[[3-[[1-oxo-5-[[3,4,6-tri-O-acetyl-2-(acetylamino)-2-deoxy-β-D-galactopyranosyl]oxy]pentyl]amino]propyl]amino]propoxy]-1,1-bis[[3-oxo-3-[[3-[[1-oxo-5-[[3,4,6-tri-O-acetyl-2-(acetylamino)-2-deoxy-β-D-galactopyranosyl]oxy]pentyl]amino]propyl]amino]propoxy]methyl]ethyl]-1-pyrrolidinedodecanamide, Formula is C117H175N11O42, Molecular Weight is 2407.69g/mol. Because of its complex structure and huge molecular weight, this compound is rarely understood. Now let me introduce some knowledge about its synthesis.

The general reactant of this compound is 1646203-74-8, Reagents is Hydrogen, Catalyst(Palladium), Solvent is Methanol, Products 12,19,25-Trioxo-14,14-bis[[3-oxo-3-[[3-[[1-oxo-5-[[3,4,6-tri-O-acetyl-2-(acetylamino)-2-deoxy-β-D-galactopyranosyl]oxy]pentyl]amino]propyl]amino]propoxy]methyl]-29-[[3,4,6-tri-O-acetyl-2-(acetylamino)-2-deoxy-β-D-galactopyranosyl]oxy]-16-oxa-13,20,24-triazanonacosanoic acid, Yield: 95%, Synthetic Methods procedure :1. Dissolve the reactant ( 10.50 g, 5.01 mmol ) in methanol, evaporate under reduced pressure to remove traces of chlorinated solvent from previous step., 2. Re-dissolve in MeOH and degas with argon., 3. Add 10 wt% Pd-C ( 1.0 g, wet Degussa type E101 NE/W ) and hydrogenate the reaction under normal pressure overnight., 4. Filter the reaction mixture through celite and wash with MeOH., 5. Evaporate the combined filtrate under reduced pressure., , Transfornation (Hydrolysis or Hydrogenolysis of Carboxylic Esters or Thioesters. Characterization Data include ‘s Proton NMR Spectrum : ( 400 MHz, DMSO-d 6 ) : δ 11.93 ( brs, 1H, -COOH ) ; 7.91-7.81 ( m, 6H, NH ) ; 7.72 ( t, J = 5.6 Hz, 3H, NH ) ; 6.96 ( s, 1H, NH ) ; 5.20 ( d, J = 3.4, 3H, sugar H4 ) ; 4.96 ( dd, J = 3.4, 11.2 Hz, 3H, sugar H3 ) ; 4.48 ( d, J = 8.4, 3H, sugar H1 ) ; 4.05-3.97 ( m, 9H, sugar H5, H6, H6′ ) ; 3.86 ( dt, J = 8.8, 11.0 Hz, 3H, sugar H2 ) ; 3.69 ( dt, J = 6.0, 9.9 Hz, 3H ) ; 3.57-3.47 ( m, 12H ) ; 3.40 ( dt, J = 6.3, 9.9 Hz, 3H ) ; 3.07-2.98 ( m, 12H ) ; 2.27 ( t, J = 6.4 Hz, 6H ) ; 2.17 ( t, J = 7.4 Hz, 2H ) ; 2.09 ( s, 9H ) ; 2.03 ( t, J = 7.2 Hz, 8H ) ; 1.98 ( s, 9H ) ; 1.89 ( s, 9H ) ; 1.76 ( s, 9H ) ; 1.55-1.37 ( m, 22H ) ; 1.27-1.16 ( m, 12H ) ., Carbon-13 NMR : ( 101 MHz, DMSO-d 6 ) : δ 174.7, 172.6, 172.0, 170.2, 170.0, 169.9, 169.6, 169.4, 101.0, 70.5, 69.9, 68.7, 68.3, 67.4, 66.7, 61.5, 59.5, 49.4, 36.4, 36.3, 36.1, 35.9, 35.1, 34.0, 29.3, 28.97, 28.95, 28.8, 28.8, 28.6, 28.5, 25.3, 24.7, 22.8, 21.9, 20.5, 20.5, 20.4., Mass Spectrum: Mass calc. for C91H148N10O39: 2004.99; found: 2028.01 ( M+Na+, MALDI-TOF, matrix: HABA ) ., State is white solid

HPLC of Formula: 1159408-72-6. I’m so glad you had the patience to read the whole article, if you want know more about 1159408-72-6, you can browse my other blog.

Reference:
CAS Method Number 3-355-CAS-9994399,
,CAS Method Number 3-010-CAS-8275923

New explortion of 1953146-81-0

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Today I’d like to introduce a new chemical compound, CAS is 1953146-81-0, Quality Control of 1953146-81-0, Name is 36-(((2R,3R,4R,5R,6R)-3-Acetamido-4,5-dihydroxy-6-(hydroxymethyl)tetrahydro-2H-pyran-2-yl)oxy)-21,21-bis((3-((3-(5-(((2R,3R,4R,5R,6R)-3-acetamido-4,5-dihydroxy-6-(hydroxymethyl)tetrahydro-2H-pyran-2-yl)oxy)pentanamido)propyl)amino)-3-oxopropoxy)methyl)-19,26,32-trioxo-4,7,10,13,16,23-hexaoxa-20,27,31-triazahexatriacontan-1-oic acid, Formula is C75H134N10O35, Molecular Weight is 1735.91g/mol. Because of its complex structure and huge molecular weight, this compound is rarely understood. Now let me introduce some knowledge about its synthesis.

The general reactant of this compound is 1-(Phenylmethyl) dodecanedioate;4,8-Dioxa-12,16-diazaheneicosanamide, 6-amino-11,17-dioxo-6-[[3-oxo-3-[[3-[[1-oxo-5-[[3,4,6-tri-O-acetyl-2-(acetylamino)-2-deoxy-β-D-galactopyranosyl]oxy]pentyl]amino]propyl]amino]propoxy]methyl]-N-[3-[[1-oxo-5-[[3,4,6-tri-O-acetyl-2-(acetylamino)-2-deoxy-β-D-galactopyranosyl]oxy]pentyl]amino]propyl]-21-[[3,4,6-tri-O-acetyl-2-(acetylamino)-2-deoxy-β-D-galactopyranosyl]oxy]-, 2,2,2-trifluoroacetate (1:1), Reagents is Diisopropylethylamine, 1-[Bis(dimethylamino)methylene]-1H-benzotriazolium hexafluorophosphate(1-) 3-oxide, Catalyst(), Solvent is Dimethylformamide, Products 1646203-74-8, Yield: 74%, Synthetic Methods procedure :1. Add HBTU ( 3.28 g, 8.64 mmol ) and DIEA ( 4.10 mL, 23.58 mmol ) to a solution of dodecanoic acid monobenzyl ester ( 2.51 g, 7.86 mmol ) in DMF ( 80 mL ) and stir the resulting mixture for few minutes., 2. Add a solution of reactant ( 15 g, 5.24 mmol ) in DMF ( 20 mL ) and continue stirring at room temperature overnight., 3. Remove the solvents and volatiles under reduced pressure., 4. Dissolve the residue in DCM ( 200 mL ) , wash with saturated NaHCO3 ( 100 mL ) and water ( 100 mL ) ., 5. Dry over anhydrous Na2SO4, evaporate the solvent under reduced pressure., 6. Purify the residue by silica gel chromatography ( eluent: 3-15% MeOH in DCM ) ., Transfornation (Acylation of Nitrogen Nucleophiles by Carboxylic Acids. Characterization Data include ‘s Proton NMR Spectrum : ( 400 MHz, DMSO-d 6 ) : δ 7.86–7.77 ( m, 6H, NH ) ; 7.72 ( t, J = 5.7 Hz, 3H, NH ) ; 7.39-7.28 ( m, 5H ) ; 6.97 ( s, 1H, NH ) ; 5.20 ( d, J = 3.4 Hz, 3H, sugar H4 ) ; 5.07 ( s, 2H ) ; 4.95 ( dd, J = 3.4, 11.2 Hz, 3H, sugar H3 ) ; 4.47 ( d, J = 8.5 Hz, 3H, sugar H1 ) ; 4.07–3.96 ( m, 9H, sugar H5, H6, H6′ ) ; 3.86 ( dt, J = 8.9, 11.2 Hz, 3H, sugar H 2 ) ; 3.69 ( dt, J = 5.9, 9.9 Hz, 3H ) ; 3.60-3.45 ( m, 12H ) ; 3.39 ( dt, J = 6.3, 9.9 Hz, 3H ) ; 3.08-2.95 ( m, 12H ) ; 2.32 ( t, J = 7.4 Hz, 2H ) ; 2.26 ( t, J = 6.3 Hz, 6H ) ; 2.09 ( s, 9H ) , 2.03 ( t, J = 7.0 Hz, 8H ) ; 1.98 ( s, 9H ) ; 1.88 ( s, 9H ) , 1.76 ( s, 9H ) ; 1.56–1.36 ( m, 22H ) ; 1.28–1.14 ( m, 12H ) ., Carbon-13 NMR : ( 126 MHz, DMSO-d 6 ) : δ 172.8, 172.5, 171.9, 170.1, 170.0, 169.9, 169.6, 169.4, 136.3, 128.4, 128.0, 127.9, 101.0, 70.5, 69.8, 68.7, 68.3, 67.3, 66.7, 65.3, 61.4, 59.5, 49.4, 36.4, 36.3, 36.0, 35.9, 35.1, 33.5, 29.5, 28.9, 28.9, 28.8, 28.7, 28.6, 28.6, 28.4, 25.3, 24.5, 22.8, 21.9, 20.5, 20.5, 20.4., Mass Spectrum: MS calc. for C98H154N10O39: 2095.03; found: 2118.05 ( M+Na+, MALDI-TOF, matrix: HABA ) ., State is offwhite solid

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Reference:
CAS Reaction Number: 31-355-CAS-9994399,
,CAS Method Number: 3-614-CAS-3165786

What about chemistry interests you the most 2-Phenylbutanoic acid

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Computed Properties of C10H12O2. I found the field of Engineering; Environmental Sciences & Ecology very interesting. Saw the article Performance of UV/acetylacetone process for saline dye wastewater treatment: Kinetics and mechanism published in 2021, Reprint Addresses Wang, ZH (corresponding author), Donghua Univ, State Environm Protect Engn Ctr Pollut Treatment, Coll Environm Sci & Engn, Shanghai 201620, Peoples R China.. The CAS is 90-27-7. Through research, I have a further understanding and discovery of 2-Phenylbutanoic acid.

Futility of traditional advanced oxidation processes (AOPs) in saline wastewater treatment has stimulated the quest for novel halotolerant chemical oxidation technology. Acetylacetone (AA) has proven to be a potent photo-activator in the degradation of dyes, but the applicability of UV/AA for saline wastewater treatment needs to be verified. In this study, degradation of crystal violet (CV) was investigated in the UV/AA system in the presence of various concentrations of exogenic Cl- or Br-. The results reveal that degradation, mineralization and even accumulation of adsorbable organic halides (AOX) were not significantly affected by the addition of Cl- or Br-. Rates of CV degradation were enhanced by elevating either AA dosage or solution acidity. An apparent kinetic rate equation was developed as r = -d[CV]/dt = k[CV](a)[AA](b) = (7.34 x 10(-4) mM(1-(a+b)) min(-1)) x [CV](a=0.16) [AA](b=0.97). In terms of results of radical quenching experiments, direct electron/energy transfer is considered as the major reaction mechanism, while either singlet oxygen or triplet state ((3)(AA)*) might be involved. Based on identification of degradation byproducts, a possible degradation pathway of CV in the UV/AA system is proposed.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

Extended knowledge of C10H12O2

Formula: C10H12O2. Bye, fridends, I hope you can learn more about C10H12O2, If you have any questions, you can browse other blog as well. See you lster.

In 2020 INORG CHIM ACTA published article about SP(3) C-H; CARBOXYLIC-ACIDS; COUPLING CDC; ESTERIFICATION; BOND; ACTIVATION; ALDEHYDES; C(SP(3))-H; COMPLEXES; ALKYLBENZENES in [Mondal, Rakesh; Chakraborty, Gargi; Paul, Nanda D.] Indian Inst Engn Sci & Technol, Dept Chem, Bot Garden, Howrah 711103, India; [van Vliet, Kaj M.; van Leest, Nicolaas P.; de Bruin, Bas] Univ Amsterdam, vant Hoff Inst Mol Sci, Homogeneous Catalysis Grp, Sci Pk 904, NL-1098 XH Amsterdam, Netherlands in 2020, Cited 60. The Name is 2-Phenylbutanoic acid. Through research, I have a further understanding and discovery of 90-27-7. Formula: C10H12O2

Herein, we report a general, efficient and solvent-free method for the one-pot synthesis of allylic esters via dehydrogenation of unactivated alkanes and subsequent oxidative cross coupling with different substituted carboxylic acids. A simple, well defined and air stable Cu(II)-complex, [Cu(MeTAA)], featuring a tetraazamacrocyclic ligand (tetramethyltetraaza[14]annulene (MeTAA)) is used as the catalyst. A wide variety substituted allylic esters were synthesized in high yields starting from readily available starting materials. Control reactions were carried out to understand the reaction sequence and the plausible mechanism.

Formula: C10H12O2. Bye, fridends, I hope you can learn more about C10H12O2, If you have any questions, you can browse other blog as well. See you lster.

Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

What I Wish Everyone Knew About 90-27-7

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Recommanded Product: 90-27-7. Recently I am researching about SP(3) C-H; CARBOXYLIC-ACIDS; COUPLING CDC; ESTERIFICATION; BOND; ACTIVATION; ALDEHYDES; C(SP(3))-H; COMPLEXES; ALKYLBENZENES, Saw an article supported by the Council of Scientific & Industrial Research (CSIR), New DelhiCouncil of Scientific & Industrial Research (CSIR) – India [01(5234)/15]; Department of Science & Technology (DST)Department of Science & Technology (India) [YSS/2015/001552]; CSIRCouncil of Scientific & Industrial Research (CSIR) – India; UGCUniversity Grants Commission, India; IIESTS. Published in ELSEVIER SCIENCE SA in LAUSANNE ,Authors: Mondal, R; Chakraborty, G; van Vliet, KM; van Leest, NP; de Bruin, B; Paul, ND. The CAS is 90-27-7. Through research, I have a further understanding and discovery of 2-Phenylbutanoic acid

Herein, we report a general, efficient and solvent-free method for the one-pot synthesis of allylic esters via dehydrogenation of unactivated alkanes and subsequent oxidative cross coupling with different substituted carboxylic acids. A simple, well defined and air stable Cu(II)-complex, [Cu(MeTAA)], featuring a tetraazamacrocyclic ligand (tetramethyltetraaza[14]annulene (MeTAA)) is used as the catalyst. A wide variety substituted allylic esters were synthesized in high yields starting from readily available starting materials. Control reactions were carried out to understand the reaction sequence and the plausible mechanism.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

Brief introduction of 90-27-7

Welcome to talk about 90-27-7, If you have any questions, you can contact Gholap, A; Bag, S; Pradhan, S; Kapdi, AR; Maiti, D or send Email.. Name: 2-Phenylbutanoic acid

Gholap, A; Bag, S; Pradhan, S; Kapdi, AR; Maiti, D in [Gholap, Aniket; Bag, Sukdev; Pradhan, Sukumar; Kapdi, Anant R.; Maiti, Debabrata] Inst Chem Technol, Dept Chem, Mumbai 400019, Maharashtra, India published Diverse meta-C-H Functionalization of Amides in 2020, Cited 64. Name: 2-Phenylbutanoic acid. The Name is 2-Phenylbutanoic acid. Through research, I have a further understanding and discovery of 90-27-7.

Overriding the preference for favorable proximal metalation by ortho-directing amide group, a pyrimidine-based directing group (DG) has been demonstrated for diverse remote meta-C-H functionalizations of arenes including allylation, cyanation, alkylation, alkynylation, and deuteration. The scope of palladium-catalyzed meta-C-H functionalizations has been presented with various pharmaceutically relevant phenylacetic acid, hydrocinnamic acid, and naphthylacetic acid derivatives.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

The Best Chemistry compound:C10H12O2

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Authors Yu, I; Choi, D; Lee, HK; Cho, H in KOREAN SOC BIOTECHNOLOGY & BIOENGINEERING published article about FIBROBLAST; CHITOSAN in [Yu, Insun; Cho, Hoon] Chosun Univ, Dept Polymer Sci & Engn, Gwangju 501759, South Korea; [Choi, Dubok] BK Co Ltd, Biotechnol Lab, Jeonbuk 5703, South Korea; [Lee, Hee-Kyung] CHA Univ, Sch Business, Beauty & Cosmet Management, Seongnam 13488, South Korea in 2019, Cited 23. Recommanded Product: 90-27-7. The Name is 2-Phenylbutanoic acid. Through research, I have a further understanding and discovery of 90-27-7

A novel series of benzylidenethiazolidine-2,4-dione derivatives was synthesized and investigated for 15-hydroxyprostaglandin dehydrogenase (15-PGDH)-scavenging activity, PGE(2) release, and wound-healing activity. Among the tested derivatives, seven compounds (3, 9, 11, 12, 13, 14, and 25) resulted in a 50% inhibition of 15-PGDH at concentrations between 0.07 and 0.2 mu M and increased PGE(2) levels from 300 to over 600% in A549 cells treated with 5.0 and 10.0 mu M of the compounds for 12 h. A scratch wound-healing assay using HaCaT cell line was conducted to verify the effects of 10 mu M of these compounds on cell regeneration. The closure rate of the scratch wound healing showed that all compounds (3, 9, 11, 12, 13, 14, and 25) had greater wound regeneration effects than the cell growth factor, TGF-beta 1, which was used as the positive control. In particular, (Z)-N-benzyl-4-((2,4-dioxothiazolidin-5-ylidene)methyl)benzamide (compound 14) showed that the highest wound closure rate, which was 360%; this is about 3.6-fold higher than that of TGF-beta 1. Overall, these results show that compound 14 may be considered a promising candidate for the development of novel wound-healing agents.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

What advice would you give a new faculty member or graduate student interested in a career C10H12O2

Recommanded Product: 2-Phenylbutanoic acid. Bye, fridends, I hope you can learn more about C10H12O2, If you have any questions, you can browse other blog as well. See you lster.

Recommanded Product: 2-Phenylbutanoic acid. Recently I am researching about FT-RAMAN; MOLECULAR DOCKING; CHEMICAL COMPUTATIONS; HOMO-LUMO; IR; DFT; NMR; UV; SPECTRA; DIMER, Saw an article supported by the . Published in ELSEVIER SCIENCE BV in AMSTERDAM ,Authors: Raajaraman, BR; Sheela, NR; Muthu, S. The CAS is 90-27-7. Through research, I have a further understanding and discovery of 2-Phenylbutanoic acid

2-Phenylbutanoic acid (2PBA) and its functional derivatives 2-amino-2-Phynylbutanoic acid (2APBA), 2-hydroxy-2-Phenylbutanoic acid (2HPBA) and 2-methyl-2-phenylbutanoic acid (2MPBA) are analyzed by density functional theory (DFT) calculations at B3LYP level with basis set 6-311++G(d,p). Experimental studies like FT-IR, FT-Raman, and UV-Visible spectra are carried out and compared with the theoretical molecular geometry and vibrational frequencies. To study donor and acceptor interactions natural bond orbital (NBO) analysis were performed. The observed UV-Vis spectrum compared with the time-dependent TD-DFT analysis gives band gap energies, oscillator strength, and the absorption wavelengths of different molecules. The hyperpolarizability analysis shows that the nonlinear optical (NLO) properties of the 2PBA, 2APBA, 2HPBA and 2MPBA compounds. The visual bio-active areas of the molecule are estimated by Molecular electrostatic potential (MEP). The important thermodynamic properties like heat capacity, entropy, and enthalpy of the 2PBA, 2APBA, 2HPBA, and 2MPBA were calculated at different temperatures. Molecular docking methods were employed with 2PBA, 2APBA, 2HPBA and 2MPBA molecules with the same set of receptors (proteins) to find the best of four molecules for drug identification. (C) 2019 Elsevier B.V. All rights reserved.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

Brief introduction of 2-Phenylbutanoic acid

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An article Rhenium-Catalyzed Reduction of Carboxylic Acids with Hydrosilanes WOS:000489200100006 published article about ONE-POT CONVERSION; SELECTIVE REDUCTION; FACILE REDUCTION; ENANTIOSELECTIVE REDUCTION; CONVENIENT SYNTHESIS; LIGANDS SYNTHESIS; SALEN COMPLEXES; CARBONYL GROUPS; METHYL SULFIDE; ALDEHYDES in [Wei, Duo] Univ Rennes, CNRS, ISCR UMR 6226, F-35000 Rennes, France; [Wei, Duo; Buhaibeh, Ruqaya; Canac, Yves; Sortais, Jean-Baptiste] Univ Toulouse, UPS, CNRS, LCC, Toulouse, France; [Sortais, Jean-Baptiste] Inst Univ France, 1 Rue Descartes, F-75231 Paris 05, France in 2019, Cited 59. Quality Control of 2-Phenylbutanoic acid. The Name is 2-Phenylbutanoic acid. Through research, I have a further understanding and discovery of 90-27-7

Re-2(CO)(10) efficiently catalyzes the direct reduction of various carboxylic acids under mild conditions (rt, irradiation 350 or 395 nm). While aliphatic carboxylic acids were readily converted to the corresponding disilylacetals with low catalyst loading (0.5 mol %) in the presence of Et3SiH (2.2 equiv), aromatic analogues required more drastic conditions (Re-2(CO)(10) 5 mol %, Ph2MeSiH 4.0 equiv) to afford the corresponding aldehydes after acid treatment.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics

Chemical Properties and Facts of 90-27-7

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I found the field of Chemistry very interesting. Saw the article Deracemizing alpha-Branched Carboxylic Acids by Catalytic Asymmetric Protonation of Bis-Silyl Ketene Acetals with Water or Methanol published in 2019. Recommanded Product: 2-Phenylbutanoic acid, Reprint Addresses List, B (corresponding author), Max Planck Inst Kohlenforsch, Kaiser Wilhelm Pl 1, D-45470 Mulheim, Germany.. The CAS is 90-27-7. Through research, I have a further understanding and discovery of 2-Phenylbutanoic acid

We report a highly enantioselective catalytic protonation of bis-silyl ketene acetals. Our method delivers alpha-branched carboxylic acids, including nonsteroidal anti-inflammatory arylpropionic acids such as Ibuprofen, in high enantiomeric purity and high yields. The process can be incorporated in an overall deracemization of alpha-branched carboxylic acids, involving a double deprotonation and silylation followed by the catalytic asymmetric protonation.

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Reference:
Benzisoxazole – Wikipedia,
,Benzisoxazole – an overview | ScienceDirect Topics