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Computed Properties of C8H6O2. About Isobenzofuran-1(3H)-one, If you have any questions, you can contact Jiang, XL; Zhang, JH; Zhao, DM; Li, YH or concate me.

Recently I am researching about ACCEPTORLESS DEHYDROGENATION; ALIPHATIC-ALCOHOLS; COMPLEXES; OXIDATION; ESTERIFICATION, Saw an article supported by the Program for Innovative Research Team of the Ministry of Education; Program for Liaoning Innovative Research Team in University; NSFCNational Natural Science Foundation of China (NSFC) [21633013, 21101109, 21602228]. Computed Properties of C8H6O2. Published in ROYAL SOC CHEMISTRY in CAMBRIDGE ,Authors: Jiang, XL; Zhang, JH; Zhao, DM; Li, YH. The CAS is 87-41-2. Through research, I have a further understanding and discovery of Isobenzofuran-1(3H)-one

The presence of different aldehydes is found to have a significant influence on the catalytic performance when using PN(H)P type ligands for dehydrogenation of alcohols. Accordingly, hybrid multi-dentate ligands were discovered based on an oxygen-transfer alkylation of PNP ligands by aldehydes. The relevant Ru-PNN(PO) system provided the desired unsymmetrical esters in good yields via acceptorless dehydrogenation of alcohols. Hydrogen bonding interactions between the phosphine oxide moieties and alcohol substrates likely assisted the observed high chemoselectivity.

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Reference:
Benzofuran – Wikipedia,
,Benzofuran | C8H6O – PubChem

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Safety of Isobenzofuran-1(3H)-one. In 2021 ORG CHEM FRONT published article about 1,4-CONJUGATE ADDITION; ASYMMETRIC-SYNTHESIS; GRIGNARD-REAGENTS; KETONES; ALKYLATION; ALCOHOLS; DERIVATIVES; OLEFINATION; INHIBITORS; NITRILES in [Song, Dingguo; Chen, Linlin; Li, Yujin; Liu, Tao; Yi, Xiao; Liu, Lei; Ling, Fei; Zhong, Weihui] Zhejiang Univ Technol, Coll Pharmaceut Sci, Hangzhou 310014, Peoples R China in 2021, Cited 57. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2.

Methylation of sulfones, which have an alpha-CH bond, can be easily achieved via a one-step, Ru(II) catalyzed redox neutral reaction using methanol as a sustainable C1 building block. The reaction requires a stoichiometric amount of base and generates only water as a byproduct. A series of value-added methylated sulfones with various functional groups are produced under the reaction conditions from readily available substrates. Mechanism studies shows that a sulfone carbanion addition to an in situ generated aldehyde formed via catalytic dehydrogenation and subsequent catalyst mediated reduction of the alkene by hydrogen may be involved.

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Reference:
Benzofuran – Wikipedia,
,Benzofuran | C8H6O – PubChem

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Recommanded Product: Isobenzofuran-1(3H)-one. In 2019 SYNLETT published article about AEROBIC OXIDATION; DEHYDROGENATIVE LACTONIZATION; PALLADIUM NANOPARTICLES; ALCOHOLS; EFFICIENT; HYDROXIDE; 1,4-DIOLS; LACTONES; BEARING in [Takakura, Ryoya; Ban, Kazuho; Sajiki, Hironao; Sawama, Yoshinari] Gifu Pharmaceut Univ, Lab Organ Chem, 1-25-4 Daigaku Nishi, Gifu 5011196, Japan in 2019, Cited 49. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2.

A lactonization of various diols catalyzed by platinum on carbon (Pt/C) in water under an atmosphere of molecular oxygen was developed. Derivatives of 1,4- 1,5- and 1,6-diols were transformed into the corresponding five-, six-, and seven-membered lactones by the present oxidative lactonization method.

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Benzofuran – Wikipedia,
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An article Antimicrobial drimane – phthalide derivatives from Hypoxylon fendleri BCC32408 WOS:000498290700028 published article about RESAZURIN in [Intaraudom, Chakapong; Bunbamrung, Nantiya; Dramae, Aibrohim; Boonruangprapa, Tanapong; Pittayakhajonwut, Pattama] Natl Sci & Technol Dev Agcy, Natl Ctr Genet Engn & Biotechnol BIOTEC, Thailand Sci Pk,Phaholyothin Rd, Klongluang 12120, Pathum Thani, Thailand; [Punyain, Wikorn] Naresuan Univ, Fac Sci, Dept Chem, Phitsanulok 65000, Thailand in 2019, Cited 12. HPLC of Formula: C8H6O2. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2

Fourteen new compounds including thirteen drimane – phthalide derivatives (fendlerals A – C, fendlerins A – D, fendlerols A – B, fendleric acids A – C, fendlerinine G) and one terphenyl derivative (fendleryl E) along with eight known compounds, fendlerinine A, rickenyls C – D, fendleryls C – D, atromentin, tetramethyl atromentin, and ( +/- )-microsphaerophthalide F, were isolated from the wood fungus Hypoxylon fendleri BCC32408. Compared with the prior work, the results indicated the agitation effect on the production of bioactive drimane – phthalides. The chemical structures were determined based upon spectroscopic analyses and the absolute configurations were verified by comparison of the ECD spectral data with the calculated ECD spectra of the related compounds. Compounds 1-3 exhibited antimicrobial activity against Plasmodium falciparum (IC50 4.15-4.39 mu M), Colletotrichum capsici (MIC 6.25-12.5 mu g/mL), and Bacillus cereus (MIC 1.56-3.13 mu g/mL). All tested compounds displayed broad cytotoxicity against cancerous (MCF-7, KB, and NCI-H187) and non-cancerous (Vero) cells.

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Reference:
Benzofuran – Wikipedia,
,Benzofuran | C8H6O – PubChem

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Geiger, T; Haupt, A; Maichle-Mossmer, C; Schrenk, C; Schnepf, A; Bettinger, HF in [Geiger, Thomas; Haupt, Anne; Bettinger, Holger F.] Eberhard Karls Univ Tubingen, Inst Organ Chem, Morgenstelle 18, D-72076 Tubingen, Germany; [Maichle-Moessmer, Caecilia; Schrenk, Claudio; Schnepf, Andreas] Eberhard Karls Univ Tubingen, Inst Anorgan Chem, Morgenstelle 18, D-72076 Tubingen, Germany published Synthesis and Photodimerization of 2-and 2,3-Disubstituted Anthracenes: Influence of Steric Interactions and London Dispersion on Diastereoselectivity in 2019, Cited 84. Recommanded Product: 87-41-2. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2.

There is increased evidence that the effect of bulky groups in organic, organometallic, and inorganic chemistry is not only repulsive but can be attractive because of London dispersion interactions. The influence of the size of primary alkyl substituents in 2- ‘ and 2,3-positions of anthracenes on the diastereoselectivity (anti vs syn dimer) of the [pi(4s) + pi(4s)] photoinduced dimerization is investigated. The synthesis of the anthracene derivatives was achieved by Suzuki-Miyaura reaction of 2,3-dibromoanthracene with alkylboronic acids as well as by reduction of anthraquinones that were obtained from 2,3-disubstituted 1,3-butadienes and naphthoquinone followed by dehydrogenation. The mixtures of dianthracene isomers were analyzed with respect to the anti/syn-ratio of the products by X-ray crystallography and nuclear Overhauser effect spectroscopy. While for the 2,3-dimethylanthracene the anti and syn isomers were formed in equal amounts, the anti dimers are the major products in all other cases. A linear correlation (R-2 = 0.98) between the steric size (Charton parameter) and the isomeric ratio suggests that the selectivity is dominated by classical repulsive steric effects. An exception is the iso-butyl substituent that produces an increased amount of the syn isomer. It is suggested that this is due to an exalted effect of London dispersion interactions.

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Reference:
Benzofuran – Wikipedia,
,Benzofuran | C8H6O – PubChem

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I found the field of Chemistry very interesting. Saw the article Aerobic conversion of benzylic sp3 C- H in diphenylmethanes and benzyl ethers to CvO bonds under catalyst-, additive- and light- free conditions published in 2019. Quality Control of Isobenzofuran-1(3H)-one, Reprint Addresses Wang, JJ (corresponding author), Henan Normal Univ, Sch Chem & Chem Engn, Xinxiang 453007, Henan, Peoples R China.; Ren, YL (corresponding author), Henan Univ Sci & Technol, Sch Chem Engn & Pharmaceut, Luoyang 471003, Henan, Peoples R China.. The CAS is 87-41-2. Through research, I have a further understanding and discovery of Isobenzofuran-1(3H)-one

Catalyst-free, additive-free and light-free aerobic conversion of benzylic C-H to C?O bonds is reported. A series of C-H bonds in diphenylmethanes and benzyl ethers underwent this transformation to give the targeted products in low to high yields. The reaction mechanism was also investigated using radical trapping, DFT calculations and O-18-labelled experiments, and the results suggested that the present reaction relied on an activation of oxygen by the bond of the benzene ring.

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Benzofuran – Wikipedia,
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In 2019 ACS CATAL published article about RING-OPENING POLYMERIZATION; METAL-FREE; CRYSTAL-STRUCTURE; REDUCTIVE DEPOLYMERIZATION; CARBONYL-COMPOUNDS; ALDOL CONDENSATION; SYMMETRIC ETHERS; CARBOXYLIC-ACIDS; CYCLOTRIMERIZATION; ETHERIFICATION in [Monsigny, Louis; Thuery, Pierre; Berthet, Jean-Claude; Cantat, Thibault] Univ Paris Saclay, CEA Saclay, CNRS, NIMBE,CEA, F-91191 Gif Sur Yvette, France in 2019, Cited 76. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2. Application In Synthesis of Isobenzofuran-1(3H)-one

We report herein the possibility to perform the hydrosilylation of carbonyls using actinide complexes as catalysts. While complexes of the uranyl ion [UO2](2+) have been poorly considered in catalysis, we show the potentialities of the Lewis acid [UO2(OTf)(2)] (1) in the catalytic hydrosilylation of a series of aldehydes. [UO2(OTf)(2)] proved to be a very active catalyst affording distinct reduction products depending on the nature of the reductant. With Et3SiH, a number of aliphatic and aromatic aldehydes are reduced into symmetric ethers, while (Pr3SiH)-Pr-i yielded silylated alcohols. Studies of the reaction mechanism led to the isolation of aldehyde/uranyl complexes, [UO2(OTf)(2)(4-Me2N-PhCHO)(3)], [UO2(mu-kappa(2)-OTf)(2)(PhCHO)](n), and [UO2(mu-kappa(2)-OTf(kappa(1)-OTf)(PhCHO)(2)](2), which have been fully characterized by NMR, IR, and single-crystal X-ray diffraction.

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Reference:
Benzofuran – Wikipedia,
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Recommanded Product: 87-41-2. Authors Wang, CQ; Liu, G; Dou, GJ; Yang, Y; Chen, L; Ma, H; Jiang, ZY; Ma, HY; Li, CL; Li, L; Jiang, MD; Lu, QW; Li, P; Qi, HY in ELSEVIER GMBH published article about in [Wang, Chengqiang; Liu, Gen; Dou, Guojun; Yang, Yi; Chen, Lu; Ma, Hui; Jiang, Zhuyun; Ma, Haoyue; Li, Li; Qi, Hongyi] Southwest Univ, Coll Pharmaceut Sci, 2 Tiansheng Rd, Chongqing 400715, Peoples R China; [Wang, Chengqiang; Liu, Gen; Dou, Guojun; Yang, Yi; Chen, Lu; Ma, Hui; Jiang, Zhuyun; Ma, Haoyue; Li, Li; Qi, Hongyi] Southwest Univ, Coll Chinese Med, 2 Tiansheng Rd, Chongqing 400715, Peoples R China; [Li, Chenglong] Sichuan Prov Peoples Hosp, Dept Hematol, Chengdu 610212, Sichuan, Peoples R China; [Jiang, Mingdong; Lu, Qianwei; Li, Pan] Chongqing Ninth Peoples Hosp, Dept Oncol & Hematol, Jialing Village 69, Chongqing 400700, Peoples R China in 2021, Cited 24. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2

Background: Acute myeloid leukemia (AML) is a devastating hematologic malignancy with a high mortality. The nuclear receptors Nur77 and NOR-1 are commonly downregulated in human AML blasts and have emerged as key therapeutic targets for AML. Methods: This study aimed to identify Z-ligustilide (Z-LIG), the main phthalide of Rhizoma Chuanxiong, as a potential agent that can selectively target AML. The anti-AML activity of Z-LIG was evaluated in vitro and in vivo, and the effect and underlying mechanisms of Z-LIG on the restoration of Nur77 and NOR-1 was determined. Moreover, the role of Nur77 and NOR-1 in the regulation of Z-LIG-induced apoptosis and differentiation of AML cells was explored. Results: Z-LIG preferentially inhibited the viability of human AML cells, as well as suppressed the proliferation and colony formation ability. Notably, a concentration-dependent dual effect of Z-LIG was observed in AML cells: inducing apoptosis at relatively high concentrations (25 mu M to 100 mu M) and promoting differentiation at relatively low concentrations (10 mu M and 25 mu M). Importantly, Z-LIG restored Nur77 and NOR-1 expression in AML cells by increasing Ace-H3 (lys9/14) enrichment in their promoters. Meanwhile, Z-LIG enhanced the recruitment of p300 and reduced the recruitment of HDAC1, HDAC4/5/7, and MTA1 in the Nur77 promoter and enhanced the recruitment of p-CREB and reduced HDAC1 and HDAC3 in the NOR-1 promoter. Furthermore, Z-LIG-induced apoptosis was shown to be correlated with the mitochondria localization of Nur77/NOR-1 and subsequent Bcl-2 conformational change, converting Bcl-2 from a cyto-protective phenotype into a cyto-destructive phenotype. ZLIG-promoted differentiation was found to be related to Nur77/NOR-1-mediated myeloid differentiation-associated transcription factors Jun B, c-Jun, and C/EBP beta. Finally, silencing of Nur77 and NOR-1 attenuated anti-AML activity of Z-LIG in NOD/SCID mice. Conclusions: Our study suggests that Z-LIG may serve as a novel bifunctional agent for AML by restoring Nur77/NOR-1-mediated apoptosis and differentiation

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Reference:
Benzofuran – Wikipedia,
,Benzofuran | C8H6O – PubChem

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Name: Isobenzofuran-1(3H)-one. About Isobenzofuran-1(3H)-one, If you have any questions, you can contact Rysak, V; Dixit, R; Trivelli, X; Merle, N; Agbossou-Niedercorn, F; Vanka, K; Michon, C or concate me.

Name: Isobenzofuran-1(3H)-one. Rysak, V; Dixit, R; Trivelli, X; Merle, N; Agbossou-Niedercorn, F; Vanka, K; Michon, C in [Rysak, Vincent; Merle, Nicolas; Agbossou-Niedercorn, Francine; Michon, Christophe] Univ Lille, Univ Artois, UMR 8181 UCCS Unite Catalyse & Chim Solide, Cent Lille,CNRS, F-59000 Lille, France; [Dixit, Ruchi; Vanka, Kumar] Natl Chem Lab, Phys & Mat Chem Div, CSIR, Dr Homi Bhabha Rd, Pune 411008, Maharashtra, India; [Dixit, Ruchi] Acad Sci & Innovat Res AcSIR, Ghaziahad 201002, India; [Trivelli, Xavier] Univ Lille, Univ Artois, Cent Lille, FR 2638 IMEC Inst Michel Eugene Chevreul,CNRS,INR, F-59000 Lille, France; [Michon, Christophe] Univ Strasbourg, Univ Haute Alsace, Ecole Europeenne Chim Polymeres & Mat, CNRS,LIMA,UMR 7042, 25 Rue Becquerel, F-67087 Strasbourg, France published Catalytic reductive deoxygenation of esters to ethers driven by hydrosilane activation through non-covalent interactions with a fluorinated borate salt in 2020, Cited 117. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2.

We report the catalytic and transition metal-free reductive deoxygenation of esters to ethers through the use of a hydrosilane and a fluorinated borate BArF salt as a catalyst. Experimental and theoretical studies support the role of noncovalent interactions between the fluorinated catalyst, the hydrosilane and the ester substrate in the reaction mechanism.

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Reference:
Benzofuran – Wikipedia,
,Benzofuran | C8H6O – PubChem

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HPLC of Formula: C8H6O2. About Isobenzofuran-1(3H)-one, If you have any questions, you can contact Wang, RY; Wu, ZW; Li, ZK; Qin, ZF; Chen, CM; Zheng, ZF; Wang, GF; Fan, WB; Wang, JG or concate me.

Authors Wang, RY; Wu, ZW; Li, ZK; Qin, ZF; Chen, CM; Zheng, ZF; Wang, GF; Fan, WB; Wang, JG in ELSEVIER SCIENCE BV published article about ACID IONIC LIQUIDS; EFFICIENT SYNTHESIS; CHEMICAL-EQUILIBRIUM; METHANOL; REDUCTION; SITES; OME; PARAFORMALDEHYDE; IMPROVEMENT; TRIOXANE in [Wang, Ruiyi; Wu, Zhiwei; Li, Zhikai; Qin, Zhangfeng; Chen, Chengmeng; Zheng, Zhanfeng; Wang, Guofu; Fan, Weibin; Wang, Jianguo] Chinese Acad Sci, Inst Coal Chem, State Key Lab Coal Convers, POB 165, Taiyuan 030001, Shanxi, Peoples R China; [Chen, Chengmeng] Chinese Acad Sci, Inst Coal Chem, Key Lab Carbon Mat, Taiyuan 030001, Shanxi, Peoples R China in 2019, Cited 48. HPLC of Formula: C8H6O2. The Name is Isobenzofuran-1(3H)-one. Through research, I have a further understanding and discovery of 87-41-2

Polyoxymethylene dimethyl ethers (PODE, with the formula of CH3O-(CH2O)(n)-CH3), as a promising environmentally benign diesel fuel or additive with an enormous potential in the reduction of soot and NIC, emissions, can be efficiently synthesized from methanol derivatives such as dimethoxymethane (DMM) and trioxymethylene (TOM), which requests a proper catalyst of high performance. In this work, the catalytic performance of graphene oxide (GO) in the synthesis of PODEn as well as its relation to the catalyst structure was thoroughly investigated. The results indicate that GO is an excellent catalyst in the synthesis of PODEn from DMM and TOM; a TOM conversion of 94.6% and selectivity of 86.0% to PODE2-8 are achieved under mild reaction conditions, which is superior to the majority of the state-of-the-art catalysts. Meanwhile, the active species and characteristic layer structure of GO sheets catalytically responsible for PODEn formation were discriminated through selectively removing certain surface functional groups, thermally annealing at different temperatures, and carefully comparing with a series of model compounds. The results illustrate that the superior catalytic performance of GO in the PODEn synthesis should be ascribed to a synergy between the surface sulfonyl, hydroxyl and carboxyl groups present on the GO surface and the unique layered structure of GO sheets, wherein the surface sulfonyl groups act as the main active sites. The insights shown in this work are beneficial to a deep understanding on the catalytic principle of GO and development of efficient catalyst for the synthesis of PODEn.

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Reference:
Benzofuran – Wikipedia,
,Benzofuran | C8H6O – PubChem