Galvez-Ruiz, Juan Carlos et al. published their research in Heterocycles in 2004 |CAS: 4719-04-4

The Article related to dithiazinanyl ethanol heterocycle preparation crystal mol structure reactivity, tosyl oxazolidine benzyl hydroxyethyl triazinane preparation, Heterocyclic Compounds (More Than One Hetero Atom): Other 6-Membered Rings, Three Or More Hetero Atoms and other aspects.COA of Formula: C9H21N3O3

On October 1, 2004, Galvez-Ruiz, Juan Carlos; Jaen-Gaspar, Javier C.; Castellanos-Arzola, Indira G.; Contreras, Rosalinda; Flores-Parra, Angelina published an article.COA of Formula: C9H21N3O3 The title of the article was 2-(1,3,5-Dithiazinan-5-yl)ethanol heterocycles, structure and reactivity. And the article contained the following:

Treatment of 2-(1,3,5-dithiazinan-5-yl)ethanol (1), 2-(1,3,5-dithiazinan-5-yl)-1-phenylethanol (2), 2-(1,3,5-dithiazinan-5-yl)-1-methylethanol (3) and 2-(1,3,5-dithiazinan-5-yl)-2-methyl-1-phenylethanol (4) with TsCl and NEt3 in CH2Cl2 afforded the corresponding 3-tosyl-1,3-oxazolidine derivatives (5-8), whereas tosylation of 1-4 in the presence of NHMe3Cl gave the corresponding O-tosyl-2-(1,3,5-dithiazinan-5-yl)ethanol derivatives (11-14). The direct preparation of 5 and 7 from formaldehyde and N-tosylethanolamine (9) or N-tosyl-2-propanolamine was not successful. Reactions of 1 or 3 with benzylamine furnish 1,3,5-tribenzyl-1,3,5-triazinane. Heating of 1 and 2 affords the corresponding 1,3,5-tri(2-hydroxyethyl)-1,3,5-triazinanes. X-Ray diffraction studies of compounds (1-9 and 11) are reported. The experimental process involved the reaction of 2,2′,2”-(1,3,5-Triazinane-1,3,5-triyl)triethanol(cas: 4719-04-4).COA of Formula: C9H21N3O3

The Article related to dithiazinanyl ethanol heterocycle preparation crystal mol structure reactivity, tosyl oxazolidine benzyl hydroxyethyl triazinane preparation, Heterocyclic Compounds (More Than One Hetero Atom): Other 6-Membered Rings, Three Or More Hetero Atoms and other aspects.COA of Formula: C9H21N3O3

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Son, Jong Yeog et al. published their research in Journal of Materials Science: Materials in Electronics in 2022 |CAS: 143-10-2

The Article related to alkyl thiol mol electronic junction intrinsic charge transport, Electric Phenomena: Dielectric and Electret Properties (Including Electric Moments, and Polarizability) and other aspects.Application In Synthesis of 1-Decanethiol

On June 30, 2022, Son, Jong Yeog; Song, Hyunwook published an article.Application In Synthesis of 1-Decanethiol The title of the article was Investigation of intrinsic charge transport via alkyl thiol molecular electronic junctions with conductive probe atomic force microscopy. And the article contained the following:

Herein, we demonstrate characterization of intrinsic charge transport behavior of alkyl thiol mol. electronic junctions using a conductive probe at. force microscopy (CP-AFM). The stable contact between the component mols. and metallic electrodes were established by locating a conductive probe in a static position onto alkyl thiol monolayers, deposited on metal substrates. Then, we performed a combination of various measurement techniques so as to probe the intrinsic charge transport in the mol. junctions, which included temperature-, length-, and force-dependent current-voltage characterizations. Our findings can self-consistently fulfil a criterion in mol. electronics to accomplish a valid junction formation with CP-AFM. The experimental process involved the reaction of 1-Decanethiol(cas: 143-10-2).Application In Synthesis of 1-Decanethiol

The Article related to alkyl thiol mol electronic junction intrinsic charge transport, Electric Phenomena: Dielectric and Electret Properties (Including Electric Moments, and Polarizability) and other aspects.Application In Synthesis of 1-Decanethiol

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Xie, Zuoti et al. published their research in Nanoscale in 2021 |CAS: 143-10-2

The Article related to oligophenylene alkane thiol current rectification mol tunnel junction, Electric Phenomena: Dielectric and Electret Properties (Including Electric Moments, and Polarizability) and other aspects.HPLC of Formula: 143-10-2

Xie, Zuoti; Baldea, Ioan; Nguyen, Quyen Van; Frisbie, C. Daniel published an article in 2021, the title of the article was Quantitative analysis of weak current rectification in molecular tunnel junctions subject to mechanical deformation reveals two different rectification mechanisms for oligophenylene thiols versus alkane thiols.HPLC of Formula: 143-10-2 And the article contains the following content:

Metal-mol.-metal junctions based on alkane thiol (CnT) and oligophenylene thiol (OPTn) self-assembled monolayers (SAMs) and Au electrodes are expected to exhibit similar elec. asymmetry, as both junctions have one chemisorbed Au-S contact and one physisorbed, van der Waals contact. Asymmetry is quantified by the current rectification ratio RR apparent in the current-voltage (I-V) characteristics. Here we show that RR < 1 for CnT and RR > 1 for OPTn junctions, in contrast to expectation, and further, that RR behaves very differently for CnT and OPTn junctions under mech. extension using the conducting probe at. force microscopy (CP-AFM) testbed. The anal. presented in this paper, which leverages results from the previously validated single level model and ab initio quantum chem. calculations, allows us to explain the puzzling exptl. findings for CnT and OPTn in terms of different current rectification mechanisms. Specifically, in CnT-based junctions the Stark effect creates the HOMO level shifting necessary for rectification, while for OPTn junctions the level shift arises from position-dependent coupling of the HOMO wavefunction with the junction electrostatic potential profile. On the basis of these mechanisms, our quantum chem. calculations allow quant. description of the impact of mech. deformation on the measured current rectification. Addnl., our anal., matched to experiment, facilitates direct estimation of the impact of intramol. electrostatic screening on the junction potential profile. Overall, our examination of current rectification in benchmark mol. tunnel junctions illuminates key phys. mechanisms at play in single step tunneling through mols., and demonstrates the quant. agreement that can be obtained between experiment and theory in these systems. The experimental process involved the reaction of 1-Decanethiol(cas: 143-10-2).HPLC of Formula: 143-10-2

The Article related to oligophenylene alkane thiol current rectification mol tunnel junction, Electric Phenomena: Dielectric and Electret Properties (Including Electric Moments, and Polarizability) and other aspects.HPLC of Formula: 143-10-2

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Bettoni, Leo et al. published their research in Chemical Communications (Cambridge, United Kingdom) in 2020 |CAS: 111-29-5

The Article related to cycloalkane preparation diastereoselective, pentamethylphenyl ethanone diol cyclization iron catalyst, Alicyclic Compounds: Higher Members, Including Annulenes, Tropones, Tropolones, and Tropylium Compounds and other aspects.Synthetic Route of 111-29-5

Bettoni, Leo; Gaillard, Sylvain; Renaud, Jean-Luc published an article in 2020, the title of the article was A phosphine-free iron complex-catalyzed synthesis of cycloalkanes via the borrowing hydrogen strategy.Synthetic Route of 111-29-5 And the article contains the following content:

Herein, a diaminocyclopentadienone iron tricarbonyl complex catalyzed synthesis of substituted cyclopentane, cyclohexane and cycloheptane compounds 2,4,6-(Me)3-3,5-(R1)2C6C(O)R (R = cyclohexyl, cyclopentyl, cycloheptyl, etc.; R1 = H, Me) using the borrowing hydrogen strategy in the presence of various substituted primary and secondary 1,n diols e.g., 2-methylpentane-1,5-diol as alkylating reagents was reported. Deuterium labeling experiments confirm that the diols were the hydride source in this cascade process. The experimental process involved the reaction of Pentane-1,5-diol(cas: 111-29-5).Synthetic Route of 111-29-5

The Article related to cycloalkane preparation diastereoselective, pentamethylphenyl ethanone diol cyclization iron catalyst, Alicyclic Compounds: Higher Members, Including Annulenes, Tropones, Tropolones, and Tropylium Compounds and other aspects.Synthetic Route of 111-29-5

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Yu, Shishan et al. published their patent in 2011 |CAS: 62640-03-3

The Article related to cassaine alkaloid analog synthesis amidation antitumor agent, Terpenes and Terpenoids: Diterpenes (C20), Including Gibberellins, Retinoids, Quassinoids, and Tocopherols and other aspects.Formula: C3H10ClNO

On January 12, 2011, Yu, Shishan; Chen, Xiaoguang; Xu, Song; Qu, Jing; Zhou, Qing; Ma, Shuanggang published a patent.Formula: C3H10ClNO The title of the patent was Cassaine alkaloid analogs, their preparation method, and medical application. And the patent contained the following:

The invention disclosed a kind of Cassaine alkaloid analogs, preparation method, and medical application as antitumor agents. The claimed Cassaine alkaloid analogs are shown in structure I and II (R1, R2 = H, (un)substituted C1-C6 alkyl, Ph, -NR1R2 forming 5-member, 6-member or 7-member heterocycle containing 1-3 heteroatoms; R = H, (un)substituted C1-C6 alkyl). The claimed compounds are prepared from III and R1NHR2 amine via amidation (detail procedure given). The obtained compound and pharmaceutical acceptable salts , hydrates, esters, etc., can be used as antitumor agents for preventing and/or treating cancer. The experimental process involved the reaction of 2-(Methylamino)ethan-1-ol hydrochloride(cas: 62640-03-3).Formula: C3H10ClNO

The Article related to cassaine alkaloid analog synthesis amidation antitumor agent, Terpenes and Terpenoids: Diterpenes (C20), Including Gibberellins, Retinoids, Quassinoids, and Tocopherols and other aspects.Formula: C3H10ClNO

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Lien, Shui-Yang et al. published their research in Crystals in 2022 |CAS: 585-88-6

The Article related to polyethylene dioxythiophene polystyrene sulfonate film organic additive, Optical, Electron, and Mass Spectroscopy and Other Related Properties: Spectrometers and Optical Apparatus and other aspects.Application In Synthesis of SweetPearlR P300 DC Maltitol

Lien, Shui-Yang; Lin, Po-Chen; Chen, Wen-Ray; Liu, Chuan-Hsi; Lee, Kuan-Wei; Wang, Na-Fu; Huang, Chien-Jung published an article in 2022, the title of the article was The Mechanism of PEDOT: PSS Films with Organic Additives.Application In Synthesis of SweetPearlR P300 DC Maltitol And the article contains the following content:

This article demonstrates changes in the structures of poly (3,4-ethylene dioxythiophene): polystyrene sulfonate (PEDOT: PSS) with the addition of organic additives. The mechanisms of PEDOT: PSS are analyzed using XPS, cross-sectional images obtained from SEM (SEM), and contact angles. In this paper, a bond-breaking reaction and phase separation are successfully found to occur between PEDOT: PSS mols. and the organic additives. Our research also finds that this bond-breaking reaction and phase separation exist in the PEDOT: PSS-sorbitol-maltitol film at the same time. The addition of organic additives will improve the optical properties and the moisture stability of PEDOT: PSS films. The experimental process involved the reaction of SweetPearlR P300 DC Maltitol(cas: 585-88-6).Application In Synthesis of SweetPearlR P300 DC Maltitol

The Article related to polyethylene dioxythiophene polystyrene sulfonate film organic additive, Optical, Electron, and Mass Spectroscopy and Other Related Properties: Spectrometers and Optical Apparatus and other aspects.Application In Synthesis of SweetPearlR P300 DC Maltitol

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Liu, Lu et al. published their patent in 2005 |CAS: 78-26-2

The Article related to switchable window electrochromic polymer based, Electrochemical, Radiational, and Thermal Energy Technology: Energy-Conversion Devices and Their Components and other aspects.Formula: C7H16O2

On September 15, 2005, Liu, Lu; Xu, Chunye; Legenski, Susan E.; Taya, Minoru published a patent.Formula: C7H16O2 The title of the patent was Switchable window based on electrochromic polymers. And the patent contained the following:

Syntheses of a new blue EC monomer (ProDOT-MePro), and a new red EC monomer (ProDOP-Et2) are described. Two addnl. new types of EC monomers based on 3,4-alkylenedioxythiophene include fluorinated EC monomers and an EC monomer including silicon. EC polymer devices having more than one different color EC polymer to enable addnl. colors to be provided using subtractive color mixing are also described, as well as EC polymer devices incorporating a logo, image, or text, are generally obscured when the device is colored, but become visible when the device is not colored. Also described are EC polymer devices that include a cathodic EC polymer layer, a gel electrolyte, a counter electrode, and a reference electrode. Working prototypes of such devices exhibit significant increases in the speed of transition of the EC device from a colored state to a transparent state. The experimental process involved the reaction of 2-Methyl-2-propylpropane-1,3-diol(cas: 78-26-2).Formula: C7H16O2

The Article related to switchable window electrochromic polymer based, Electrochemical, Radiational, and Thermal Energy Technology: Energy-Conversion Devices and Their Components and other aspects.Formula: C7H16O2

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Zhang, Xiaolong et al. published their research in Green Chemistry in 2021 |CAS: 143-10-2

The Article related to environment degradable quaternary ammonium salt, Surface Active Agents and Detergents: Preparation, Analysis, and Properties Of Surfactants Other Than Soaps and other aspects.Computed Properties of 143-10-2

Zhang, Xiaolong; Kong, Hongtao; Zhang, Xuepeng; Jia, Hengmin; Ma, Xiuxia; Miao, Hui; Mu, Yan; Zhang, Guoqing published an article in 2021, the title of the article was Design and production of environmentally degradable quaternary ammonium salts.Computed Properties of 143-10-2 And the article contains the following content:

Quaternary ammonium compounds (QACs) are a class of cationic surfactants routinely used for the disinfection of industries, institutions and households, and have seen a sharp increase in use during the COVID-19 pandemic. However, current com. QACs consist of only stable chem. bonds such as C-N, C-C, and C-H, which makes their natural degradation rather difficult. Recent studies suggest that emerging neg. environmental impacts, such as systemic antibiotics resistance and toxicity to living organisms, are directly associated with prolonged exposure to QACs. Here we report a new class of QAC which contains relatively volatile chem. functional groups such as ester and thioether bonds. Degradation kinetics in aqueous solutions suggests that the stability of these QACs depends not only on their intrinsic hydrophobicity but also on external environmental factors such as pH, temperature and ion presence. The microbicidal effects of QACs containing carbon chains with various lengths were also tested, one of which, named “Ephemora”, is highly active against a broad spectrum of microbes including fungi, bacteria and viruses, for instance, methicillin-resistant Staphylococcus aureus (MRSA). The easy synthesis and purification of Ephemora starting from inexpensive com. available reagents, together with its excellent antimicrobial activity and ability to degrade in natural waters over time, make its large-scale com. production possible. The experimental process involved the reaction of 1-Decanethiol(cas: 143-10-2).Computed Properties of 143-10-2

The Article related to environment degradable quaternary ammonium salt, Surface Active Agents and Detergents: Preparation, Analysis, and Properties Of Surfactants Other Than Soaps and other aspects.Computed Properties of 143-10-2

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Moreira, Thamyres F. M. et al. published their research in ChemElectroChem in 2022 |CAS: 473-81-4

The Article related to electrooxidation alc carbon palladium rhodium alk medium, Electrochemical, Radiational, and Thermal Energy Technology: Energy-Conversion Devices and Their Components and other aspects.COA of Formula: C3H6O4

On June 14, 2022, Moreira, Thamyres F. M.; Andrade, Adalgisa R.; Boniface Kokoh, K.; Morais, Claudia; Napporn, Teko W.; Olivi, Paulo published an article.COA of Formula: C3H6O4 The title of the article was An FTIR Study of the Electrooxidation of C2 and C3 Alcohols on Carbon-Supported PdxRhy in Alkaline Medium. And the article contained the following:

We have investigated the promoting effect of Rh addition to Pd-based materials in the electrooxidation of ethanol and glycerol. Physicochem. characterizations (XRD, EDX, TEM, and XPS) of the PdxRhy/C materials, prepared by bromide anion exchange (BAE), showed that the exptl. bimetallic compositions were close to the targeted ones. PdxRhy/C particle sizes ranged from 2.2 to 3.8 nm. The ethanol oxidation reaction (EOR) on the PdxRhy/C catalysts yielded four times larger carbonate (CO32-) amount As for the glycerol oxidation reaction (GOR), the onset potential on the Pd50Rh50/C catalyst occurred at lower potentials. Chromatog. anal. combined with in situ Fourier transform IR (FTIR) spectroscopy showed that GOR on the Pd50Rh50/C catalyst selectively and quant. produced glycerate and tartronate. The outstanding ability of the Pd50Rh50/C catalyst toward EOR and GOR was correlated to the electronic effect expressed by a neg. potential shift (200 mV) and the 47% alloying degree in the Pd50Rh50/C structure. The experimental process involved the reaction of 2,3-Dihydroxypropanoic acid(cas: 473-81-4).COA of Formula: C3H6O4

The Article related to electrooxidation alc carbon palladium rhodium alk medium, Electrochemical, Radiational, and Thermal Energy Technology: Energy-Conversion Devices and Their Components and other aspects.COA of Formula: C3H6O4

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Sidiq, Alif Lombardoaji et al. published their research in Materials Research Bulletin in 2022 |CAS: 473-81-4

The Article related to lithium ion battery ncm cathode green hydrometallurgical recycling process, Electrochemical, Radiational, and Thermal Energy Technology: Energy-Conversion Devices and Their Components and other aspects.Computed Properties of 473-81-4

On September 30, 2022, Sidiq, Alif Lombardoaji; Floweri, Octia; Karunawan, Jotti; Abdillah, Oktaviardi Bityasmawan; Santosa, Sigit Puji; Iskandar, Ferry published an article.Computed Properties of 473-81-4 The title of the article was NCM cathode active materials reproduced from end-of-life Li-ion batteries using a simple and green hydrometallurgical recycling process. And the article contained the following:

LiNi1/3Co1/3Mn1/3O2 (NCM 111) cathode material was reproduced from end-of-life lithium-ion batteries (LIBs) via a green hydrometallurgical process including environmentally friendly DL-malic acid leaching, oxalate co-precipitation, and heat treatment. The leaching reached 95% efficiency by using glucose as reducing agent. X-ray fluorescence anal. revealed effective oxalate co-precipitation of metal ions in the form of MC2O4•2H2O (M = Ni, Co, Mn) with Ni, Co, and Mn ratio was approx. 1:1:1. Heat treatment on the mixture of precipitateand lithium salt at 900°C successfully reproduced NCM 111 cathode as confirmed via x-ray diffraction characterization. This sample also demonstrated comparable electrochem. properties with the fresh NCM cathode powder, with an initial specific discharge capacity of 158 mAh/g (0.2 C) and high rate capabilities. After 100 cycles of charge-discharge measurement at 0.2 C, this sample also revealed stable cycling ability with capacity retention of 93%, ensuring the good features of the reproduced cathode. The experimental process involved the reaction of 2,3-Dihydroxypropanoic acid(cas: 473-81-4).Computed Properties of 473-81-4

The Article related to lithium ion battery ncm cathode green hydrometallurgical recycling process, Electrochemical, Radiational, and Thermal Energy Technology: Energy-Conversion Devices and Their Components and other aspects.Computed Properties of 473-81-4

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