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GLYCOLALDEHYDE

  • CAS No.: 141-46-8
  • Purity: 99%
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GLYCOLALDEHYDE GMP Manufacturer Global Trade 141-46-8 with Fast Delivery

  • Molecular Formula: C2H4 O2
  • Molecular Weight: 60.0526
  • Vapor Pressure: 4.15mmHg at 25°C 
  • Melting Point: 97°C 
  • Refractive Index: 1.4772 
  • Boiling Point: 131.3°Cat760mmHg 
  • PKA: 13.34±0.10(Predicted) 
  • Flash Point: 42°C 
  • PSA: 37.30000 
  • Density: 1.065g/cm3 
  • LogP: -0.82240 

GLYCOLALDEHYDE(Cas 141-46-8) Usage

Definition

ChEBI: The glycolaldehyde derived from ethylene glycol. The parent of the class of glycolaldehydes.

Hazard

Moderately toxic by ingestion

InChI:InChI=1/C2H4O2/c3-1-2-4/h1,4H,2H2

141-46-8 Relevant articles

A FT IR Study of a Transitory Product in the Gas-Phase Ozone-Ethylene Reaction

Niki, H.,Maker, P. D.,Savage, C. M.,Breitenbach, L. P.

, p. 1024 - 1027 (1981)

Further kinetic and spectroscopic charac...

HYDROFORMYLATION OF FORMALDEHYDE CATALYSED BY RHODIUM COMPLEXES

Spencer, A.

, p. 113 - 124 (1980)

The hydroformylation of formaldehyde to ...

Pyrolysis of inulin, glucose, and fructose

Ponder, Glenn R.,Richards, Geoffrey N.

, p. 341 - 360 (1993)

The pyrolytic behavior of inulin, a (2->...

Laboratory and theoretical study of the oxy radicals in the OH- and Cl-initiated oxidation of ethene

Orlando, John J.,Tyndall, Geoffrey S.,Bilde, Merete,Ferronato, Corinne,Wallington, Timothy J.,Vereecken, Luc,Peeters, Jozef

, p. 8116 - 8123 (1998)

The products of the OH-initiated oxidati...

KINETICS AND MECHANISM OF THE OXIDATION OF SOME DIOLS BY CHROMIUM(VI) IN PERCHLORIC ACID MEDIUM

Gupta, Kalyan Kali Sen,Samanta, Tapashi,Basu, Samarendra Nath

, p. 5707 - 5714 (1986)

Chromic acid oxidations of some diols ha...

Tuning Ca-Al-based catalysts' composition to isomerize or epimerize glucose and other sugars

Ventura, Maria,Cecilia, Juan A.,Rodríguez-Castellón, Enrique,Domine, Marcelo E.

, p. 1393 - 1405 (2020)

One of the key reactions to achieve good...

Catalytic conversion of xylose to furfural over the solid acid SO 42-/ZrO2-Al2O3/SBA-15 catalysts

Shi, Xuejun,Wu, Yulong,Li, Panpan,Yi, Huaifeng,Yang, Mingde,Wang, Gehua

, p. 480 - 487 (2011)

Al-promoted SO42--/ZrO2/SBA-15 catalysts...

Study of hydroformylation of formaldehyde in the presence of rhodium catalysts by in situ IR spectroscopy and the kinetic technique

Ezhova, N. N.,Korneeva, G. A.,Kurkin, V. I.,Slivinsky E. V.

, p. 1027 - 1030 (1995)

Carbonylrhodium complexes formed during ...

Kinetics and mechanisms of OH-initiated oxidation of small unsaturated alcohols

Takahashi, Kenshi,Hurley, Michael D.,Wallington, Timothy J.

, p. 151 - 158 (2010)

Smog chamber relative rate techniques we...

Study of the photoinduced formose reaction by flash and stationary photolysis

Snytnikova, Olga A.,Simonov, Alexandr N.,Pestunova, Oxana P.,Parmon, Valentin N.,Tsentalovich, Yuri P.

, p. 9 - 11 (2006)

The chemical condensation of formaldehyd...

Catalytic fast pyrolysis of cellulose using nano zeolite and zeolite/matrix catalysts in a GC/micro-pyrolyzer

Lee, Kyong-Hwan

, p. 4631 - 4637 (2016)

Cellulose, as a model compound of biomas...

REACTIONS RETRODIENIQUES XIII - THERMOLYSE ECLAIR DES (Z) ET (E) DIHYDROXY-11,12 ETHANO-9,10 ANTHRACENES : SYNTHESE DES (Z) ET (E) ETHENEDIOLS-1,2.

Lasne, Marie-Claire,Ripoll, Jean-Louis

, p. 1587 - 1588 (1982)

The flash vacuum thermolysis of diols 3 ...

Effects of B group vitamins on reactions of various α-hydroxyl- containing organic radicals

Lagutin,Shadyro

, p. 3797 - 3800 (2005)

Effects of vitamins B1, B2, B6, and pyri...

Atmospheric fate of methyl vinyl ketone: Peroxy radical reactions with NO and HO2

Praske, Eric,Crounse, John D.,Bates, Kelvin H.,Kurtén, Theo,Kjaergaard, Henrik G.,Wennberg, Paul O.

, p. 4562 - 4572 (2015)

First generation product yields from the...

Convergent Functional Groups: Catalysis of Hemiacetal Cleavage in a Synthetic Molecular Cleft

Wolfe, J.,Nemeth, D.,Costero, A.,Rebek, J. Jr.

, p. 983 - 984 (1988)

-

Selective oxidation of alcohols over Ag-containing Si3N 4 catalysts

Vodyankina, Olga V.,Blokhina,Kurzina,Sobolev,Koltunov, K.Yu.,Chukhlomina,Dvilis

, p. 127 - 132 (2013)

Ag-containing ceramic catalysts modified...

Separating Thermodynamics from Kinetics—A New Understanding of the Transketolase Reaction

Marsden, Stefan R.,Gjonaj, Lorina,Eustace, Stephen J.,Hanefeld, Ulf

, p. 1808 - 1814 (2017)

Transketolase catalyzes asymmetric C?C b...

Design of a synthetic enzyme cascade for the: In vitro fixation of a C1carbon source to a functional C4sugar

Güner, Samed,Pick, André,Sieber, Volker,Wegat, Vanessa

, p. 6583 - 6590 (2021)

Realizing a sustainable future requires ...

The Enhancement of Formose Formation with 2-Hydroxyacetophenone. A mechanism Involving Aldol and Retro-aldol Reactions

Sakai, Tomoya,Ishizaki, Masahiko,Goto, Masafumi

, p. 2409 - 2414 (1982)

The rapid aldol addition of formaldehyde...

-

Mead,Bartron

, p. 1287 (1948)

-

Manganese(III) oxidation of L-serine in aqueous sulfuric acid medium: Kinetics and mechanism

Chandraju,Rangappa,Made Gowda

, p. 525 - 530 (1999)

Kinetics and mechanism of oxidation of L...

Efficient immobilization of yeast transketolase on layered double hydroxides and application for ketose synthesis

Benaissi, Karima,Helaine, Virgil,Prevot, Vanessa,Forano, Claude,Hecquet, Laurence

, p. 1497 - 1509 (2011)

Transketolase (TK) from S. cerevisiae wa...

Catalysis and Stability Effect of Solvent Alcohol on the C6 Aldose Conversion toward Tetrose

Hou, Wenrong,Yan, Yueer,Li, Gang,Zhan, Yulu,Feng, Lei,Zhang, Ruohong,Hua Li, Zhen,Zhang, Yahong,Tang, Yi

, p. 4182 - 4188 (2019)

Conversions of biomass feedstock into va...

Enhancing tungsten oxide/SBA-15 catalysts for hydrolysis of cellobiose through doping ZrO2

Wang, Hua,Guo, Yingge,Chang, Cuirong,Zhu, Xinli,Liu, Xiao,Han, Jinyu,Ge, Qingfeng

, p. 182 - 192 (2016)

The number of strong acid sites on a hyd...

Products of the gas-phase reaction of the OH radical with 3-methyl-1-butene in the presence of NO

Atkinson,Tuazon,Aschmann

, p. 577 - 587 (1998)

The products of the gas-phase reaction o...

Comparative study on the photocatalytic oxidation of glycerol using ZnO and TiO2

Hermes, Natanael A.,Corsetti, Andre,Lansarin, Marla A.

, p. 143 - 145 (2014)

Herein, we have compared the behavior of...

Transformations of formaldehyde and glycolaldehyde during the hydroformylation of formaldehyde in the presence of rhodium catalysts

Ezhova, N. N.,Korneeva, G. A.,Slivinsky, E. V.,Aronovich, R. A.

, p. 69 - 73 (1995)

Hydroformylation of formaldehyde to give...

Gas-phase reaction of two unsaturated ketones with atomic Cl and O3: Kinetics and products

Wang, Jing,Zhou, Li,Wang, Weigang,Ge, Maofa

, p. 12000 - 12012 (2015)

The rate constants and products for the ...

Governing chemistry of cellulose hydrolysis in supercritical water

Cantero, Danilo A.,Bermejo, M. Dolores,Cocero, M. José

, p. 1026 - 1033 (2015)

At extremely low reaction times (0.02 s)...

Direct conversion of C6 sugars to methyl glycerate and glycolate in methanol

Feng, Lei,Li, Gang,Yan, Yueer,Hou, Wenrong,Zhang, Yahong,Tang, Yi

, p. 30163 - 30170 (2018)

The present work deals with the one-pot ...

Revealing the chemistry of biomass pyrolysis by means of tunable synchrotron photoionisation-mass spectrometry

Dufour, Anthony,Weng, Junjie,Jia, Liangyuan,Tang, Xiaofeng,Sirjean, Baptiste,Fournet, Rene,Gall, Herve Le,Brosse, Nicolas,Billaud, Francis,Mauviel, Guillain,Qi, Fei

, p. 4786 - 4792 (2013)

Imaging biomass conversion: pyrolysis ...

Photochemistry and Photophysics of Glycolaldehyde in Solution

Beeby, Andrew,Mohammed, Dahlan Bin Hj.,Sodeau, John R.

, p. 857 - 861 (1987)

The end products for the photolysis of g...

Borate-Stabilized Transformation of C6 Aldose to C4 Aldose

Yan, Yueer,Feng, Lei,Li, Gang,Lin, Shaoying,Sun, Zhen,Zhang, Yahong,Tang, Yi

, p. 4473 - 4478 (2017)

Highly efficient transformations of biom...

Influence of substituents of the mechanism of oxidation of amino acids

Ramachandran,Eswaramoorthy,Sureshkumar

, p. 9495 - 9504 (1994)

The kinetics of oxidation of amino acids...

Products from the gas-phase reaction of some unsaturated alcohols with nitrate radicals

Noda,Hallquist,Langer,Ljungstroem

, p. 2555 - 2564 (2000)

Five structurally similar unsaturated al...

Promoted Hydroformylation of Formaldehyde By Electronic Metal–Support Interactions in N-Group Functionalized Silica Supported Rhodium Catalyst

Chen, Jie,Qiao, Luyang,Zhou, Zhangfeng,Wu, Xiaoman,Guo, Xiaxin,Zong, Shanshan,Ding, Yifan,He, Yuntao,Yao, Yuangen

, p. 3664 - 3674 (2021)

The influence of surface modification of...

A point mutation converts dihydroneopterin aldolase to a cofactor-independent oxygenase

Wang, Yi,Scherperel, Gwynyth,Roberts, Kade D.,Jones, A. Daniel,Reid, Gavin E.,Yan, Honggao

, p. 13216 - 13223 (2006)

Dihydroneopterin aldolase (DHNA) catalyz...

-

Roth,Orchin

, p. C27 (1979)

-

Reactions of the peroxo intermediate of soluble methane monooxygenase hydroxylase with ethers

Beauvais, Laurance G.,Lippard, Stephen J.

, p. 7370 - 7378 (2005)

Soluble methane monooxygenase (sMMO) iso...

-

Fenton

, p. 375 (1897)

-

NEW BED MATERIAL FOR THERMOLYTIC FRAGMENTATION OF SUGARS

-

Page/Page column 14-19, (2021/02/26)

The present invention relates to a proce...

PROCESSES FOR PREPARING C-4 SUGARS AND KETOSE SUGARS

-

Page/Page column 13-27, (2021/11/20)

Various processes for preparing C4 aldos...

PROCESSES FOR THE PYROLYSIS OF CARBOHYDRATES

-

Page/Page column 13-27, (2021/11/20)

Various processes for the pyrolysis of c...

Selective Reductive Dimerization of CO2into Glycolaldehyde

Zhang, Dan,Jarava-Barrera, Carlos,Bontemps, Sébastien

, p. 4568 - 4575 (2021/05/04)

The selective dimerization of CO2 into g...

141-46-8 Process route

p-Nitrophenyloxirane
6388-74-5,38201-14-8,71884-55-4

p-Nitrophenyloxirane

4-nitro-phenol
100-02-7,78813-13-5,89830-32-0

4-nitro-phenol

Glycolaldehyde
141-46-8

Glycolaldehyde

Conditions
Conditions Yield
With potassium chloride; sodium perchlorate; at 25 ℃; Rate constant; Mechanism; different pH 2-14;
2-(4-nitrophenoxy)oxirane
59485-08-4

2-(4-nitrophenoxy)oxirane

4-nitro-phenol
100-02-7,78813-13-5,89830-32-0

4-nitro-phenol

Glycolaldehyde
141-46-8

Glycolaldehyde

Conditions
Conditions Yield
With phosphate buffer; In water; at 37 ℃; Thermodynamic data; activation energy;

141-46-8 Upstream products

  • 110-86-1
    110-86-1

    pyridine

  • 102-71-6
    102-71-6

    triethanolamine

  • 94-36-0
    94-36-0

    dibenzoyl peroxide

  • 3967-54-2
    3967-54-2

    4-chloro-1,3-dioxolan-2-one

141-46-8 Downstream products

  • 3673-06-1
    3673-06-1

    N,N'-dicyclohexylethylenediimine

  • 30934-97-5
    30934-97-5

    2,2-dimethoxyethanol

  • 288-32-4
    288-32-4

    1H-imidazole

  • 20235-19-2
    20235-19-2

    arabinose

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