
n-Propyl formate | CAS:110-74-7
n-Propyl formate
- Name:n-Propyl formate
- CAS:110-74-7
- Synonyms:Propyl formate; Propyl methanoate
- Molecular Formula:C4H8O2
- Molecular Weight:88.11
- EINESC:203-798-0
Description
Properties
Melting point | -92.9 ºC*** |
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Boiling point | 225-228 ºC** |
Flash point | -3.9±0.0 ºC, 计算值* |
Density | 1.099 g/cm3 (20 ºC)** |
Refractive index | 1.439 (589.3 nm 20 ºC)** |
Safety
没有数据 | 没有数据 |
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SDS
Source | SDS/MSDS Samples |
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没有数据 | 没有数据 |
Synthetic Route
Name | CAS |
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More
Articles
Peer-Reviewed Papers
Rate of hydrolysis and degradation of the cyanogenic glycoside - dhurrin - in soil.Henrik Johansen et al.Chemosphere, 67(2), 259-266 (2006-11-28)
Global transcriptome analysis reveals distinct expression among duplicated genes during sorghum-interaction.Hiroshi Mizuno et al.BMC plant biology, 12, 121-121 (2012-07-31)
Dhurrin synthesis in sorghum is regulated at the transcriptional level and induced by nitrogen fertilization in older plants.Peter Kamp Busk et al.Plant physiology, 129(3), 1222-1231 (2002-07-13)
Drying and processing protocols affect the quantification of cyanogenic glucosides in forage sorghum.Roslyn M Gleadow et al.Journal of the science of food and agriculture, 92(11), 2234-2238 (2012-06-16)
Comparison of gas chromotography, spectrophotometry and near infrared spectroscopy to quantify prussic acid potential in forages.Ben M Goff et al.Journal of the science of food and agriculture, 91(8), 1523-1526 (2011-05-05)
Homology modeling of the three membrane proteins of the dhurrin metabolon: catalytic sites, membrane surface association and protein-protein interactions.Kenneth Jensen et al.Phytochemistry, 72(17), 2113-2123 (2011-05-31)
Metabolism of tyrosine and tryptophan--new genes for old pathways.J L Celenza Current opinion in plant biology, 4(3), 234-240 (2001-04-20)
Metabolon formation in dhurrin biosynthesis.Kirsten Annette Nielsen et al.Phytochemistry, 69(1), 88-98 (2007-08-21)
The aglycone specificity-determining sites are different in 2, 4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one (DIMBOA)-glucosidase (Maize beta -glucosidase) and dhurrinase (Sorghum beta -glucosidase).M Cicek et al.The Journal of biological chemistry, 275(26), 20002-20011 (2000-04-05)
Metabolic channeling in plants.Brenda S J Winkel Annual review of plant biology, 55, 85-107 (2005-02-24)
The in vitro substrate regiospecificity of recombinant UGT85B1, the cyanohydrin glucosyltransferase from Sorghum bicolor.Karina Sinding Hansen et al.Phytochemistry, 64(1), 143-151 (2003-08-30)
Metabolic engineering of dhurrin in transgenic Arabidopsis plants with marginal inadvertent effects on the metabolome and transcriptome.Charlotte Kristensen et al.Proceedings of the National Academy of Sciences of the United States of America, 102(5), 1779-1784 (2005-01-25)
Predictive metabolic engineering in plants: still full of surprises.Toni M Kutchan Trends in biotechnology, 23(8), 381-383 (2005-06-01)
Evolution of heteromeric nitrilase complexes in Poaceae with new functions in nitrile metabolism.Roland Jenrich et al.Proceedings of the National Academy of Sciences of the United States of America, 104(47), 18848-18853 (2007-11-16)
Substrate specificity of the cytochrome P450 enzymes CYP79A1 and CYP71E1 involved in the biosynthesis of the cyanogenic glucoside dhurrin in Sorghum bicolor (L.) Moench.R A Kahn et al.Archives of biochemistry and biophysics, 363(1), 9-18 (1999-03-02)
The UDP-glucose:p-hydroxymandelonitrile-O-glucosyltransferase that catalyzes the last step in synthesis of the cyanogenic glucoside dhurrin in Sorghum bicolor. Isolation, cloning, heterologous expression, and substrate specificity.P R Jones et al.The Journal of biological chemistry, 274(50), 35483-35491 (1999-12-10)
The mechanism of substrate (aglycone) specificity in beta -glucosidases is revealed by crystal structures of mutant maize beta -glucosidase-DIMBOA, -DIMBOAGlc, and -dhurrin complexes.M Czjzek et al.Proceedings of the National Academy of Sciences of the United States of America, 97(25), 13555-13560 (2000-12-06)
A simple analytical method for dhurrin content evaluation in cyanogenic plants for their utilization in fodder and biofumigation.Gina Rosalinda De Nicola et al.Journal of agricultural and food chemistry, 59(15), 8065-8069 (2011-06-29)
Characterization of cytochrome P450TYR, a multifunctional haem-thiolate N-hydroxylase involved in the biosynthesis of the cyanogenic glucoside dhurrin.B A Halkier et al.Drug metabolism and drug interactions, 12(3-4), 285-297 (1995-01-01)
Plant science. Dynamic metabolons.Birger Lindberg Møller Science (New York, N.Y.), 330(6009), 1328-1329 (2010-12-04)
Resistance to an herbivore through engineered cyanogenic glucoside synthesis.D B Tattersall et al.Science (New York, N.Y.), 293(5536), 1826-1828 (2001-07-28)
Reconstitution of cyanogenesis in barley (Hordeum vulgare L.) and its implications for resistance against the barley powdery mildew fungus.Kirsten A Nielsen et al.Planta, 223(5), 1010-1023 (2005-11-25)
Cyanogenic glycosides and menisdaurin from Guazuma ulmifolia, Ostrya virgininana, Tiquilia plicata and Tiquilia canescens.David S Seigler Phytochemistry, 66(13), 1567-1580 (2005-07-09)
A combined biochemical screen and TILLING approach identifies mutations in Sorghum bicolor L. Moench resulting in acyanogenic forage production.Cecilia K Blomstedt et al.Plant biotechnology journal, 10(1), 54-66 (2011-09-02)
Transgenic tobacco and Arabidopsis plants expressing the two multifunctional sorghum cytochrome P450 enzymes, CYP79A1 and CYP71E1, are cyanogenic and accumulate metabolites derived from intermediates in Dhurrin biosynthesis.S Bak et al.Plant physiology, 123(4), 1437-1448 (2000-08-12)
Tailoring the plant metabolome without a loose stitch.Johan Memelink Trends in plant science, 10(7), 305-307 (2005-06-14)
Remarks
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Products currently covered by valid US Patents are offered for R&D use in accordance with 35 USC 271 +A13(1).
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