Home Other Building Blocks 931-40-8
931-40-8,MFCD00085561
Catalog No.:AA0034W4

931-40-8 | Glycerol 1,2-carbonate

Pack Size
Purity
Availability
Price(USD)
Quantity
  
5g
90%
in stock  
$11.00   $8.00
- +
25g
90%
in stock  
$41.00   $29.00
- +
100g
90%
in stock  
$124.00   $87.00
- +
500g
90%
in stock  
$434.00   $304.00
- +
  • Technical Information
  • Properties
  • Upstream Synthesis Route
  • Downstream Synthesis Route
  • Literature
  • Request for Quotation
  • Download SDS
  • Technical Information
  • Properties
  • Upstream Synthesis Route
  • Downstream Synthesis Route
  • Literature
Technical Information
Catalog Number:
AA0034W4
Chemical Name:
Glycerol 1,2-carbonate
CAS Number:
931-40-8
Molecular Formula:
C4H6O4
Molecular Weight:
118.0880
MDL Number:
MFCD00085561
SMILES:
OCC1COC(=O)O1
NSC Number:
60535
Properties
Properties
 
BP:
137-140 °C0.5 mm Hg(lit.)  
Form:
Liquid  
Refractive Index:
n20/D 1.469(lit.)  
Storage:
Keep in dry area;Room Temperature;  

Computed Properties
 
Complexity:
100  
Covalently-Bonded Unit Count:
1  
Heavy Atom Count:
8  
Hydrogen Bond Acceptor Count:
4  
Hydrogen Bond Donor Count:
1  
Rotatable Bond Count:
1  
Undefined Atom Stereocenter Count:
1  
XLogP3:
-1.5  

Upstream Synthesis Route

[1]JAOCS,JournaloftheAmericanOilChemists'Society,2014,vol.91,#2,p.337-348

[1]JournalofCatalysis,2010,vol.269,#1,p.140-149

[2]JournalofSolidStateChemistry,2017,vol.256,p.93-100

[1]ChemSusChem,2013,vol.6,#2,p.345-352

[1]JournalofSolidStateChemistry,2017,vol.256,p.93-100

Downstream Synthesis Route

[1]JournalofSolidStateChemistry,2019,vol.276,p.190-193

[2]ChemSusChem,2016,vol.9,p.3457-3464

[3]DaltonTransactions,2017,vol.46,p.6756-6761

[4]NewJournalofChemistry,2019,vol.43,p.2583-2590

[5]DaltonTransactions,2019,vol.48,p.10733-10742

[6]ChemSusChem,2017,vol.10,p.2886-2890

[7]ChemCatChem,2015,vol.7,p.1535-1538

[8]JournalofOrganicChemistry,2018,vol.83,p.9370-9380

[9]DaltonTransactions,2018,vol.47,p.12711-12717

[10]Reactiveandfunctionalpolymers,2020,vol.149

[11]TetrahedronLetters,2012,vol.53,p.2736-2740

[12]JournalofMolecularCatalysisA:Chemical,2016,vol.420,p.208-215

[13]ChemSusChem,2018,vol.11,p.2340-2347

[14]JournalofCatalysis,2019,vol.377,p.190-198

[15]AdvancedSynthesisandCatalysis,2014,vol.356,p.1955-1961

[16]Molecularcatalysis,2018,vol.451,p.200-208

[17]CatalysisLetters,2020,vol.150,p.2254-2266

[18]AngewandteChemie-InternationalEdition,2016,vol.55,p.3972-3976    Angew.Chem.,2016,vol.128,p.4040-4044,5

[19]InorganicChemistry,2019,vol.58,p.3396-3408

[20]ChemSusChem,2014,vol.7,p.2110-2114

[21]Catalysisscienceandtechnology,2019,vol.9,p.3879-3886

[22]ChemicalCommunications,2011,vol.47,p.11888-11890

[23]RSCAdvances,2014,vol.4,p.58581-58590

[24]EuropeanJournalofOrganicChemistry,2019,vol.2019,p.1311-1316

[25]Organicandbiomolecularchemistry,2020,vol.18,p.2637-2640

[26]GreenChemistry,2015,vol.17,p.3059-3066

[27]CatalysisToday,2016,vol.265,p.56-67

[28]ChemSusChem,2017,vol.10,p.1175-1185

[29]ChemicalCommunications,2012,vol.48,p.4489-4491

[30]ResearchonChemicalIntermediates,2016,vol.42,p.2317-2328

[31]JournalofMolecularLiquids,2019,vol.296

[32]DaltonTransactions,2020,vol.49,p.1124-1134

[33]Synlett,2020,vol.31,p.183-188

[34]AppliedOrganometallicChemistry,2019,vol.33

[35]BeilsteinJournalofOrganicChemistry,2015,vol.11,p.1614-1623

[36]AngewandteChemie-InternationalEdition,2018,vol.57,p.11203-11207    Angew.Chem.,2018,vol.130,p.11373-11377,5

[37]ChemSusChem,2020

[38]ChemSusChem,2012,vol.5,p.2032-2038

[39]ChemSusChem,2015,vol.8,p.3248-3254

[40]Chemistry-AEuropeanJournal,2016,vol.22,p.2100-2107

[41]Phosphorus,SulfurandSiliconandtheRelatedElements,2018,vol.193,p.535-544

[42]ChemSusChem,2017,vol.10,p.74-78

[43]GreenChemistry,2017,vol.19,p.5488-5493

[44]Chemistry-AEuropeanJournal,2014,vol.20,p.15005-15008

[45]AppliedCatalysisA:General,2020,vol.601

[46]ChemSusChem,2017,vol.10,p.3025-3029

[47]DaltonTransactions,2019,vol.48,p.4218-4227

[48]JournalofMolecularLiquids,2019,vol.293

[49]MonatsheftefurChemie,1984,vol.115,p.205-214

[50]ACSCatalysis,2016,vol.6,p.5012-5025

[51]BulletinoftheChemicalSocietyofJapan,2018,vol.91,p.383-390

[52]JournalofMaterialsChemistryA,2017,vol.5,p.23612-23619

[53]Catalysisscienceandtechnology,2014,vol.4,p.1674-1684

[54]ChemicalCommunications,2009,p.2577-2579

[55]DaltonTransactions,2011,vol.40,p.3885-3902

[56]InorganicChemistry,2019,vol.58,p.8775-8786

[57]Organometallics,2019,vol.38,p.469-478

[58]Chemistry-AEuropeanJournal,2015,vol.21,p.9850-9862

[59]ChemCatChem,2016,vol.8,p.234-243

[60]ChemSusChem,2017,vol.10,p.1152-1159

[61]ChemicalCommunications,2014,vol.50,p.10952-10955

[62]Organometallics,2016,vol.35,p.1707-1712

[63]InorganicChemistry,2017,vol.56,p.4568-4575

[64]ChemCatChem,2016,vol.8,p.2466-2471

[65]ChemSusChem,2015,vol.8,p.2655-2669

[66]JournaloftheAmericanChemicalSociety,2013,vol.135,p.1228-1231

[67]DaltonTransactions,2017,vol.46,p.13862-13868

[68]Catalysisscienceandtechnology,2014,vol.4,p.1615-1621

[69]ChemCatChem,2018,vol.10,p.2271-2277

[70]GreenChemistry,2017,vol.19,p.3769-3779

[71]Patent:WO2008/132474,2008,A1.Locationinpatent:Page/Pagecolumn26-28

[72]Chemistry-AEuropeanJournal,2010,vol.16,p.6828-6843

[73]EuropeanJournalofInorganicChemistry,2020,vol.2020,p.2835-2841

[74]AdvancedSynthesisandCatalysis,2019,vol.361,p.345-354

[75]ChemicalCommunications,2005,p.3331-3333

[76]Patent:WO2009/109765,2009,A1.Locationinpatent:Page/Pagecolumn37;38

[77]AdvancedSynthesisandCatalysis,2012,vol.354,p.469-476

[78]Polyhedron,2012,vol.32,p.49-53

[79]JournalofMolecularCatalysisA:Chemical,2014,vol.386,p.42-48

[80]Catalysisscienceandtechnology,2014,vol.4,p.1749-1758

[81]ChemSusChem,2014,vol.7,p.1357-1360

[82]Synlett,2014,vol.25,p.197-200

[83]ChemCatChem,2015,vol.7,p.94-98

[84]GreenChemistry,2015,vol.17,p.2853-2858

[85]Catalysisscienceandtechnology,2015,vol.5,p.4636-4643

[86]RSCAdvances,2016,vol.6,p.3243-3249

[87]Catalysisscienceandtechnology,2016,vol.6,p.5364-5373

[88]InorganicChemistry,2016,vol.55,p.9671-9676

[89]ChemicalCommunications,2016,vol.52,p.11147-11150

[90]DaltonTransactions,2016,vol.45,p.14658-14667

[91]ChemSusChem,2017,vol.10,p.1202-1209

[92]ChemSusChem,2017,vol.10,p.1217-1223

[93]Patent:US9656943,2017,B2.Locationinpatent:Page/Pagecolumn9;10

[94]NewJournalofChemistry,2017,vol.41,p.12937-12946

[95]Chemistry-AnAsianJournal,2017,vol.12,p.1364-1373

[96]ScienceChinaChemistry,2017,vol.60,p.1328-1333

[97]CuihuaXuebao/ChineseJournalofCatalysis,2018,vol.39,p.245-249

[98]ChemicalCommunications,2018,vol.54,p.1758-1761

[99]DaltonTransactions,2018,vol.47,p.4545-4553

[100]CatalysisToday,2018,vol.309,p.253-262

[101]JournalofOrganometallicChemistry,2018,vol.866,p.1-12

[102]ACSCatalysis,2018,vol.8,p.3194-3201

[103]CuihuaXuebao/ChineseJournalofCatalysis,2018,vol.39,p.1320-1328

[104]DaltonTransactions,2018,vol.47,p.7159-7165

[105]CatalysisToday,2019,vol.324,p.59-65

[106]RSCAdvances,2018,vol.8,p.25342-25350

[107]Molecularcatalysis,2018,vol.456,p.87-95

[108]JournalofOrganometallicChemistry,2019,vol.880,p.322-332

[109]ChemCatChem,2019,vol.11,p.560-567

[110]ChemSusChem,2019,vol.12,p.409-415

[111]DaltonTransactions,2019,vol.48,p.1246-1250

[112]AngewandteChemie-InternationalEdition,2019,vol.58,p.3511-3515    Angew.Chem.,2019,vol.131,p.3549-3553,5

[113]InorganicChemistry,2019

[114]InorganicChemistry,2019,vol.58,p.5253-5264

[115]DaltonTransactions,2019,vol.48,p.6248-6260

[116]DaltonTransactions,2019,vol.48,p.10078-10088

[117]ChemPlusChem,2019,vol.84,p.1536-1543

[118]JournalofOrganometallicChemistry,2019,vol.898

[119]Polyhedron,2019,vol.173

[120]AppliedOrganometallicChemistry,2020,vol.34

[121]AdvancedSynthesisandCatalysis,2020,vol.362,p.1696-1705

[122]ChemicalCommunications,2020,vol.56,p.3309-3312

[123]NewJournalofChemistry,2020,vol.44,p.5019-5022

[124]Patent:CN111233816,2020,A.Locationinpatent:Paragraph0063-0064

[125]Patent:CN111253360,2020,A.Locationinpatent:Paragraph0088;0093

[126]ChemicalCommunications,2020,vol.56,p.7849-7852

[1]Macromolecules,2005,vol.38,p.9474-9481

[1]OrganicLetters,1999,vol.1,p.933-936

[1]Patent:WO2021/78492,2021,A1.Locationinpatent:Page/Pagecolumn6-11

[2]Patent:WO2005/58862,2005,A2.Locationinpatent:Page/Pagecolumn7-8;12

[3]Patent:WO2005/58862,2005,A2.Locationinpatent:Page/Pagecolumn9-10;12

[4]Patent:WO2005/58862,2005,A2.Locationinpatent:Page/Pagecolumn8-9;12

[5]Patent:WO2005/58862,2005,A2.Locationinpatent:Page/Pagecolumn11-12

[6]Patent:WO2017/112881,2017,A1.Locationinpatent:Paragraph0086;0088;0092

[1]Ghandi,Mehdi;Mostashari,Abdoljalil;Karegar,Mojgan;Barzegar,Mina[JournaloftheAmericanOilChemists'Society,2007,vol.84,#7,p.681-685]

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