87-73-0 (D-葡糖二酸,(2R,3S,4S,5S)-2,3,4,5-tetrahydroxyhexanedioic acid)

CAS号:
87-73-0
中文名称:
D-葡糖二酸
英文名称:
(2R,3S,4S,5S)-2,3,4,5-tetrahydroxyhexanedioic acid
分子式:
C6H10O8
分子量:
210.138803005219

D-葡糖二酸(87-73-0)名称与标识符

名称

中文别名:
D-葡糖二酸;葡萄糖二酸;糖酸;
英文别名:
D-Glucaric acid;SACCHARIC ACID;(R)-2-Amino-5-(tert-butoxy)-5-oxopentanoic acid;1-(2'', 3'', 5''-TRI-O-BENZOYL-β-L-RIBOFURANOSYL)URACIL;D-Glu(OBu-t)-OH;D-Glu(OtBu)-OH;D-saccharic acid;glucaric acid;H-D-Glu(OtBu)-OH;ketogluconic acid;Glucarate;D-Glucosaccharic acid;(2R,3S,4S,5S)-2,3,4,5-tetrahydroxyhexanedioic acid;Glucaric acid, D- (8CI);Saccharic acid (6CI);D-(+)-Saccharic acid;D-Saccharate;D-Tetrahydroxyadipic acid;L-Gularic acid;Saccharic acids;D-glucarate;galactarate(2-);Galactarsaeure;Galactaric acid;Mucic acid;Galaktarsaeure;acido mucico;acido galactarico;galactarate;526-99-8;Mucinsaeure;Galactosaccharic acid;D-glucarate(2-);Schleimsaeure;Saccharolactic acid;

标识符

InChIKey:
DSLZVSRJTYRBFB-LLEIAEIESA-N
Inchi:
1S/C6H10O8/c7-1(3(9)5(11)12)2(8)4(10)6(13)14/h1-4,7-10H,(H,11,12)(H,13,14)/t1-,2-,3-,4+/m0/s1
SMILES:
[C@@H](O)([C@@H](O)C(=O)O)[C@H](O)[C@H](O)C(=O)O

D-葡糖二酸(87-73-0)物化性质

实验特性

  • LogP : -3.40080
  • PSA : 155.52000
  • 折射率 : 1.5800 (estimate)
  • 沸点 : 269.65°C (rough estimate)
  • 熔点 : 125-126°
  • 闪点 : 431.2ºC
  • 比旋光度 : D19 +6.86° +20.60° (H2O)
  • 密度 : 1.5274 (rough estimate)

计算特性

  • 精确分子量 : 210.03800
  • 氢键供体数量 : 6
  • 氢键受体数量 : 8
  • 可旋转化学键数量 : 5
  • 同位素质量 : 210.038
  • 重原子数量 : 14
  • 复杂度 : 202
  • 同位素原子数量 : 0
  • 确定原子立构中心数量 : 4
  • 不确定原子立构中心数量 : 0
  • 确定化学键立构中心数量 : 0
  • 不确定化学键立构中心数量 : 0
  • 共价键单元数量 : 1
  • 疏水参数计算参考值(XlogP) : _2.5
  • 拓扑分子极性表面积 : 156A^2

D-葡糖二酸(87-73-0)安全信息

D-葡糖二酸(87-73-0)国际标准相关数据

EINECS:
201-768-1

D-葡糖二酸(87-73-0)海关数据

海关编码:
2918199090
海关数据:

中国海关编码:

2918199090

概述:

HS: 2918199090. 其他含醇基但不含其他含氧基羧酸(包括其酸酐、酰卤化物、过氧化物和过氧酸及该税号的衍生物). 增值税率:17.0%. 退税率:9.0%. 监管条件:无. 最惠国关税:6.5%. 普通关税:30.0%

申报要素:

品名, 成分含量, 用途

Summary:

2918199090 other carboxylic acids with alcohol function but without other oxygen function, their anhydrides, halides, peroxides, peroxyacids and their derivatives。Supervision conditions:None。VAT:17.0%。Tax rebate rate:9.0%。MFN tariff:6.5%。General tariff:30.0%

D-葡糖二酸(87-73-0)推荐厂家 更多厂家(46)

D-葡糖二酸(87-73-0)合成路线

合成路线:1 步
参考文献:
Transition-metal-free decarboxylation of D-glucaric acid to furan catalyzed by SnCl4 in a biphasic system
Li, Teng; et al, Molecular Catalysis, 2021, 516,
合成路线:1 步
反应条件:
参考文献:
Nanoparticulate poly(glucaramide)-based hydrogels for controlled release applications
Johnston, Erik R.; et al, Gels, 2017, 3(2), 17/1-17/14
合成路线:1 步
反应条件:
参考文献:
Efficiently coupled glucose oxidation for high-value D-glucaric acid with ultradurable hydrogen via Mn(III) in acidic solution
Li, Junhua; et al, Nano Research, 2023, 16(8), 10748-10755
合成路线:1 步
反应条件:
参考文献:
Derivatives of D-glucaric acid
Totton, Ezra L.; et al, Journal of Organic Chemistry, 1957, 22,
合成路线:1 步
反应条件:
参考文献:
Modulating electromagnetic interference shielding performance of ultra-lightweight composite foams through shape memory function
Zhu, Shu ; et al, Composites, 2021, 204,
合成路线:1 步
反应条件:
参考文献:
Combinatorial synthetic pathway fine-tuning and cofactor regeneration for metabolic engineering of Escherichia coli significantly improve production of D-glucaric acid
Su, Hui-Hui; et al, New Biotechnology, 2020, 59, 51-58
合成路线:1 步
反应条件:
参考文献:
Combinatorial synthetic pathway fine-tuning and cofactor regeneration for metabolic engineering of Escherichia coli significantly improve production of D-glucaric acid
Su, Hui-Hui; et al, New Biotechnology, 2020, 59, 51-58
合成路线:1 步
反应条件:
参考文献:
Combinatorial synthetic pathway fine-tuning and cofactor regeneration for metabolic engineering of Escherichia coli significantly improve production of D-glucaric acid
Su, Hui-Hui; et al, New Biotechnology, 2020, 59, 51-58
合成路线:1 步
反应条件:
参考文献:
Oxidation of D-glucose to D-gluconic and D-glucaric acids catalyzed by sodium nitrite
Grigor'eva, I. A.; et al, Russian Journal of Applied Chemistry (Translation of Zhurnal Prikladnoi Khimii), 2001, 74(12), 2021-2026
合成路线:1 步
反应条件:
参考文献:
Combinatorial synthetic pathway fine-tuning and cofactor regeneration for metabolic engineering of Escherichia coli significantly improve production of D-glucaric acid
Su, Hui-Hui; et al, New Biotechnology, 2020, 59, 51-58
合成路线:1 步
反应条件:
参考文献:
Combinatorial synthetic pathway fine-tuning and cofactor regeneration for metabolic engineering of Escherichia coli significantly improve production of D-glucaric acid
Su, Hui-Hui; et al, New Biotechnology, 2020, 59, 51-58
合成路线:1 步
反应条件:
参考文献:
Combinatorial synthetic pathway fine-tuning and cofactor regeneration for metabolic engineering of Escherichia coli significantly improve production of D-glucaric acid
Su, Hui-Hui; et al, New Biotechnology, 2020, 59, 51-58

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