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D-(+)-麦芽糖一水合物

    级别和纯度:
  • AR
  • ≥97%
有货

库存信息

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库存信息

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库存信息

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货号 (SKU) 包装规格 是否现货 价格 数量
M104815-25g
25g 现货 Stock Image
M104815-100g
100g 现货 Stock Image
M104815-500g
500g 现货 Stock Image
M104815-2.5kg
2.5kg 现货 Stock Image

基本描述

别名 饴糖,淀粉糖
英文别名 D-(+)-Maltose monohydrate, from potato, >=99% | Maltose monohydrate | Maltose Monohydrate, Pharmaceutical Secondary Standard; Certified Reference Material | AC-34514 | D-(+)-Maltose monohydrate, puriss. | D-(+)-Maltose monohydrate, Vetec(TM) reagent grade
规格或纯度 AR, ≥97%
英文名称 D-(+)-Maltose monohydrate
储存温度 干燥
运输条件 常规运输
产品介绍

易溶于水,微溶于醇,不溶于醚。水中溶解度: 1080 g/l water (20°c)。有醛基反应,能发生银镜反应,也能与班氏试剂(用硫酸铜、碳酸钠或苛性钠、柠檬酸钠等溶液配制)共热生成砖红色氧化亚铜沉淀。


纯度 ≥97%

名称和识别符

PubChem SID 504769437
EC号 200-716-5
IIUPAC Name (2R,3R,4R,5R)-2,3,5,6-tetrahydroxy-4-[(2R,3R,4S,5S,6R)-3,4,5-trihydroxy-6-(hydroxymethyl)oxan-2-yl]oxyhexanal;hydrate
INCHI 1S/C12H22O11.H2O/c13-1-4(16)7(18)11(5(17)2-14)23-12-10(21)9(20)8(19)6(3-15)22-12;/h1,4-12,14-21H,2-3H2;1H2/t4-,5+,6+,7+,8+,9-,10+,11+,12+;/m0./s1
InChi Key HBDJFVFTHLOSDW-DNDLZOGFSA-N
Smiles C(C1C(C(C(C(O1)OC(C(CO)O)C(C(C=O)O)O)O)O)O)O.O
Isomeric SMILES C([C@@H]1[C@H]([C@@H]([C@H]([C@H](O1)O[C@H]([C@@H](CO)O)[C@@H]([C@H](C=O)O)O)O)O)O)O.O
PubChem CID 23615261
分子量 360.31
Beilstein号 93798
Reaxy-Rn 5784659

化学和物理性质

溶解性 可溶于水;微溶于乙醇;不溶于乙醚
密度 1.76
敏感性 易吸潮
比旋光度 130° (C=10,H2O(add NH4aq.(2+3)))
熔点 130°C
分子量 360.310 g/mol
XLogP3
氢键供体数Hydrogen Bond Donor Count 9
氢键受体数Hydrogen Bond Acceptor Count 12
可旋转键计数Rotatable Bond Count 8
精确质量Exact Mass 360.127 Da
单同位素质量Monoisotopic Mass 360.127 Da
拓扑极表面积Topological Polar Surface Area 198.000 Ų
重原子数Heavy Atom Count 24
形式电荷Formal Charge 0
复杂度Complexity 367.000
同位素原子数Isotope Atom Count 0
定义的原子立体中心计数Defined Atom Stereocenter Count 9
未定义的原子立体中心计数Undefined Atom Stereocenter Count 0
定义的键立体中心计数Defined Bond Stereocenter Count 0
未定义的键立体中心计数Undefined Bond Stereocenter Count 0
所有立体化学键的总数The total count of all stereochemical bonds 0
共价键合单元计数Covalently-Bonded Unit Count 2

安全和危险性(GHS)

WGK Germany 3
RTECS OO5250000
Merck Index 5714
个人防护装备 Eyeshields,Gloves,type N95 (US),type P1 (EN143) respirator filter

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批号(Lot Number) 证书类型 货号
G2521224 分析证书 M104815
G2521152 分析证书 M104815
G2521225 分析证书 M104815
G2521226 分析证书 M104815
E2523035 分析证书 M104815
C2521852 分析证书 M104815
C2521765 分析证书 M104815
C2521668 分析证书 M104815
C2521901 分析证书 M104815
F2428444 分析证书 M104815
H2427025 分析证书 M104815
F2428445 分析证书 M104815
F2428446 分析证书 M104815
E2416527 分析证书 M104815
E2416282 分析证书 M104815
E2416281 分析证书 M104815
K2323059 分析证书 M104815
I2306519 分析证书 M104815
I2306551 分析证书 M104815
I2306520 分析证书 M104815
I2306552 分析证书 M104815
F2310721 分析证书 M104815
E2316705 分析证书 M104815
C2323049 分析证书 M104815
K2229746 分析证书 M104815
K2229751 分析证书 M104815
J2222413 分析证书 M104815
J2222414 分析证书 M104815
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此产品的引用文献

引用文献

1. Guoxing Liu, Huai Liu, Junhua Zhang, Rui Zhang, Heng Zhang, Yong Sun, Lincai Peng.  (2023)  Efficient Production of 5-Hydroxymethylfurfural from Concentrated Carbohydrates and Raw Biomass over SnP2O7–SnO2 Catalysts.  ACS Sustainable Chemistry & Engineering,  11  (51): (18001–18010).  [10.1021/acssuschemeng.3c05783]
2. Zhi-Yong Guo, Chen Zhang, Lin-min Chen, Mei-huang Zeng, Qiu-hong Yao, Ting-Xiu Ye, He-zhou Luo, Xiao-mei Chen, Xi Chen.  (2023)  Design of competition nanoreactor with shell-isolated colloidal plasmonic nanomaterials for quantitative sensor platform.  TALANTA,  265  (124861).  [PMID:37429252] [10.1016/j.talanta.2023.124861]
3. Teng Wang, Xi Hu, Yujun Yang, Qing Wu, Chengdian He, Xiong He, Zhenyu Wang, Xiang Mao.  (2022)  New Insight into Assembled Fe3O4@PEI@Ag Structure as Acceptable Agent with Enzymatic and Photothermal Properties.  INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES,  23  (18): (10743).  [PMID:36142657] [10.3390/ijms231810743]
4. Haoyue Lu, Jingcheng Hao, Xu Wang.  (2022)  Host-Fueled Transient Supramolecular Hydrogels.  ChemSystemsChem,  (3): (e202100050).  [10.1002/syst.202100050]
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7. Xi Cao, Yayu Pan, Wei Wei, Tinglan Yuan, Sen Wang, Lingyun Xiang, Yongjun Yuan.  (2021)  Single cell oil production by Trichosporon sp.: Effects of fermentation conditions on fatty acid composition and applications in synthesis of structured triacylglycerols.  LWT-FOOD SCIENCE AND TECHNOLOGY,  148  (111691).  [10.1016/j.lwt.2021.111691]
8. Huifang Zhao, Jie Wang, Huayu Zhao, Yulong Liu, Yanqiu Li, Ruiping Zhang.  (2021)  One-step synthesis of N, B-codoped carbon nanofiber as a novel matrix for high-throughput and efficient laser desorption/ionization mass spectrometry analysis.  MICROCHEMICAL JOURNAL,  164  (105966).  [10.1016/j.microc.2021.105966]
9. Xu-mei Wang, Yun-hua Ye, Zong-cai Tu, Yue-ming Hu, Hui Wang, Cheng-yan He.  (2021)  Investigation of the mechanism underlying the influence of mild glycation on the digestibility and IgG/IgE-binding abilities of β-lactoglobulin and its digests through LC orbitrap MS/MS.  LWT-FOOD SCIENCE AND TECHNOLOGY,  139  (110506).  [10.1016/j.lwt.2020.110506]
10. Junjie Hao, Yiwen Li, Xiaoqian Xu, Fenghuan Zhao, Ruikun Pan, Junzi Li, Haochen Liu, Kai Wang, Jiagen Li, Xi Zhu, Marie-Hélène Delville, Ming Zhang, Tingchao He, Jiaji Cheng.  (2020)  Metal-to-Ligand Charge Transfer Chirality Sensing of d-Glucose Assisted with GOX-Based Enzymatic Reaction.  Advanced Materials Technologies,  (7): (2000138).  [10.1002/admt.202000138]
11. Chanjuan Liu, Chao Li, Qingfeng Niu, Chao Cai, Guoyun Li, Guangli Yu.  (2019)  Fabrication of carbohydrate microarrays on poly(2-hydroxyethyl methacrylate)-cyanuric chloride-modified substrates for the analysis of carbohydrate–lectin interactions.  NEW JOURNAL OF CHEMISTRY,  43  (23): (9145-9151).  [10.1039/C9NJ01369E]
12. Mei He, Wang Xuedong, Zeng Tai, Huang Ling, Wang Qun, Ru Daoping, Huang Tongliang, Tian Falin, Wu Huimin, Gao Jimin.  (2019)  A nanocomposite consisting of gold nanobipyramids and multiwalled carbon nanotubes for amperometric nonenzymatic sensing of glucose and hydrogen peroxide.  MICROCHIMICA ACTA,  186  (4): (1-8).  [PMID:30868243] [10.1007/s00604-019-3272-5]
13. Li Mingming, Tang Minghui, Deng Jiang, Wang Yong.  (2016)  Nitrogen-doped flower-like porous carbon materials directed by in situ hydrolysed MgO: Promising support for Ru nanoparticles in catalytic hydrogenations.  Nano Research,  (10): (3129-3140).  [10.1007/s12274-016-1195-6]
14. Yinga Wu, Jia Cai, Jingfen Han, Huricha Baigude.  (2015)  Cell Type-Specific Delivery of RNAi by Ligand-Functionalized Curdlan Nanoparticles: Balancing the Receptor Mediation and the Charge Motivation.  ACS Applied Materials & Interfaces,  (38): (21521–21528).  [PMID:26345600] [10.1021/acsami.5b06792]
15. Changmao Yang, Yue Xiao, Yunjun Yan, Houjin Zhang.  (2024)  A xylenol orange-based pH-sensitive sensor array for identification of bacteria and differentiation of probiotic drinks.  Analytical Methods,  [PMID:39655744] [10.1039/D4AY01982B]
16. Ping Chen, Hui Zhong, Xiao-rong Li, Tingting Zhang, Xiang Wang, Fang Hu, Yubo Yan, Jiaxing Xu, Meisheng Li.  (2024)  Copper-ion-complexed palygorskite as a novel nanozyme with enhanced peroxidase-like activity for sensitive colorimetric sensing.  APPLIED CLAY SCIENCE,  258  (107507).  [10.1016/j.clay.2024.107507]
17. Bo Wang, Wen Cai, Huai Liu, Rui Zhang, Wenlong Jia, Junhua Zhang, Lincai Peng.  (2024)  Efficient Catalytic Hydrogenation of Glucose to Sorbitol over Metallic Nickel-Rich Nickel Borides under Mild Reaction Conditions.  ENERGY & FUELS,  38  (9): (7941-7949).  [10.1021/acs.energyfuels.4c00225]
18. Shuxian Zhang, Xiaoying Wang, Xiaofei Wang, Xiaoxuan Fan, Keshuai Liu, Yuping Sa, Gidion Wilson, Xueqin Ma, Guoning Chen.  (2024)  Establishment and application of a screening method for α-glucosidase inhibitors based on dual sensing and affinity chromatography.  JOURNAL OF CHROMATOGRAPHY A,  1720  (464822).  [PMID:38502989] [10.1016/j.chroma.2024.464822]
19. Xi Hu, Yujun Yang, Yaoyang Pu, Weiwei Zhang, Xiang Mao.  (2024)  Flexible design in controllable synthesis of Ru catalyst toward enzymatic and electrochemical hydrogen peroxide performance.  NEW JOURNAL OF CHEMISTRY,  48  (24): (11079-11089).  [10.1039/D4NJ01331J]
20. Yujie Wang, Lingling Sun, Xiaoli Li, Xianke Sun.  (2024)  Ultrasonic-assistant hydrothermal synthesis of ZnIn2S4/graphene-quantum-dots nanowires and the sono-effect improved catalytic activity.  Journal of Water Process Engineering,  65  (105807).  [10.1016/j.jwpe.2024.105807]

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