2,5-二甲酰呋喃

CAS: 823-82-5 货号: D134445 分子式: C6H4O3 分子量: 124.09 Beilstein号: 109424 EC号: 212-520-7
有货
级别和纯度: ≥98%(GC)
别名
2,5-呋喃二甲醛
储存条件
避光,-20°C储存,充氩
运输条件
超低温运输
★
规格
库存
价格
数量
100mg
D134445-100mg
现货 Stock Image
¥59.90
250mg
D134445-250mg
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¥129.90
1g
D134445-1g
现货 Stock Image
¥239.90
5g
D134445-5g
期货 Stock Image
¥699.90
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为什么选择此级别

提供 ≥98%(GC) 纯度,适用于对基线干扰要求严格的色谱和分析工作流程。

🌡

储存与运输

避光,-20°C储存,充氩。超低温运输 。请查阅批次 COA 获取详细规格。

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质量文档

SDS、COA、产品数据表及规格说明书均可下载。可通过批号查询获取批次 COA。

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文献证明

在色谱分析、有机合成和交叉偶联反应领域已被 115 篇同行评审文献引用。

规格

别名
2,5-呋喃二甲醛
英文别名
Q16736622 | SCHEMBL51391 | C20899 | furan-2,5-dicarboxaldehyde | NSC618088 | NSC-618088 | C6H4O3 | DTXSID60231676 | 2,5-Furandicarbaldehyde | 2,5-Furandicarboxaldehyde, radical ion(1-) (9CI) | AM20080614 | D2408 | Furan-2,5-dial | 2,5-Diformylfuran | F
规格或纯度
≥98%(GC)
英文名称
2,5-Diformylfuran
储存条件
避光,-20°C储存,充氩
运输条件
超低温运输
纯度
≥98%(GC)
名称和识别符
PubChem SID
EC号
212-520-7
分子类型
小分子
IUPAC Name
furan-2,5-dicarbaldehyde
INCHI
1S/C6H4O3/c7-3-5-1-2-6(4-8)9-5/h1-4H
InChi Key
PXJJKVNIMAZHCB-UHFFFAOYSA-N
Smiles
C1=C(OC(=C1)C=O)C=O
Isomeric SMILES
C1=C(OC(=C1)C=O)C=O
分子量
124.09
Beilstein号
109424
Reaxy-Rn
109424
Reaxys-RN link address
https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=109424&ln=

技术文档

📋 安全数据表 (SDS)

全面的危险、操作、储存及法规合规文件。

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✅ 分析证书 (COA)

批次质量数据。输入批号以获取对应 COA。

查询 COA →

📊 产品数据表

产品规格和应用的快速参考摘要。

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🔬 规格说明书

该级别的完整质量属性和验收标准。

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高级数据

系统学分类

分类树(Taxonomy Tree)

界(kingdom) 有机化合物
超类(Superclass) 有机氧化合物
类(Class) 有机氧化合物
亚类(Subclass) 羰基化合物
中间层级节点(Intermediate Tree Nodes) 醛类
直接上位类(Direct Parent) 芳基醛
其他上位类(Alternative Parents) 杂芳族化合物  呋喃  氧环化合物  有机氧化物  碳氢化合物衍生物  
分子骨架(Molecular Framework) 芳香族杂单环化合物
取代基(Substituents) 芳香族杂单环化合物 - 芳基-醛 - 呋喃 - 杂芳香族化合物 - 烃衍生物 - 有机氧化物 - 有机杂环化合物 - 氧杂环
描述(Description) 该化合物属于芳基醛类有机化合物。这类化合物具有直接连接于芳香环的醛基。
外部描述符(External Descriptors) furans - arenecarbaldehyde - dialdehyde
三维结构
交互式化学结构模型





化学和物理性质
溶解性
Soluble in Chloroform
敏感性
对热、光、空气敏感
熔点
110 °C
分子量
124.090 g/mol
XLogP3
0.600
氢键供体数Hydrogen Bond Donor Count
0
氢键受体数Hydrogen Bond Acceptor Count
3
可旋转键计数Rotatable Bond Count
2
精确质量Exact Mass
124.016 Da
单同位素质量Monoisotopic Mass
124.016 Da
拓扑极表面积Topological Polar Surface Area
47.300 Ų
重原子数Heavy Atom Count
9
形式电荷Formal Charge
0
复杂度Complexity
107.000
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
0
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
1
安全和危险性(GHS)
象形图
信号词
警告
危险声明

H315: 引起皮肤刺激

H319: 引起严重眼睛刺激

H335: 可能引起呼吸道刺激

预防措施声明

P261: 避免吸入灰尘/烟雾/气体/雾/蒸汽/喷雾

P264: 处理后要彻底洗手。

P271: 仅在室外或通风良好的地方使用。

P280: 戴防护手套/穿防护服/戴防护眼罩/戴防护面具。

P321: 特殊处理(请参阅此标签上的...)。

P302+P352: 如皮肤沾染:用水充分清洗。

P304+P340: 如误吸入:将人转移到空气新鲜处,保持呼吸舒适体位。

P305+P351+P338: 如进入眼睛:用水小心冲洗几分钟。如戴隐形眼镜并可方便地取出,取出隐形眼镜。继续冲洗。

P362+P364: 脱掉沾污的衣服,清洗后方可重新使用。

P405: 密闭存放

P403+P233: 存放在通风良好的地方。保持容器密闭。

P501: 将内容物/容器处理到。。。

P264+P265: 处理后彻底洗手[和…]。不要触摸眼睛。

P337+P317: 如果眼睛刺激持续:寻求医疗帮助。

P332+P317: 如果出现皮肤刺激:请寻求医疗帮助。

P319: 如果你感到不适,请寻求医疗帮助。

WGK Germany
3
质检证书(CoA,COO,BSE/TSE 和分析图谱)
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找到31个结果

批号(Lot Number) 证书类型 货号
L2419049 分析证书 D134445
I2629116 分析证书 D134445
I2629115 分析证书 D134445
I2629114 分析证书 D134445
I2629113 分析证书 D134445
G2614273 分析证书 D134445
G2614270 分析证书 D134445
G2614271 分析证书 D134445
G2614272 分析证书 D134445
L2505424 分析证书 D134445
L2505422 分析证书 D134445
L2505367 分析证书 D134445
L2505366 分析证书 D134445
J2309455 分析证书 D134445
J2309456 分析证书 D134445
J2309509 分析证书 D134445
J2309510 分析证书 D134445
J2309513 分析证书 D134445
F2526339 分析证书 D134445
F2526338 分析证书 D134445
F2526319 分析证书 D134445
F2526340 分析证书 D134445
D2518269 分析证书 D134445
D2518270 分析证书 D134445
E2411282 分析证书 D134445
E2411258 分析证书 D134445
C2411079 分析证书 D134445
C2412065 分析证书 D134445
J2309514 分析证书 D134445
J2309512 分析证书 D134445
J2309511 分析证书 D134445

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技术文档和文章
此产品的引用文献
引用文献
1. Xin Zhao, Ruiqi Fang, Zirong Shen, Fengliang Wang, Yingwei Li.  (2023)  Atomic decoration of Pt on Co nanoparticles for enhanced oxidative esterification performances.  AICHE JOURNAL,  [10.1002/aic.18340]
2. Jia Wu, Ke Wang, Tianqi Yu, Shuaiqin Huang, Zhixiang Zhai, Huan Wen, Shibin Yin.  (2023)  Amorphous-crystalline heterostructure: Efficient catalyst for biomass oxidation coupled with hydrogen evolution.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  [PMID:37976740] [10.1016/j.jcis.2023.11.061]
3. Siyu Ma, Zhihao Wang, Bowen Liu, Xiaolei Wang, Shichao Du, Zichen Song, Xinxin Bian, Manchen Hao, Ju Huang, Zhimin Chen, Zhiyu Ren.  (2023)  Interface-induced enhancement of paired electrolysis in 5-hydroxymethylfurfural-H2O system on symbiotic nickel/molybdenum nitride heterostructure.  CHEMICAL ENGINEERING JOURNAL,  [10.1016/j.cej.2023.146490]
4. Guangping Xia, Guihua Ruan, Yipeng Huang, Haoyun Hu, Shi Yu, Bingmei Lai, Zhenyu Li, Yun Zhang, Ningli Tang.  (2023)  Highly efficient enrichment of eugenol anesthetics in aquatic products using magnetic nanospheres decorated covalent organic framework microflowers.  MICROCHEMICAL JOURNAL,  [10.1016/j.microc.2023.109362]
5. Shilin Fan, Bin Zhu, Yang Zhong, Shaoqi Shi, Jian Zhang, Chunlin Chen.  (2023)  Core-skin Co@NiCo-LDH as an efficient Mott-Schottky electrocatalyst for biomass upgrading coupled with hydrogen evolution.  CHEMICAL ENGINEERING JOURNAL,  [10.1016/j.cej.2023.145905]
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15. Gang Xu, Chenyu Chen, Mengxia Li, Xinyi Ren, Lianggao Hu, Chengrong Wu, Yu Zhuang, Fanan Wang.  (2022)  W exsolution promotes the in situ reconstruction of a NiW electrode with rich active sites for the electrocatalytic oxidation of 5-hydroxymethylfurfural (HMF).  Catalysis Science & Technology,  12  (10): (3363-3371).  [10.1039/D2CY00384H]
16. Yanbin Sun, Jianfeng Zheng, Jiajia Xu, Kaixuan Yang, Zhiguo Zhu, Ting Su, Hui Ge, Wanzhong Ren, Hongying Lü.  (2022)  An Anderson-type polyoxometalate triggers aerobic oxidation of 5-hydroxymethylfurfural to 2,5-diformylfuran.  FUEL,  [10.1016/j.fuel.2022.123226]
17. Gaobo Lin, Wenwen Lin, Jianghua Wu, You Zhan, Francis Okejiri, Mingwei Weng, Jie Fu.  (2021)  Oxidation of 5–methoxymethylfurfural to 2, 5-furandicarboxylic acid over Ru/hydroxyapatite catalyst in water.  CHEMICAL ENGINEERING SCIENCE,  [10.1016/j.ces.2021.117343]
18. Jifang Zhang, Wanbing Gong, Huajie Yin, Dongdong Wang, Yunxia Zhang, Haimin Zhang, Guozhong Wang, Huijun Zhao.  (2021)  In Situ Growth of Ultrathin Ni(OH)2 Nanosheets as Catalyst for Electrocatalytic Oxidation Reactions.  ChemSusChem,  14  (14): (2935-2942).  [PMID:34013575] [10.1002/cssc.202100811]
19. Yan Zhong, Ru-Quan Ren, Lei Qin, Jian-Bo Wang, Yi-Yi Peng, Qiang Li, Yong-Ming Fan.  (2021)  Electrodeposition of hybrid nanosheet-structured NiCo2O4 on carbon fiber paper as a non-noble electrocatalyst for efficient electrooxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid.  NEW JOURNAL OF CHEMISTRY,  45  (25): (11213-11221).  [10.1039/D1NJ01489G]
20. Kang Hu, Man Zhang, Biying Liu, Zhiyu Yang, Ruiqi Li, Kai Yan.  (2021)  Efficient electrochemical oxidation of 5-hydroxymethylfurfural to 2,5-furandicarboxylic acid using the facilely synthesized 3D porous WO3/Ni electrode.  Molecular Catalysis,  [10.1016/j.mcat.2021.111459]
21. Mo Zhang, Zheng Li, Xing Xin, Junhao Zhang, Yeqin Feng, Hongjin Lv.  (2020)  Selective Valorization of 5-Hydroxymethylfurfural to 2,5-Diformylfuran Using Atmospheric O2 and MAPbBr3 Perovskite under Visible Light.  ACS Catalysis,  [10.1021/acscatal.0c04330]
22. Xiaojie Song, Xiaohui Liu, Haifeng Wang, Yong Guo, Yanqin Wang.  (2020)  Improved Performance of Nickel Boride by Phosphorus Doping as an Efficient Electrocatalyst for the Oxidation of 5-Hydroxymethylfurfural to 2,5-Furandicarboxylic Acid.  INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,  [10.1021/acs.iecr.0c01312]
23. Ren Hui-Fang, Luo Xiao, Zhang Ke, Cai Qiang, Liu Chun-Ling, Dong Wen-Sheng.  (2020)  Selective aerobic oxidation of 5-hydroxymethylfurfural to 2,5-dimethylfuran over heteroatom-doped ordered carbon supported Ru catalysts.  JOURNAL OF POROUS MATERIALS,  27  (4): (1003-1012).  [10.1007/s10934-020-00872-6]
24. Yekun Zhu, Yun Zhang, Lili Cheng, Mohammed Ismael, Zhiyuan Feng, Ying Wu.  (2020)  Novel application of g-C3N4/NaNbO3 composite for photocatalytic selective oxidation of biomass-derived HMF to FFCA under visible light irradiation.  ADVANCED POWDER TECHNOLOGY,  [10.1016/j.apt.2019.12.040]
25. Lifang Gao, Zhenbang Liu, Jinling Ma, Lijie Zhong, Zhongqian Song, Jianan Xu, Shiyu Gan, Dongxue Han, Li Niu.  (2019)  NiSe@NiOx core-shell nanowires as a non-precious electrocatalyst for upgrading 5-hydroxymethylfurfural into 2,5-furandicarboxylic acid.  APPLIED CATALYSIS B-ENVIRONMENTAL,  [10.1016/j.apcatb.2019.118235]
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32. Yumei Zhu, Jinlv Wei, Jia Wu, Rong Chen, Panagiotis Tsiakaras, Shibin Yin.  (2024)  Built-in electric field in NiO-CuO heterostructures to regulate the hydroxide adsorption sites for 5-hydroxymethylfurfural electrooxidation assisted hydrogen production.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  [PMID:38878365] [10.1016/j.jcis.2024.05.216]
33. Bin Zhu, Qiuge Wang, Jinggang Wang, Xiao Yu, Jian Zhang, Chunlin Chen.  (2024)  Co@NC Chainmail Nanowires for Thermo- and Electrocatalytic Oxidation of 2,5-Bis(hydroxymethyl)furan to 2,5-Furandicarboxylic Acid.  ChemSusChem,  [PMID:39305162] [10.1002/cssc.202401422]
34. Yang Gao, Shilin Fan, Bin Zhu, Soliman I. El-Hout, Jinghui Lyu, Jian Zhang, Chunlin Chen.  (2024)  Cobalt and nitrogen co-modified graphitic carbon: A bifunctional catalyst for thermocatalytic and electrocatalytic oxidation of HMF to FDCA.  CATALYSIS TODAY,  [10.1016/j.cattod.2024.114847]
35. Yufeng Wu, Zhiyan Hou, Changlong Wang.  (2024)  Construction of an Sc-NiFe-LDH electrocatalyst for highly efficient electrooxidation of 5-hydroxymethylfurfural at industrial current density.  Nanoscale,  [PMID:39698969] [10.1039/D4NR04389H]
36. Yuting Zhang, Junhua Kuang, Jia Yu, Yangyang Dong, Jiaran Li, Tianwei Xue, Jing Wu, Junchi Ma, Jinlong Wan, Shiping Zeng, Yong Sun, Yue-Jiao Zhang, Jin-Chao Dong, Li Peng, Shuliang Yang, Jian-Feng Li.  (2024)  Construction of nickel and sulfur co-doped carbon nanotubes derived from hydrogen-bonded organic frameworks for efficient biomass electrooxidation.  Journal of Materials Chemistry A,  [10.1039/D4TA02469A]
37. Xia Guangping, Hu Haoyun, Huang Yipeng, Ruan Guihua.  (2024)  Controllable synthesis of uniform flower-shaped covalent organic framework microspheres as absorbent for solid-phase extraction of trace 2,4-dichlorophenol.  MICROCHIMICA ACTA,  191  (2): (1-10).  [PMID:38216807] [10.1007/s00604-024-06178-7]
38. Xiaoxiao Wang, Yanmei Yang, Zhiqing Zhou, Yuling Zhong, Miaomiao Qin, Weiqing Wang, Weifeng Li, Bo Tang.  (2024)  Defective h-BNs-Supported Pd Nanoclusters: An Efficient Photocatalyst for Selective Oxidation of 5-Hydroxymethylfurfural.  ACS Applied Materials & Interfaces,  [PMID:39655767] [10.1021/acsami.4c09672]
39. Aizhu Chen, Xuhui Yang, Lijuan Shen, Ying Zheng, Min-Quan Yang.  (2024)  Directional Charge Pumping from Photoactive P-doped CdS to Catalytic Active Ni2P via Funneled Bandgap and Bridged Interface for Greatly Enhanced Photocatalytic H2 Evolution.  Small,  [PMID:38287735] [10.1002/smll.202309805]
40. Meiyun Zhang, Penghua Che, Hong Ma, Xin Liu, Shujing Zhang, Yang Luo, Jie Xu.  (2024)  Dual-metal synergy unlocking ROS-free catalysis for rapid aerobic oxidation of 5-hydroxymethylfurfural at room temperature.  CHINESE JOURNAL OF CATALYSIS,  [10.1016/S1872-2067(24)60151-8]
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