1,5-二氮杂双环[4.3.0]-5-壬烯(DBN)

CAS: 3001-72-7 货号: D111442 分子式: C7H12N2 分子量: 124.18 Beilstein号: 2417 EC号: 221-087-3
有货
级别和纯度: ≥98%
别名
1,5-二叠氮双环[4.3.0]壬-5-烯 | 1,5-二叠氮双环[4.3.0]壬-5-烯 | 1,5-二氮双环[4.3.0]壬-5-烯
储存条件
避光,室温,充氩,干燥
运输条件
常规运输
★
规格
库存
价格
数量
5g
D111442-5g
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¥29.90
10g
D111442-10g
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¥39.90
25g
D111442-25g
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¥59.90
100g
D111442-100g
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¥209.90
500g
D111442-500g
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¥939.90
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为什么选择此级别

提供 ≥98% 纯度,适用于对基线干扰要求严格的色谱和分析工作流程。

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储存与运输

避光,室温,充氩,干燥。常规运输 。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 49 篇同行评审文献引用。

规格

别名
1,5-二叠氮双环[4.3.0]壬-5-烯 | 1,5-二叠氮双环[4.3.0]壬-5-烯 | 1,5-二氮双环[4.3.0]壬-5-烯
英文别名
DBN | A820145 | AKOS005206778 | 1,5-Diazabicyclo(4.3.0)non-5-ene | 2,3,4,6,7,8-hexahydropyrrolo(1,2-a)pyrimidine | C93461 | 1,5-diazabicyclo[4.3.0] -5-nonene | 1,5-Diazabicyclo[4.3.0]non-5-ene, 98% | Thiazolyl Blue Monotetrazolium | EN300-39944 | NBU | 1,
规格或纯度
≥98%
英文名称
1,5-Diazabicyclo[4.3.0]-5-nonene
应用
1,5-二氮杂二环[4.3.0]壬-5-烯(DBN)可以用作: 通过脱氢/脱羧芳构化将四氢-β-咔啉合成为β-咔啉的一种试剂 通过Friedel−Crafts酰化反应进行的吡咯和吲哚的区域选择性C-酰化中的亲核有机催化剂。 三元液相-液相变化系统配方中的超强碱,并与十六烷和己醇一起用于捕获硫化氢气体。 使用超临界二氧化碳作为反应物和溶剂,由2-氨基苄腈制备1H-喹唑啉-2,4-二酮的一种碱。 2-氨基硫酚与CO2通过C-S键形成的环羰基化反应合成苯并噻唑酮的催化剂
储存条件
避光,室温,充氩,干燥
运输条件
常规运输
纯度
≥98%
名称和识别符
PubChem SID
EC号
221-087-3
分子类型
小分子
IUPAC Name
2,3,4,6,7,8-hexahydropyrrolo[1,2-a]pyrimidine
INCHI
1S/C7H12N2/c1-3-7-8-4-2-6-9(7)5-1/h1-6H2
InChi Key
SGUVLZREKBPKCE-UHFFFAOYSA-N
Smiles
C1CC2=NCCCN2C1
Isomeric SMILES
C1CC2=NCCCN2C1
分子量
124.18
Beilstein号
2417
Reaxy-Rn
2417
Reaxys-RN link address
https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=2417&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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高级数据

系统学分类

分类树(Taxonomy Tree)

界(kingdom) 有机化合物
超类(Superclass) 有机杂环化合物
类(Class) 吡咯并嘧啶
亚类(Subclass) 暂无
中间层级节点(Intermediate Tree Nodes) 暂无
直接上位类(Direct Parent) 吡咯并嘧啶
其他上位类(Alternative Parents) N-烷基吡咯烷  咪唑内酰胺类  氢化嘧啶  炔丙基型1,3-偶极有机化合物  甲脒类  甲脒类  氮杂环化合物  有机光子化合物  碳氢化合物衍生物  
分子骨架(Molecular Framework) 脂肪族杂多环化合物
取代基(Substituents) 1,4,5,6-四氢嘧啶 - 脂肪族杂多环化合物 - 氨基脒 - 氮杂环 - 羧酰亚胺 - 羧酰胺基 - 烃衍生物 - 羟吡啶 - 咪唑内酰胺 - N-烷基吡咯烷 - 有机1,3-双极性化合物 - 有机硝基化合物 - 有机氮化合物 - 有机氮化合物 - 丙炔型1,3-双极性有机化合物 - 吡咯烷 - 吡咯吡啶
描述(Description) 该化合物属于吡咯嘧啶类有机化合物。这类化合物含有吡咯嘧啶结构单元,即吡咯环与嘧啶环共轭连接。吡咯为五元环,由四个碳原子和一个氮原子构成;嘧啶为六元环,由四个碳原子及位于1位和3位的两个氮原子中心构成。
外部描述符(External Descriptors) 暂无
三维结构
交互式化学结构模型





化学和物理性质
溶解性
可溶于乙醚,甲醇,丙酮,水
密度
1.04
敏感性
对空气和湿度和光线敏感
折光率
1.52
闪点(℉)
201.2 °F
闪点(℃)
98°C
沸点
108°C/15mmHg
分子量
124.180 g/mol
XLogP3
-0.200
氢键供体数Hydrogen Bond Donor Count
0
氢键受体数Hydrogen Bond Acceptor Count
1
可旋转键计数Rotatable Bond Count
0
精确质量Exact Mass
124.1 Da
单同位素质量Monoisotopic Mass
124.1 Da
拓扑极表面积Topological Polar Surface Area
15.600 Ų
重原子数Heavy Atom Count
9
形式电荷Formal Charge
0
复杂度Complexity
140.000
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
危险
危险声明

H314: 造成严重的皮肤灼伤和眼睛损伤

预防措施声明

P264: 处理后要彻底洗手。

P280: 戴防护手套/穿防护服/戴防护眼罩/戴防护面具。

P310: 立即致电解毒中心或医生。

P301+P330+P331: 如误吞咽:漱口。不要诱导呕吐。

P303+P361+P353: 如皮肤(或头发)沾染:立即脱掉所有沾染的衣服。用水清洗皮肤/淋浴。

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。

P405: 密闭存放

P501: 将内容物/容器处理到。。。

WGK Germany
3
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Faceshields,full-face respirator (US),Gloves,Goggles,multi-purpose combination respirator cartridge (US),type ABEK (EN14387) respirator filter
质检证书(CoA,COO,BSE/TSE 和分析图谱)
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找到27个结果

批号(Lot Number) 证书类型 货号
B2328383 分析证书 D111442
B2328542 分析证书 D111442
B2328544 分析证书 D111442
B2328551 分析证书 D111442
C2631275 分析证书 D111442
C2631274 分析证书 D111442
C2631272 分析证书 D111442
C2631270 分析证书 D111442
I2209272 分析证书 D111442
I2209273 分析证书 D111442
C2422181 分析证书 D111442
H2307655 分析证书 D111442
H2307657 分析证书 D111442
H2307701 分析证书 D111442
B2328541 分析证书 D111442
B2328540 分析证书 D111442
B2328539 分析证书 D111442
I2209274 分析证书 D111442
D2503019 分析证书 D111442
E2523057 分析证书 D111442
A2206104 分析证书 D111442
A2206109 分析证书 D111442
D1809073 分析证书 D111442
H2307665 分析证书 D111442
L1518009 分析证书 D111442
I2209275 分析证书 D111442
K1411010 分析证书 D111442

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技术文档和文章
此产品的引用文献
引用文献
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3. Junmeng Zhao, Wenjiao Ge, Jianbo Shuai, Xiangli Gao, Fengshan Zhang, Xiaohui Wang.  (2023)  Efficient Cellulose Dissolution and Film Formation Enabled by Superbase Amino Acid Ionic Liquids.  MACROMOLECULAR RAPID COMMUNICATIONS,  44  (17): (2300175).  [PMID:37222244] [10.1002/marc.202300175]
4. Yuehan Qian, Fuhao Dong, Lizhen Guo, Shanling Lu, Xu Xu, He Liu.  (2023)  Self-Healing and Reprocessable Terpene Polysiloxane-Based Poly(thiourethane-urethane) Material with Reversible Thiourethane Bonds.  BIOMACROMOLECULES,  [PMID:36808988] [10.1021/acs.biomac.2c01230]
5. Jiqing Dong, Ran Ping, Xun Dai, Dongchao Wang, Fusheng Liu, Shanshan Du, Mengshuai Liu.  (2022)  Pyrrolidine-2,5-dione-derived ionic liquids promoted efficient transformation of flue gas CO2 into α-alkylidene cyclic carbonates at room temperature.  Journal of CO2 Utilization,  [10.1016/j.jcou.2022.102227]
6. Jinhui Chen, Qinqin Xu, Feng He, Wang Yue, Gang Hu, Jianyun Gan, Haibo Xie.  (2022)  Pretreatment of Corn Stover by Levulinic Acid-Based Protic Ionic Liquids for Enhanced Enzymatic Hydrolysis.  ACS Sustainable Chemistry & Engineering,  [10.1021/acssuschemeng.2c01339]
7. Yanyan Xie, Hongshuai Gao, Puyu Zhang, Congwen Qin, Yi Nie, Xue Liu.  (2022)  Preparation of Degradable Wood Cellulose Films Using Ionic Liquids.  ACS Applied Polymer Materials,  [10.1021/acsapm.2c00167]
8. Ruixia Liu, Tingting Ding, Pingping Deng, Xiaofan Yan, Fuquan Xiong, Jienan Chen, Zhiping Wu.  (2021)  Preparation of LCST regulable DES-lignin-g-PNVCL thermo-responsive polymer by ARGET-ATRP.  INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES,  [PMID:34800520] [10.1016/j.ijbiomac.2021.11.077]
9. Yuqing Shen, Chaoping Yuan, Xianyi Zhu, Qin Chen, Shenjun Lu, Haibo Xie.  (2021)  Engineering cellulose into water soluble poly(protic ionic liquid) electrolytes in the DBU/CO2/DMSO solvent system as an organocatalyst for the Knoevenagel condensation reaction.  GREEN CHEMISTRY,  23  (24): (9922-9934).  [10.1039/D1GC03148A]
10. Huan Wei, Ping-An Chen, Jing Guo, Yu Liu, Xincan Qiu, Huajie Chen, Zebing Zeng, Thuc-Quyen Nguyen, Yuanyuan Hu.  (2021)  Low-Cost Nucleophilic Organic Bases as n-Dopants for Organic Field-Effect Transistors and Thermoelectric Devices.  ADVANCED FUNCTIONAL MATERIALS,  31  (30): (2102768).  [10.1002/adfm.202102768]
11. Ran Ping, Penghui Zhao, Qianqian Zhang, Guangyu Zhang, Fusheng Liu, Mengshuai Liu.  (2021)  Catalytic Conversion of CO2 from Simulated Flue Gases with Aminophenol-Based Protic Ionic Liquids to Produce Quinazoline-2,4(1H,3H)-diones under Mild Conditions.  ACS Sustainable Chemistry & Engineering,  [10.1021/acssuschemeng.1c01466]
12. Wenjie Xiong, Mingzhen Shi, Lingling Peng, Xiaomin Zhang, Xingbang Hu, Youting Wu.  (2021)  Low viscosity superbase protic ionic liquids for the highly efficient simultaneous removal of H2S and CO2 from CH4.  SEPARATION AND PURIFICATION TECHNOLOGY,  [10.1016/j.seppur.2021.118417]
13. Xiaomin Zhang, Wenjie Xiong, Lingling Peng, Youting Wu, Xingbang Hu.  (2020)  Highly selective absorption separation of H2S and CO2 from CH4 by novel azole-based protic ionic liquids.  AICHE JOURNAL,  66  (6): (e16936).  [10.1002/aic.16936]
14. Fusheng Liu, Ran Ping, Yongqiang Gu, Penghui Zhao, Bin Liu, Jun Gao, Mengshuai Liu.  (2020)  Efficient One Pot Capture and Conversion of CO2 into Quinazoline-2,4(1H,3H)-diones Using Triazolium-Based Ionic Liquids.  ACS Sustainable Chemistry & Engineering,  [10.1021/acssuschemeng.9b07242]
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17. Qiang Jia, Yue Ma, Yinxian Peng, Yanhong Liu, Wenli Zhang.  (2018)  Selective recognition and separation of luteolin based on the molecular imprinted hollow SnO2 and boronate affinity.  CHEMICAL ENGINEERING JOURNAL,  [10.1016/j.cej.2018.02.103]
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19. Yingjie Xu.  (2017)  CO2 absorption behavior of azole-based protic ionic liquids: Influence of the alkalinity and physicochemical properties.  Journal of CO2 Utilization,  [10.1016/j.jcou.2017.03.001]
20. Jian Lin, Dan-Dan Hu, Qian Zhang, Dong-Sheng Li, Tao Wu, Xianhui Bu, Pingyun Feng.  (2016)  Improving Photoluminescence Emission Efficiency of Nanocluster-Based Materials by in Situ Doping Synthetic Strategy.  Journal of Physical Chemistry C,  [10.1021/acs.jpcc.6b09126]
21. Feng Wang, Jian Lin, Tingbi Zhao, Dandan Hu, Tao Wu, Yang Liu.  (2016)  Intrinsic “Vacancy Point Defect” Induced Electrochemiluminescence from Coreless Supertetrahedral Chalcogenide Nanocluster.  Journal of the American Chemical Society,  [PMID:27228563] [10.1021/jacs.6b03662]
22. Jian Lin, Le Wang, Qian Zhang, Fei Bu, Tao Wu, Xianhui Bu, Pingyun Feng.  (2016)  Highly effective nanosegregation of dual dopants in a micron-sized nanocluster-based semiconductor molecular single crystal for targeting white-light emission.  Journal of Materials Chemistry C,  4  (8): (1645-1650).  [10.1039/C5TC04191K]
23. Jian Lin, Qian Zhang, Le Wang, Xiaochun Liu, Wenbo Yan, Tao Wu, Xianhui Bu, Pingyun Feng.  (2014)  Atomically Precise Doping of Monomanganese Ion into Coreless Supertetrahedral Chalcogenide Nanocluster Inducing Unusual Red Shift in Mn2+ Emission.  Journal of the American Chemical Society,  [PMID:24625310] [10.1021/ja501288x]
24. Jiabao Li, Dongxia Yan, Xiujie Cheng, Chunrui Rong, Jian Feng, Xin Feng, Jiayu Xin, Qing Zhou, Yi Li, Junli Xu, Xingmei Lu.  (2024)  Efficient Methanolysis of PET Catalyzed by Nonmetallic Deep Eutectic Solvents.  INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,  [10.1021/acs.iecr.4c00720]
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26. Wentao Zheng, Qihao Pu, Shiping Wang, Xinyue Hu, Xiankun Wu.  (2024)  Highly efficient nitric oxide absorption by low viscosity superbase/amide deep eutectic solvents through mutual promotion effect.  JOURNAL OF MOLECULAR LIQUIDS,  [10.1016/j.molliq.2024.124839]
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38. Yu Chen, Zhuojia Shi, Zhenghui Liu, Yaxue Shen, Yanlong Wang, Minghui Feng, Qi Liu, Zheng Li.  (2025)  Room-temperature, time-efficient and sustainable recycling of solid electrolytes from all-solid-state lithium-ion batteries.  SEPARATION AND PURIFICATION TECHNOLOGY,  [10.1016/j.seppur.2025.134867]
39. Qingqing Tao, Xinbo Wang, Ruoxin Du, Chi Man Leong, Matthew Y. Lui.  (2025)  Sustainable Extraction and Characterization of Chitin and Chitosan from Insect Frass.  ACS Sustainable Chemistry & Engineering,  [10.1021/acssuschemeng.5c03650]
40. Qi Tan, Zhiwei Liu, Yao Zhang, Yongle Xia, Xiaoyi Zhang, Bingliang Gao.  (2025)  Superbase-alcohol vitreous mixture solvents containing additives for efficient and reversible CO2 capture.  Journal of Environmental Chemical Engineering,  [10.1016/j.jece.2025.119114]
41. Yu Chen, Xueqing Zhang, Chenyang Wang, Zhuojia Shi, Xihou Wang, Jiayi Dong, Yanlong Wang, Minghui Feng.  (2025)  Green recovery of solid electrolytes from all-solid-state lithium-ion batteries by low-melting mixture solvents with tunable physical properties.  PHYSICAL CHEMISTRY CHEMICAL PHYSICS,  [PMID:40423090] [10.1039/D4CP04684F]
42. Chunrui Rong, Dongxia Yan, Jiabao Li, Jian Feng, Jiayu Xin, Qing Zhou, Yi Li, Junli Xu, Xingmei Lu.  (2025)  An effective strategy for degrading waste PET plastic into regenerated DMT with nearly equivalent methanol at relatively low temperature.  CHEMICAL ENGINEERING SCIENCE,  [10.1016/j.ces.2025.121859]
43. Yu Chen, Zhuojia Shi, Yuqing Zhang, Yaxue Shen, Zheng Li, Yanlong Wang, Minghui Feng, Qi Liu, Xiaojie Zhao.  (2025)  Screening 100 Low-Melting Mixture Solvents for Scale-Up and Tunable Recovery of Solid Electrolytes from All-Solid-State Lithium-Ion Batteries by Tailoring Acidity.  INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH,  [10.1021/acs.iecr.4c04971]
44. Huiyao Yang, Bingxi Song, Peihong Zhang, Qijie Zhu, Fu Ding, Yao-Feng Wang, Guliang Liu, Yanyan Diao, Hongyan Wang.  (2025)  Catalytic selectivity in hexafluoropropylene trimerization using tailored nucleophilic ionic liquids.  NEW JOURNAL OF CHEMISTRY,  [10.1039/D5NJ00490J]
45. Yunhui Xia, Chengmei Huang, Jingsheng Wang, Guohui Cai, Mengjia Zhang, Jianghui Lin, Ling Li.  (2025)  Synergistic Effects of Poly(ionic liquids)@MOF-808 Nanocomposites for Direct Conversion of Carbon Dioxide into Dimethyl Carbonate.  LANGMUIR,  [PMID:41267218] [10.1021/acs.langmuir.5c04812]
46. Guitao Du, Wang Zhao, Jianbo Shuai, Zepeng Lei, Xiaohui Wang.  (2026)  Solvent-directed regeneration of nanocellulose with tunable morphology and interfacial properties.  CARBOHYDRATE POLYMERS,  [10.1016/j.carbpol.2026.124895]
47. Yue Lv, Wenqiang Jia, Hongda Cai, Leiying Ma, Yating Zhang, Mingdi Chen, Chaofan Sun, Xiuhua Zhao.  (2026)  Study on the dissolution and recovery mechanism of bacterial cellulose by green ionic liquid designed based on COSMO-RS.  FOOD CHEMISTRY,  [PMID:41619662] [10.1016/j.foodchem.2026.148195]
48. Guitao Du, Xiaoqian Zhang, Jie Zou, Hao Hu, Yuqing Sun, Zepeng Lei, Xiaohui Wang.  (2026)  All biomass-based superhydrophobic aqueous coatings enabled by lignin-containing nanocellulose.  Food Packaging and Shelf Life,  [10.1016/j.fpsl.2026.101718]
49. Wentao Zheng, Jialing Chen, Xinwen Zhang, Lu Xu, Qian Gu, Xianku Wu, Xuehua Zhang.  (2026)  Dual reaction pathways toward CO2 capture enabled by 1,5-diazabicyclo[4.3.0]non-5-ene in ternary deep eutectic solvents: Mechanistic insights and performance advantages.  JOURNAL OF CHEMICAL THERMODYNAMICS,  [10.1016/j.jct.2026.107649]
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常见问题

本产品的纯度是多少?
本产品的化学纯度(含量)为 ≥98%。批次的具体数值以分析证书(COA)为准。
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本产品按常温标准条件运输,无需温控包装。
本产品的 CAS 号、分子式和分子量是多少?
本产品的 CAS 号为 3001-72-7,分子式为 C7H12N2,分子量为 124.18 g/mol。InChIKey SGUVLZREKBPKCE-UHFFFAOYSA-N。
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