Product Description: 1-(2-Aminoethyl)pyrrolidine is a heterocyclic building block. Nickel(II) salts of 1-(2-aminoethyl)pyrrolidine have been synthesized and thermal studies have been reported. The isomeric complexes trans-[NiL2(NCS)2] (violet) and cis-[NiL2(NCS)2] (blue) [L=1-(2-aminoethyl)pyrrolidine] have been synthesized and their X-ray crystal structure have been studied. Product Application: 1-(2-Aminoethyl)pyrrolidine may be used in the preparation of one-dimensional coordination polymer of nickel(II), [(μN,S-NCS)2{Ni(ampy)}]n (ampy=1-(2-aminoethyl)pyrrolidine).
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2-pyrrolidin-1-ylethanamine
Dangerous GoodsCAS number:7154-73-6 molecular formula:C6H14N2
overview
compound introduction
Specs
| Chinese alias | N-(2-氨基乙基)吡咯烷 | ||
| English alias | EINECS 230-509-5 | W-203609 | AKOS000121031 | N-(2-(PYRROLIDIN-1-YL)ETHYL)AMINE | DTXSID1064580 | EC-000.1337 | 076KT5HU06 | (2-pyrrolidin-1-ylethyl)amine | 1-pyrrolidine ethanamine | 1-Pyrrolidineethanamine | AC1468 | 2-(1-Pyrrolidinyl)ethylamine | 2-pyr | ||
| CAS number | 7154-73-6 | molecular formula | C6H14N2 |
| molecular weight | 114.19 | Exact mass | ≥98% |
| PSA | 29.3 | logp | 0.1 |
numbering system
| CAS | 7154-73-6 |
| UNII | 076KT5HU06 |
| Wikidata | Q72436947 |
| NSC Number | NSC Number: NSC73740 |
| PubChem CID | 1344 |
| Nikkaji Number | J149.725A |
| DSSTox Substance ID | DTXSID1064580 |
| European Community (EC) Number | 230-509-5 |
| PubChem Reference Collection SID | 500720630 |
physicochemical properties
| XLogP3 | 0.1 |
| 复杂性 | 57.5 |
| Exact Mass | 114.115698455 |
| 形式电荷 | 0 |
| 解离常数 | iupacpka |
| 重原子计数 | 8 |
| Molecular Weight | 114.19 |
| Monoisotopic Mass | 114.115698455 |
| 可旋转键计数 | 2 |
| 氢键供体计数 | 1 |
| 氢键受体计数 | 2 |
| 共价键单元计数 | 1 |
| 同位素原子计数 | 0 |
| 拓扑极性表面积 | 29.3 Ų |
| 定义键立体中心计数 | 0 |
| 定义原子立体中心计数 | 0 |
| 未定义键立体中心计数 | 0 |
| 未定义原子手性中心计数 | 0 |
Safety information
生态毒性值:
USDA APHIS 化学效应:collection=usda_chemeffect&query_type=synonym&query='^7154-73-6$'
危害类别和分类:
皮肤腐蚀 1C (100%)
Production methods and uses
purpose
工业应用参考:
工业分类参考:食品制造业。
应用场景参考:适用于实验室研发、教学科研和技术验证场景,常用于新产品开发、方法建立和样品评估 。
作用参考:在科研材料体系中具备较强的组合应用潜力,价值往往取决于具体配方、纯度等级和工艺设计 。
选型提示:实际选型应结合产品定位、纯度要求、设备精细化程度和现场环境综合判断,不宜仅凭单一指标决定 。
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MSDS
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