(2R)-2-Methylpiperazine dihydrochloride | CAS No. 75336-89-9

Basic Information

(2R)-2-Methylpiperazine dihydrochloride

CAS Number

75336-89-9

Molecular Formula

C5H14Cl2N2

Molecular Weight

173.09 g/mol

Quick Actions

Basic Physical Properties

Physical State

White to Yellow Solid

Melting Point

>300 ºC

SMILES

CC1CNCCN1.Cl.Cl

InChI

InChI=1S/C5H12N2.2ClH/c1-5-4-6-2-3-7-5;;/h5-7H,2-4H2,1H3;2*1H/t5-;;/m1../s1

InChIKey

XMUWOBYBMGVFIU-ZJIMSODOSA-N

LogP

0.41129999999999967

Topological Polar Surface Area

24.06 Ų

Hydrogen Bond Donor/Acceptor

2 / 2

Complexity

54

Classification & Uses

Safety Information

View Safety Information

Hazard Statement

H302;H315;H319;H335

Synonyms & References

English

  • (2R)-2-methylpiperazine,dihydrochloride
  • EN300-214116
  • A915206
  • (2R)-2-methylpiperazine;dihydrochloride
  • (R)-2-Methylpiperazine 2HCL
  • (2R)-2-Methylpiperazine--hydrogen chloride (1/2)
  • DTXSID70493940
  • (R)-2-Methylpiperazinedihydrochloride
  • (R)-2-Methylpiperazine dihydrochloride
  • (2R)-2-methylpiperazine dihydrochloride
  • (R)-2-METHYLPIPERAZINE 2HCL
  • AS-31194
  • SCHEMBL5804908
  • CS-0170840
  • MFCD11053491
  • 75336-89-9
  • AKOS027327551
  • (R)-2-METHYL-PIPERAZINE DIHYDROCHLORIDE
  • Piperazine, 2-methyl-,hydrochloride (1:2), (2R)-
  • (+/-)-2-methylpiperazine bis(hydrochloride)
  • 2-Methyl-piperazin,Dihydrochlorid
  • 2-methyl-piperazine,dihydrochloride
  • A-2322

MDL_Number

MFCD11053491

CAS Number

75336-89-9

Customs_Code

2933599090

Supplier Information

Supplier Name Member Level Authentication Status Main Category MOQ Action
ChinaChina - Beijing Bailingwei Technology Co., Ltd.
ChinaChina - Shanghai Jieshukai Biotechnology Co., Ltd.
ChinaChina - Shanghai Hansi Chemical Co., Ltd.
ChinaChina - Jin Jinle (Hunan) Chemical Co., Ltd.
ChinaChina - Shanghai Yuyeh Biotechnology Co., Ltd.
GermanyGermany - DECKMA HAMBURG GmbH
GermanyGermany - Jüke Systemtechnik GmbH
ChinaChina - Hubei Xilade New Materials Co., Ltd.

Related Articles

Surface structure-dependent electrocatalytic reduction of CO2 to C1 products on SnO2 catalysts

Minling Fang, Zhiping Zheng, Jiayu Chen, Qian Chen, Deyu Liu, Binbin Xu, Jianyang Wu, Qin Kuang

2019-12-02 Paper

DOI: 10.1039/C9SE00678H

Tessellation strategy for the interfacial synthesis of an anthracene-based 2D polymer via [4+4]-photocycloaddition

Renzeng Chen, Danbo Wang, Wenbo Hao, Feng Shao, Yingjie Zhao

2021-05-07 Communication

DOI: 10.1039/D1CC02179F

Non-aqueous neptunium and plutonium redox behaviour in THF – access to a rare Np(iii) synthetic precursor

Nickolas H. Anderson, Suzanne C. Bart, Andrew J. Gaunt, Brian L. Scott

2018-05-08 Communication

DOI: 10.1039/C8CC02611D

Synthesis and optical and electronic properties of one-dimensional sulfoxonium-based hybrid metal halide (CH3)3SOPbI3

Shiqiang Bai, Xizu Wang, Si Yin Tee, Siew Lay Lim, Lin Ke, Surani B. Dolmanan, Coryl Jing Jun Lee, Poh Chong Lim, Xiang Yao, Jishan Wu

2021-05-10 Communication

DOI: 10.1039/D1CC01386F

From Douglas fir to renewable H2-enriched syngas via ex situ catalytic pyrolysis over metal nanoparticles–nanocellulose derived carbon catalysts

Hanwu Lei, Chenxi Wang, Moriko Qian, Elmar Villota, Wendy Mateo

2019-12-30 Communication

DOI: 10.1039/C9SE00860H

Near infrared light activation of an injectable whole-cell cancer vaccine for cancer immunoprophylaxis and immunotherapy

Fei Wang, Junbin Gao, Shuanghu Wang, Jiamiao Jiang, Yicheng Ye, Juanfeng Ou, Shuwen Liu, Fei Peng, Yingfeng Tu

2021-05-05 Communication

DOI: 10.1039/D1BM00542A

Carbon-based photocatalysts for enhanced photocatalytic reduction of CO2 to solar fuels

Mufeedah Muringa Kandy

2019-11-06 Review Article

DOI: 10.1039/C9SE00827F

Novel aqueous amine looping approach for the direct capture, conversion and storage of CO2 to produce magnesium carbonate

Meishen Liu, Hassnain Asgar, Soenke Seifert, Greeshma Gadikota

2019-11-25 Paper

DOI: 10.1039/C9SE00316A

From zinco(ii) arsaketenes to silylene-stabilised zinco arsinidene complexes

Ernesto Ballestero-Martínez, Terrance J. Hadlington, Tibor Szilvási, Shenglai Yao, Matthias Driess

2018-04-16 Communication

DOI: 10.1039/C8CC01928B