4-Aminobiphenyl | CAS:92-67-1
4-Aminobiphenyl
- 名称:4-氨基联苯; 对氨基联苯 | 4-Aminobiphenyl
- CAS号:92-67-1
- 别名:1,1'-Biphenyl-4-amine; 4-Biphenylylamine; 4-Phenylaniline
- 分子式:C12H11N
- 分子量:169.22
- EINESC号:202-177-1
产品描述
物理化学性质
熔点 | 52-54 ºC |
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沸点 | 191 ºC (15 mmHg) |
闪点 | 113 ºC |
安全数据
危险品标志 | T |
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危险类别码 | R45;R22 |
安全说明书 | S53;S45 |
SDS
来源 | SDS样本 |
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没有数据 | 没有数据 |
产品合成路线
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文章
同行评议文献
Total degradation of various chlorobiphenyls by cocultures and in vivo constructed hybrid pseudomonads.J Havel et al.FEMS microbiology letters, 62(2-3), 163-169 (1991-03-01)
Degradation and mineralization of 2-chloro-, 3-chloro- and 4-chlorobiphenyl by a newly characterized natural bacterial strain isolated from an electrical transformer fluid-contaminated soil.Matthew O Ilori et al.Journal of environmental sciences (China), 20(10), 1250-1257 (2009-01-16)
Construction of a 3-chlorobiphenyl-utilizing recombinant from an intergeneric mating.R H Adams et al.Applied and environmental microbiology, 58(2), 647-654 (1992-02-01)
Role of commensal relationships on the spatial structure of a surface-attached microbial consortium.A T Nielsen et al.Environmental microbiology, 2(1), 59-68 (2001-03-13)
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Degradation of 3-chlorobiphenyl by in vivo constructed hybrid pseudomonads.H Mokross et al.FEMS microbiology letters, 59(1-2), 179-185 (1990-09-01)
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Influence of chlorobenzoates on the utilisation of chlorobiphenyls and chlorobenzoate mixtures by chlorobiphenyl/chlorobenzoate-mineralising hybrid bacterial strains.J Stratford et al.Archives of microbiology, 165(3), 213-218 (1996-03-01)
Substituents modulate biphenyl penetration into lipid membranes.A Rashid et al.Biochimica et biophysica acta, 1859(5), 712-721 (2017-01-29)
Involvement of a chlorobenzoate-catabolic transposon, Tn5271, in community adaptation to chlorobiphenyl, chloroaniline, and 2,4-dichlorophenoxyacetic acid in a freshwater ecosystem.R R Fulthorpe et al.Applied and environmental microbiology, 58(1), 314-325 (1992-01-01)
Effects of quartz addition on the mechanochemical dechlorination of chlorobiphenyl by using CaO.Q Zhang et al.Environmental science & technology, 35(24), 4933-4935 (2002-01-05)
Degradation and mineralization of 3-chlorobiphenyl by a mixed aerobic bacterial culture.F Fava et al.Applied microbiology and biotechnology, 36(2), 240-245 (1991-11-01)
Alginate beads as a storage, delivery and containment system for genetically modified PCB degrader and PCB biosensor derivatives of Pseudomonas fluorescens F113.B Power et al.Journal of applied microbiology, 110(5), 1351-1358 (2011-03-15)
Insight into pollutant bioavailability and toxicity using Raman confocal microscopy.Andrew C Singer et al.Journal of microbiological methods, 60(3), 417-422 (2005-01-15)
RP4::Mu3A-mediated in vivo cloning and transfer of a chlorobiphenyl catabolic pathway.D Springael et al.Microbiology (Reading, England), 142 ( Pt 11), 3283-3293 (1996-11-01)
Effects of 3-chlorobiphenyl on photosynthetic oxygen production, glutathione content and detoxication enzymes in the aquatic macrophyte Ceratophyllum demersum.Mirta L Menone et al.Chemosphere, 60(1), 79-84 (2005-05-25)
Pathways and products of the degradation of PCBs by the sodium dispersion method.Yukio Noma et al.Chemosphere, 68(5), 871-879 (2007-03-21)
Dependence of mechanochemically induced decomposition of mono-chlorobiphenyl on the occurrence of radicals.Yasumitsu Tanaka et al.Chemosphere, 60(7), 939-943 (2005-07-05)
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Products currently covered by valid US Patents are offered for R&D use in accordance with 35 USC 271 +A13(1).
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