计算溶液所需的质量、体积或浓度。
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货号 (SKU) | 包装规格 | 是否现货 | 价格 | 数量 |
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D114220-1.2ml |
1.2ml |
现货 ![]() |
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别名 | 邻,对'-滴滴涕 |
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英文别名 | Ethane, 2-(o-chlorophenyl)-2-(p-chlorophenyl)-1,1,1-trichloro- | 1,1,1-trichloro-2-(2-chlorophenyl)-2-(4-chlorophenyl)ethane | NSC33446 | NSC-33446 | D4K93Z1TBH | 2,4'-DDT D8 | NCGC00091035-01 | NCGC00091035-03 | 2,4'-DDT 100 microg/mL in Cyclohexane | SCHEMBL708196 | 1-Chlo |
规格或纯度 | 分析标准品, 50ug/mL in 2,2,4-Trimethylpentane |
英文名称 | 2,4′-DDT solution |
运输条件 | 常规运输 |
产品介绍 |
主要用于环境监测及相关分析测试中方法评价、质量控制、能力验证和技术仲裁。 |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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活性类型 | Relation | Activity value | Units | Action Type | Journal | PubMed Id | doi | Assay Aladdin ID |
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作用机制 | Action Type | target ID | Target Name | Target Type | Target Organism | Binding Site Name | 参考文献 |
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EC号 | 212-332-5 |
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分子类型 | 小分子 |
IUPAC Name | 1-chloro-2-[2,2,2-trichloro-1-(4-chlorophenyl)ethyl]benzene |
INCHI | InChI=1S/C14H9Cl5/c15-10-7-5-9(6-8-10)13(14(17,18)19)11-3-1-2-4-12(11)16/h1-8,13H |
InChi Key | CVUGPAFCQJIYDT-UHFFFAOYSA-N |
Canonical SMILES | C1=CC=C(C(=C1)C(C2=CC=C(C=C2)Cl)C(Cl)(Cl)Cl)Cl |
Isomeric SMILES | C1=CC=C(C(=C1)C(C2=CC=C(C=C2)Cl)C(Cl)(Cl)Cl)Cl |
WGK Germany | 3 |
RTECS | KH7910000 |
PubChem CID | 13089 |
UN Number | 2811 |
分子量 | 354.49 |
分子量 | 354.500 g/mol |
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XLogP3 | 6.700 |
氢键供体数Hydrogen Bond Donor Count | 0 |
氢键受体数Hydrogen Bond Acceptor Count | 0 |
可旋转键计数Rotatable Bond Count | 2 |
精确质量Exact Mass | 353.912 Da |
单同位素质量Monoisotopic Mass | 351.915 Da |
拓扑极表面积Topological Polar Surface Area | 0.000 Ų |
重原子数Heavy Atom Count | 19 |
形式电荷Formal Charge | 0 |
复杂度Complexity | 280.000 |
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 | 1 |
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 |
象形图 | GHS06, GHS08, GHS09 |
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信号词 | Danger |
危险声明 |
H301: 吞咽会中毒 H351: 怀疑引起遗传缺陷 H400: 对水生生物有剧毒 H410: 对水生生物有剧毒并具有长期持续影响 H372: 通过长时间或反复暴露对器官造成损害 |
预防措施声明 |
P273: 避免释放到环境中。 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...)。 P405: 密闭存放 P501: 将内容物/容器处理到。。。 P264: 处理后要彻底洗手。 P260: 不要吸入灰尘/烟雾/气体/雾/蒸汽/喷雾。 P270: 使用本产品时,请勿进食、饮水或吸烟。 P391: 收集溢出物 P330: 漱口 P203: 使用前,获取、阅读并遵守所有安全说明。 P301+P316: 如果吞咽:立即寻求紧急医疗救助。 P318: 如果暴露或担心,请就医。 P319: 如果你感到不适,请寻求医疗帮助。 |
WGK Germany | 3 |
RTECS | KH7910000 |
个人防护装备 | Eyeshields,Faceshields,full-face particle respirator type N100 (US),Gloves,respirator cartridge type N100 (US),type P1 (EN143) respirator filter,type P3 (EN 143) respirator cartridges |
1. Penghu Duan, Dongpeng Mao, Dayi Zhang, Xinyao Wang, Xiyao Kong, Yunxian Piao. (2023) Polyaniline and polystyrene sulfonic acid modified on conductive biochar nanoparticle with strong signal enhancement for trace atrazine detection. ELECTROCHIMICA ACTA, 468 (3): (143198). [PMID:26638071] [10.1016/j.electacta.2023.143198] |
2. Chaoqiang Pan, Jianmin Qiu, Lumei Wang, Zhiyu Yan, Weiwen Huang, Dongwei Zhang, Xuejia Zhan, Guoqing Shen, Chaoqiang Pan, Jianmin Qiu, Lumei Wang, Zhiyu Yan, Weiwen Huang, Dongwei Zhang, Xuejia Zhan, Guoqing Shen. (2020) Colorimetric Aptasensor for Testosterone Detection Based on Aggregation of Gold Nanoparticles Induced by Cationic Surfactant. AUSTRALIAN JOURNAL OF CHEMISTRY, 74 (4): (261-267). [10.1071/CH20237] |
3. Wei Zhang, Danyang Li, Jianguang Zhang, Lingli Jiang, Zhaofa Li, Jun Sheng Lin. (2020) Preparation and Characterization of Aptamers Against O,p’-DDT. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 21 (6): (2211). [PMID:32210057] [10.3390/ijms21062211] |
4. Yanying Zhou, Jun Zhu, Jing Yang, Youqi Lv, Yuanfeng Zhu, Wentao Bi, Xiaodi Yang, David Da Yong Chen. (2019) Magnetic nanoparticles speed up mechanochemical solid phase extraction with enhanced enrichment capability for organochlorines in plants. ANALYTICA CHIMICA ACTA, 1066 (49). [PMID:31027534] [10.1016/j.aca.2019.03.049] |
5. Xuan Ni, Bing Xia, Lumei Wang, Jing Ye, Gaoshang Du, Haiwei Feng, Xiaotong Zhou, Tong Zhang, Wenhao Wang. (2017) Fluorescent aptasensor for 17β-estradiol determination based on gold nanoparticles quenching the fluorescence of Rhodamine B. ANALYTICAL BIOCHEMISTRY, 523 (17). [PMID:28137603] [10.1016/j.ab.2017.01.021] |
6. Mingxue Wu, Gang Chen, Ping Liu, Weihong Zhou, Qiong Jia. (2015) Preparation of porous aromatic framework/ionic liquid hybrid composite coated solid-phase microextraction fibers and their application in the determination of organochlorine pesticides combined with GC-ECD detection. ANALYST, 141 (1): (243-250). [PMID:26579991] [10.1039/C5AN01372K] |
1. Penghu Duan, Dongpeng Mao, Dayi Zhang, Xinyao Wang, Xiyao Kong, Yunxian Piao. (2023) Polyaniline and polystyrene sulfonic acid modified on conductive biochar nanoparticle with strong signal enhancement for trace atrazine detection. ELECTROCHIMICA ACTA, 468 (3): (143198). [PMID:26638071] [10.1016/j.electacta.2023.143198] |
2. Chaoqiang Pan, Jianmin Qiu, Lumei Wang, Zhiyu Yan, Weiwen Huang, Dongwei Zhang, Xuejia Zhan, Guoqing Shen, Chaoqiang Pan, Jianmin Qiu, Lumei Wang, Zhiyu Yan, Weiwen Huang, Dongwei Zhang, Xuejia Zhan, Guoqing Shen. (2020) Colorimetric Aptasensor for Testosterone Detection Based on Aggregation of Gold Nanoparticles Induced by Cationic Surfactant. AUSTRALIAN JOURNAL OF CHEMISTRY, 74 (4): (261-267). [10.1071/CH20237] |
3. Wei Zhang, Danyang Li, Jianguang Zhang, Lingli Jiang, Zhaofa Li, Jun Sheng Lin. (2020) Preparation and Characterization of Aptamers Against O,p’-DDT. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 21 (6): (2211). [PMID:32210057] [10.3390/ijms21062211] |
4. Yanying Zhou, Jun Zhu, Jing Yang, Youqi Lv, Yuanfeng Zhu, Wentao Bi, Xiaodi Yang, David Da Yong Chen. (2019) Magnetic nanoparticles speed up mechanochemical solid phase extraction with enhanced enrichment capability for organochlorines in plants. ANALYTICA CHIMICA ACTA, 1066 (49). [PMID:31027534] [10.1016/j.aca.2019.03.049] |
5. Xuan Ni, Bing Xia, Lumei Wang, Jing Ye, Gaoshang Du, Haiwei Feng, Xiaotong Zhou, Tong Zhang, Wenhao Wang. (2017) Fluorescent aptasensor for 17β-estradiol determination based on gold nanoparticles quenching the fluorescence of Rhodamine B. ANALYTICAL BIOCHEMISTRY, 523 (17). [PMID:28137603] [10.1016/j.ab.2017.01.021] |
6. Mingxue Wu, Gang Chen, Ping Liu, Weihong Zhou, Qiong Jia. (2015) Preparation of porous aromatic framework/ionic liquid hybrid composite coated solid-phase microextraction fibers and their application in the determination of organochlorine pesticides combined with GC-ECD detection. ANALYST, 141 (1): (243-250). [PMID:26579991] [10.1039/C5AN01372K] |