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| 货号 (SKU) | 包装规格 | 是否现货 | 价格 | 数量 |
|---|---|---|---|---|
| A101816-1g |
1g |
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| A101816-5g |
5g |
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| A101816-25g |
25g |
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| A101816-100g |
100g |
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| A101816-500g |
500g |
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| 别名 | 二(邻氨基)苯基二硫 | 双(2-氨基苯基)二硫 | 2,2'-二氨基二苯基二硫 | 2,2'-二硫代二苯胺 |
|---|---|
| 英文别名 | 2,2'-Diaminodiphenyldisulfide | bis-(2-aminophenyl)disulfide | Bis(2-aminophenyl)disulfide | Bis(o-aminophenyl) disulfide | cid_14358 | NSC 677450 | AMY22526 | 2-[(2-Aminophenyl)disulfanyl]phenylamine | Di(2-aminophenyl) Disulfide | D72491 | Disulfide, bi |
| 规格或纯度 | ≥98% |
| 英文名称 | 2-Aminophenyl disulfide |
| 运输条件 | 常规运输 |
| 产品介绍 |
2,2'-Diaminodiphenyl disulfide, is used as an important raw material and intermediate used in organic Synthesis, pharmaceuticals, agrochemicals and dyestuff. It is also used as a primary and secondary intermediate. |
| 纯度 | ≥98% |
| 活性类型 | Relation | Activity value | Units | Action Type | 期刊 | PubMed Id | doi | Assay Aladdin ID |
|---|
| 作用机制 | Action Type | target ID | Target Name | Target Type | Target Organism | Binding Site Name | 参考文献 |
|---|
| PubChem SID | 488181987 |
|---|---|
| EC号 | 214-529-1 |
| 分子类型 | 小分子 |
| IIUPAC Name | 2-[(2-aminophenyl)disulfanyl]aniline |
| INCHI | 1S/C12H12N2S2/c13-9-5-1-3-7-11(9)15-16-12-8-4-2-6-10(12)14/h1-8H,13-14H2 |
| InChi Key | YYYOQURZQWIILK-UHFFFAOYSA-N |
| Smiles | C1=CC=C(C(=C1)N)SSC2=CC=CC=C2N |
| Isomeric SMILES | C1=CC=C(C(=C1)N)SSC2=CC=CC=C2N |
| 分子量 | 248.37 |
| Beilstein号 | 914032 |
| Reaxy-Rn | 914032 |
| Reaxys-RN link address | https://www.reaxys.com/reaxys/secured/hopinto.do?context=S&query=IDE.XRN=914032&ln= |
| 溶解性 | Insoluble in water, soluble in methanol, ethanol |
|---|---|
| 密度 | 1.1039 |
| 熔点 | 91-92°C |
| 分子量 | 248.400 g/mol |
| XLogP3 | 3.100 |
| 氢键供体数Hydrogen Bond Donor Count | 2 |
| 氢键受体数Hydrogen Bond Acceptor Count | 4 |
| 可旋转键计数Rotatable Bond Count | 3 |
| 精确质量Exact Mass | 248.044 Da |
| 单同位素质量Monoisotopic Mass | 248.044 Da |
| 拓扑极表面积Topological Polar Surface Area | 103.000 Ų |
| 重原子数Heavy Atom Count | 16 |
| 形式电荷Formal Charge | 0 |
| 复杂度Complexity | 191.000 |
| 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 |
| 象形图 | GHS05, GHS06, GHS07, GHS09 |
|---|---|
| 信号词 | 危险 |
| 危险声明 |
H301: 吞咽会中毒 H302: 吞食有害 H315: 引起皮肤刺激 H317: 可能引起皮肤过敏反应 H318: 造成严重的眼睛损伤 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 H411: 对水生生物有毒并具有长期持续影响 |
| 预防措施声明 |
P261: 避免吸入灰尘/烟雾/气体/雾/蒸汽/喷雾 P264: 处理后要彻底洗手。 P270: 使用本产品时,请勿进食、饮水或吸烟。 P272: 被污染的工作服不允许离开工作场所 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...)。 P330: 漱口 P391: 收集溢出物 P302+P352: 如皮肤沾染:用水充分清洗。 P333+P313: 如发生皮肤刺激或皮疹:求医/就诊。 P362+P364: 脱掉沾污的衣服,清洗后方可重新使用。 P405: 密闭存放 P501: 将内容物/容器处理到。。。 P264+P265: 处理后彻底洗手[和…]。不要触摸眼睛。 P301+P316: 如果吞咽:立即寻求紧急医疗救助。 P301+P317: 如果被吞咽:请寻求医疗帮助。 P305+P354+P338: 如果进入眼睛:立即用水冲洗几分钟。取下隐形眼镜(如果有的话),并且操作简单。继续冲洗。 P317: 寻求紧急医疗救助。 P332+P317: 如果出现皮肤刺激:请寻求医疗帮助。 |
| WGK Germany | 2 |
| RTECS | BX9540000 |
| 个人防护装备 | dust mask type N95 (US),Eyeshields,Gloves |
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| 批号(Lot Number) | 证书类型 | 货号 |
|---|---|---|
| 分析证书 | A101816 | |
| 分析证书 | A101816 | |
| 分析证书 | A101816 | |
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| 分析证书 | A101816 | |
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| 分析证书 | A101816 | |
| 分析证书 | A101816 | |
| 分析证书 | A101816 | |
| 分析证书 | A101816 | |
| 分析证书 | A101816 | |
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| 分析证书 | A101816 | |
| 分析证书 | A101816 | |
| 分析证书 | A101816 |
| 1. T Benjamin, R P Evarts, T V Reddy, E K Weisburger,. (1981-01-01) Effect of 2,2'-diaminodiphenyldisulfide, a resin hardener, on rats.. Journal of toxicology and environmental health, 7 ((1)): ( 69-81 ). [PMID:7265299] |
| 2. Haibin Niu, Jiaqi Li, Xin Song, Kaiyang Zhao, Li Liu, Chao Zhou, Guangfeng Wu. (2024) Multifunctional aqueous polyurethanes with high strength and self-healing efficiency based on silver nanowires for flexible strain sensors. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 26 (3): (2175-2189). [PMID:38164717] [10.1039/D3CP04319C] |
| 3. Tao Cheng, Wangwei Lian, Weizhen Zhang, Jie Wang, Chenchen Wu, Bo Lu, Kunlun Tan, Binbin Dong, Chuntai Liu, Changyu Shen. (2023) Room-Temperature Self-Repairable Yet Mechanically Robust Elastomeric Triboelectric Nanogenerators Enabled by a Fast-Reversible Dual-Dynamic Network. ACS Sustainable Chemistry & Engineering, 11 (39): (14376–14390). [10.1021/acssuschemeng.3c02399] |
| 4. Wangjian Cheng, Dongjie Liao, Chenhe Feng, Fubing Gao, Minjie Li, Xiawei Zhang, Lingyu Deng, Chuanhao Xu, Baoyun Ye, Chongwei An. (2023) Development of robust and rapid self-healing polymers for the repair of microcracks in energetic composite materials. EUROPEAN POLYMER JOURNAL, 197 (112375). [10.1016/j.eurpolymj.2023.112375] |
| 5. Geonwoo Kim, Cigdem Caglayan, Gun Jin Yun. (2022) Epoxy-Based Catalyst-Free Self-Healing Elastomers at Room Temperature Employing Aromatic Disulfide and Hydrogen Bonds. ACS Omega, 7 (49): (44750–44761). [PMID:36530289] [10.1021/acsomega.2c04559] |
| 6. Yujia Hao, Guangming Zhu, Ben Li, Tianning Ren. (2022) A high-performance self-healing polyurea material based on exchangeable aromatic disulfide. JOURNAL OF APPLIED POLYMER SCIENCE, 139 (41): (e52992). [10.1002/app.52992] |
| 7. Yuanhao Ma, Rui Qin, Min Xu, Xiaolin Jiang, Yeming Sheng, Minhui Wang, Wencong Zhang, Xun Lu. (2021) Wide temperature range damping polyurethane elastomer based on dynamic disulfide bonds. JOURNAL OF APPLIED POLYMER SCIENCE, 139 (2): (51453). [10.1002/app.51453] |
| 8. Yahao Liu, Jian Zheng, Xiao Zhang, Yongqiang Du, Guibo Yu, Ke Li, Yunfei Jia, Yu Zhang. (2021) Bioinspired modified graphene oxide/polyurethane composites with rapid self-healing performance and excellent mechanical properties. RSC Advances, 11 (24): (14665-14677). [PMID:35423966] [10.1039/D1RA00944C] |
| 9. Yahao Liu, Jian Zheng, Xiao Zhang, Yongqiang Du, Ke Li, Guibo Yu, Yunfei Jia, Yu Zhang. (2021) Mussel-inspired and aromatic disulfide-mediated polyurea-urethane with rapid self-healing performance and water-resistance. JOURNAL OF COLLOID AND INTERFACE SCIENCE, 593 (105). [PMID:33744521] [10.1016/j.jcis.2021.03.003] |
| 10. Huihua Huang, Wei Zhou, Ziyuan Zhong, Shuangshuang Peng, Xiaohong Peng. (2020) Self-antiglare waterborne coating with superior mechanical robustness and highly efficient room-temperature self-healing capability. PROGRESS IN ORGANIC COATINGS, 146 (105717). [10.1016/j.porgcoat.2020.105717] |
| 11. Li Zi-Jian, Zhong Jiang, Liu Mao-Chen, Rong Jin-Chuang, Yang Kun, Zhou Ji-Yong, Shen Liang, Gao Fei, He Hai-Feng. (2020) Investigation on Self-healing Property of Epoxy Resins Based on Disulfide Dynamic Links. CHINESE JOURNAL OF POLYMER SCIENCE, 38 (9): (932-940). [10.1007/s10118-020-2406-x] |
| 12. Zheng Yue Wang, Yang You, Min Zhi Rong, Ming Qiu Zhang. (2024) A Facile Strategy to Bond Chemically Different Materials Based on Interfacial Interlocked Polymer Networks. ACS Applied Polymer Materials, 7 (1): (73-82). [10.1021/acsapm.4c02657] |
| 13. Yan Li, Haibo Feng, Jing Xiong, Li Li. (2024) A Group-Enriched Viscoelastic Model for High-Damping Vitrimers with Many Dangling Chains. Materials, 17 (20): (5062). [PMID:39459767] [10.3390/ma17205062] |
| 14. Zheng Qiaoyang, Jiang Xiaolin, Lu Xun. (2024) A multi-functional polyurethane elastomer with high damping, water resistance and flame retardancy. REACTIVE & FUNCTIONAL POLYMERS, 196 (105838). [10.1016/j.reactfunctpolym.2024.105838] |
| 15. Jiaqi Li, Fengqing Zhang, Haibin Nu, Chao Zhou, Guangfeng Wu. (2025) Asymmetric, continuum-structured self-healable composite conductors based on WPU/MXene/AgNW with microphase-separated structures for balanced healing and mechanical properties. MICROCHEMICAL JOURNAL, 208 (112529). [10.1016/j.microc.2024.112529] |
| 16. Mianji Qiu, Zhi Geng, Wangjian Cheng, Chengyuan Hua, Xing Yan, Baoyun Ye, Chongwei An, Jingyu Wang. (2025) Construction of a novel GAP/PCL energetic self-healing blend adhesive system for propellants based on the synergistic effect of hydrogen bond reorganization and disulfide bond exchange reactions. EUROPEAN POLYMER JOURNAL, 229 (113860). [10.1016/j.eurpolymj.2025.113860] |
| 17. Long Yi, Shijie Song, Ying Liu. (2025) Fabrication of functionalized boron nitride modified self-healing composite coating for corrosion and wear protection. COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 191 (108747). [10.1016/j.compositesa.2025.108747] |
| 18. Geonwoo Kim, Cigdem Caglayan, Gun Jin Yun. (2024) High Modulus Epoxy/GO-PANI Self-Healing Materials Without Catalyst by Molecular Engineering and Nanocomposite Fabrication. Polymers, 16 (22): (3173). [PMID:39599264] [10.3390/polym16223173] |
| 19. Haibin Niu, Li Liu, Yanmei Zhu, Chao Zhou, Guangfeng Wu. (2024) Liquid metal-enhanced self-healing dual-hard-phase cross-linked waterborne polyurethane for flexible sensors. EUROPEAN POLYMER JOURNAL, 215 (113185). [10.1016/j.eurpolymj.2024.113185] |
| 20. Jiaofeng Ye, Junxiang Zhang, Libang Feng, Haocheng Liu, Danbin Zhu, Yanhua Liu. (2024) Polyurethane combining preeminent toughness, puncture-resistance, and self-healing capabilities by multiple repair options based on dual dynamic covalent bonds. COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 694 (134203). [10.1016/j.colsurfa.2024.134203] |
| 21. Hechen Liu, Chang Liu, Yunpeng Liu, Yuzhe Jiang, Xinyang Li, Yining Bai. (2024) Rapid repair and degradation: A study of high-performance recyclable vitrimer epoxy resin based on disulfide bonds. POLYMER TESTING, 137 (108528). [10.1016/j.polymertesting.2024.108528] |
| 22. Yang Han, Xude Qin, Qianqian Kang, Weijie Fan, Dongxiao Han, Yantong Pei, Ye Chen, Wei Wang. (2024) Self-Healing TiO2/Ti3C2Tx/PDMS Coating with High Mechanical Robustness and Anticorrosion Performance. ACS Applied Polymer Materials, 6 (15): (9069-9079). [10.1021/acsapm.4c01360] |