(+)-10-樟脑磺酸

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库存信息

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货号 (SKU) 包装规格 是否现货 价格 数量
C106038-25g
25g 现货 Stock Image
C106038-100g
100g 现货 Stock Image
C106038-500g
500g 现货 Stock Image
C106038-1kg
1kg 期货 Stock Image

基本描述

别名 右旋樟脑磺酸
英文别名 (R)-camphorsulfonic acid | (s)-camphorsulfonic acid
规格或纯度 Moligand™, ≥99%
英文名称 (1S)-(+)-10-Camphorsulfonic acid
应用 可作为拆分剂,以及二肽偶联的催化剂。 (1S)-(+)-10-樟脑磺酸可用作合成 10-碘樟脑的原料。它还可以用作掺杂剂以在聚苯胺的导带中诱导手性。(±)-S-甲基-S-苯基亚磺酰亚胺可以用它作为手性拆分剂拆分,形成高对映体纯度的(-)-形式。
储存温度 充氩
运输条件 常规运输
产品介绍

不溶于醚,微溶于冰醋酸、乙酸乙酯,在潮湿的空气中易潮解。 可作为拆分剂,以及二肽偶联的催化剂。 (1S)-(+)-10-樟脑磺酸可用作合成 10-碘樟脑的原料。它还可以用作掺杂剂以在聚苯胺的导带中诱导手性。(±)-S-甲基-S-苯基亚磺酰亚胺可以用它作为手性拆分剂拆分,形成高对映体纯度的(-)-形式。

Used as a resolving agent, as a catalyst for coupling dipeptides.

AI解读

名称和识别符

PubChem SID 488183693
EC号 221-554-1
分子类型 小分子
IUPAC Name [(1S,4R)-7,7-dimethyl-2-oxo-1-bicyclo[2.2.1]heptanyl]methanesulfonic acid
INCHI InChI=1S/C10H16O4S/c1-9(2)7-3-4-10(9,8(11)5-7)6-15(12,13)14/h7H,3-6H2,1-2H3,(H,12,13,14)/t7-,10-/m1/s1
InChi Key MIOPJNTWMNEORI-GMSGAONNSA-N
Canonical SMILES CC1(C2CCC1(C(=O)C2)CS(=O)(=O)O)C
Isomeric SMILES CC1([C@@H]2CC[C@]1(C(=O)C2)CS(=O)(=O)O)C
WGK Germany 3
RTECS ED1550000
PubChem CID 65617
UN Number 3261
分子量 232.3
Beilstein号 2809675
Reaxy-Rn 2809675

化学和物理性质

溶解性 可溶于水;不溶于乙醚
密度 1.331
敏感性 易吸潮
比旋光度 21.5 ° (C=5, H2O)
熔点 196-200°C
分子量 232.300 g/mol
XLogP3 0.500
氢键供体数Hydrogen Bond Donor Count 1
氢键受体数Hydrogen Bond Acceptor Count 4
可旋转键计数Rotatable Bond Count 2
精确质量Exact Mass 232.077 Da
单同位素质量Monoisotopic Mass 232.077 Da
拓扑极表面积Topological Polar Surface Area 79.800 Ų
重原子数Heavy Atom Count 15
形式电荷Formal Charge 0
复杂度Complexity 404.000
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 2
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

安全和危险性(GHS)

象形图 GHS05
信号词 Danger
危险声明

H314: 造成严重的皮肤灼伤和眼睛损伤

H318: 造成严重的眼睛损伤

预防措施声明

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。

P301+P330+P331: 如误吞咽:漱口。不要诱导呕吐。

P304+P340: 如误吸入:将人转移到空气新鲜处,保持呼吸舒适体位。

P363: 再次使用之前,请清洗受污染的衣物。

P264+P265: 处理后彻底洗手[和…]。不要触摸眼睛。

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。

P302+P361+P354: 如果接触皮肤:立即脱掉所有被污染的衣服。立即用水冲洗几分钟。

P316: 立即寻求紧急医疗救助。

WGK Germany 3
RTECS ED1550000
Reaxy-Rn 2809675
Merck Index 1734
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

技术规格说明书

Melting point 197-200(℃)
Loss on drying 0-2(%)
Purity(Neutralization titration) 98.5-101.5(%)
Specific Rotation [a]20/D(c=5 in H2O) 20-23(°)
Appearance(c106038) White to Off-White Powder or Crystals
Proton NMR spectrum Conforms to Structure
Solubility5% in H2O Clear colorless to light yellow solution

质检证书(CoA,COO,BSE/TSE 和分析图谱)

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找到24个结果

批号(Lot Number) 证书类型 日期 货号
B2512244 分析证书 25-01-13 C106038
B2512245 分析证书 25-01-13 C106038
B2512246 分析证书 25-01-13 C106038
L2424344 分析证书 24-12-27 C106038
L2424343 分析证书 24-12-27 C106038
L2424340 分析证书 24-12-27 C106038
H2421161 分析证书 24-08-14 C106038
E2423201 分析证书 24-05-09 C106038
F2403142 分析证书 24-04-01 C106038
F2421426 分析证书 24-04-01 C106038
F2421145 分析证书 24-04-01 C106038
F2403139 分析证书 24-04-01 C106038
F2403138 分析证书 24-04-01 C106038
D2402489 分析证书 24-03-16 C106038
D2402487 分析证书 24-03-16 C106038
D2402177 分析证书 24-03-16 C106038
D2402176 分析证书 24-03-16 C106038
L1919110 分析证书 23-10-20 C106038
B2308404 分析证书 23-02-20 C106038
A2405076 分析证书 22-06-14 C106038
G2222203 分析证书 22-06-14 C106038
G2222225 分析证书 22-06-14 C106038
G2222227 分析证书 22-06-14 C106038
G2222228 分析证书 22-06-14 C106038

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此产品的引用文献

1. Nuanyuan Xu, Pengjia Dou, Hui Wen, Changkun Liu.  (2024)  In-situ growth of poly(m-phenylenediamine) in polyethylene (PE) matrix for nanofiltration membranes enabling outstanding selectivity of both mono-/di-valent ions and dyes/salt mixtures with enhanced water flux.  SEPARATION AND PURIFICATION TECHNOLOGY,  328  (124951).  [10.1016/j.seppur.2023.124951]
2. Man Zhou, Suting Xue, Qin Feng, Xuan Liang, Wangchen Wu, Yanli Zhou, Minmin Ni, Xudong Zheng, Song Xu, Jin Zhao, Zhongyu Li.  (2023)  Carbon layers on Pt/TiO2 induced dramatic promotion of photocatalytic H2 production: a combined experimental and computation study.  Materials Today Energy,  34  (101294).  [10.1016/j.mtener.2023.101294]
3. Kongsen Hu, Jiyuan Feng, Nan Lv, Wenbo Jiang, Zhiwei Lyu, Qing Hai.  (2022)  Novel flexible piezoelectric-conductive Janus nanofibers integrated membrane with enhanced pressure sensing performance.  JOURNAL OF APPLIED POLYMER SCIENCE,  139  (20): (52180).  [10.1002/app.52180]
4. Ting Huang, Huang-xian Zhang, Xiao-hua Zhang, Da-yong Peng, Xu-liang Nie, Jing Chen, Wan-ming Xiong.  (2022)  Preparation of functionalized diallylimidazole ionic liquid and its application in conversion of D-fructose into HMF.  JOURNAL OF MOLECULAR LIQUIDS,  345  (118233).  [10.1016/j.molliq.2021.118233]
5. Nan Lv, Wenbo Jiang, Kongsen Hu, Zhiwei Lyu.  (2021)  Synchronous Construction of Piezoelectric Elements and Nanoresistance Networks for Pressure Sensing Based on the Wheatstone Bridge Principle.  ACS Applied Electronic Materials,  (9): (3936–3947).  [10.1021/acsaelm.1c00509]
6. Yu Xia, Zegang Wang, Li-Ye Chen, Si-Wei Xiong, Pan Zhang, Pei-Gen Fu, Jing-Gang Gai.  (2020)  Nanoscale polyelectrolyte/metal ion hydrogel modified RO membrane with dual anti-fouling mechanism and superhigh transport property.  DESALINATION,  488  (114510).  [10.1016/j.desal.2020.114510]
7. Muhammad A. Shehzad, Xian Liang, Aqsa Yasmin, Xiaolin Ge, Xinle Xiao, Yuan Zhu, Zijuan Ge, Yang Wang, Liang Wu, Tongwen Xu.  (2019)  Angioplasty mimetic stented ion transport channels construct durable high-performance membranes.  Journal of Materials Chemistry A,  (16): (10030-10040).  [10.1039/C9TA01291E]
8. Shen Liang, Tian Lian, Zuo Jian, Zhang Xuan, Sun Shipeng, Wang Yan.  (2019)  Developing high-performance thin-film composite forward osmosis membranes by various tertiary amine catalysts for desalination.  Advanced Composites and Hybrid Materials,  (1): (51-69).  [10.1007/s42114-018-0070-1]
9. Ruiqi Li, Yudan Wang, Dan Zhou, Lijia Liu, Junqing Li, Yufa Li, Jijin Dai, Yushan Han.  (2018)  Handedness switch of synthesized helical polyaniline nanofibers featuring the use of a single enantiomeric acid and aniline oligomers.  POLYMER,  159  (39).  [10.1016/j.polymer.2018.10.011]
10. Ruiqi Li, Jijin Dai, Lijia Liu, Jingfeng Wang, Pengli Wang, Yufa Li, Dan Zhou, Yushan Han.  (2018)  Supramolecular chirality control via self-assembly of oligoaniline in the chemical oxidative polymerization process.  NEW JOURNAL OF CHEMISTRY,  42  (20): (16766-16773).  [10.1039/C8NJ02678E]
11. Yuerong Ba, Shaojie Zhou, Shanshan Jiao, Wei Pan.  (2018)  Fabrication of polyaniline/copper sulfide/poly(ethylene terephthalate) thread electrode for flexible fiber-shaped supercapacitors.  JOURNAL OF APPLIED POLYMER SCIENCE,  135  (42): (46769).  [10.1002/app.46769]
12. Jiapei Yang, Yin Yu, Datong Wu, Yongxin Tao, Linhong Deng, Yong Kong.  (2018)  Coinduction of a Chiral Microenvironment in Polypyrrole by Overoxidation and Camphorsulfonic Acid for Electrochemical Chirality Sensing.  ANALYTICAL CHEMISTRY,  90  (15): (9551–9558).  [PMID:29996647] [10.1021/acs.analchem.8b02269]
13. Liang Shen, Fangqian Wang, Lian Tian, Xuan Zhang, Chun Ding, Yan Wang.  (2018)  High-performance thin-film composite membranes with surface functionalization by organic phosphonic acids.  JOURNAL OF MEMBRANE SCIENCE,  563  (284).  [10.1016/j.memsci.2018.05.071]
14. Lujun Yu, Xiang Li, Qixin Yang, Yaofeng Zhu, Yaqin Fu.  (2018)  Regular helix carbon rods with nitrogen-doped characteristic.  MATERIALS LETTERS,  227  (229).  [10.1016/j.matlet.2018.05.065]
15. Guang-Hua Huo, Xu-Tao Chen, Zhi-Min Li, Cheng-Fu Liu, Da-Jin Xiao.  (2018)  Synthesis and structure-activity relationship of theasapogenol galactosides against Magnaporthe oryzae.  JOURNAL OF ASIAN NATURAL PRODUCTS RESEARCH,  [PMID:28492090] [10.1080/10286020.2017.1325877]
16. Liang Shen, Yan Wang.  (2018)  Efficient surface modification of thin-film composite membranes with self-catalyzed tris(2-aminoethyl)amine for forward osmosis separation.  CHEMICAL ENGINEERING SCIENCE,  178  (82).  [10.1016/j.ces.2017.12.026]
17. Liang Shen, Jian Zuo, Yan Wang.  (2017)  Tris(2-aminoethyl)amine in-situ modified thin-film composite membranes for forward osmosis applications.  JOURNAL OF MEMBRANE SCIENCE,  537  (186).  [10.1016/j.memsci.2017.05.035]
18. Zengyuan Pang, Jiapeng Fu, Pengfei Lv, Fenglin Huang, Qufu Wei.  (2014)  Effect of CSA Concentration on the Ammonia Sensing Properties of CSA-Doped PA6/PANI Composite Nanofibers.  SENSORS,  14  (11): (21453-21465).  [PMID:25401687] [10.3390/s141121453]
19. Muhammad Naveed Anjum, Lihua Zhu, Zhihong Luo, Jingchun Yan, Heqing Tang.  (2011)  Tailoring of chiroptical properties of substituted polyanilines by controlling steric hindrance.  POLYMER,  52  (5795).  [10.1016/j.polymer.2011.10.038]

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28. Kongsen Hu, Jiyuan Feng, Nan Lv, Wenbo Jiang, Zhiwei Lyu, Qing Hai.  (2022)  Novel flexible piezoelectric-conductive Janus nanofibers integrated membrane with enhanced pressure sensing performance.  JOURNAL OF APPLIED POLYMER SCIENCE,  139  (20): (52180).  [10.1002/app.52180]
29. Ting Huang, Huang-xian Zhang, Xiao-hua Zhang, Da-yong Peng, Xu-liang Nie, Jing Chen, Wan-ming Xiong.  (2022)  Preparation of functionalized diallylimidazole ionic liquid and its application in conversion of D-fructose into HMF.  JOURNAL OF MOLECULAR LIQUIDS,  345  (118233).  [10.1016/j.molliq.2021.118233]
30. Nan Lv, Wenbo Jiang, Kongsen Hu, Zhiwei Lyu.  (2021)  Synchronous Construction of Piezoelectric Elements and Nanoresistance Networks for Pressure Sensing Based on the Wheatstone Bridge Principle.  ACS Applied Electronic Materials,  (9): (3936–3947).  [10.1021/acsaelm.1c00509]
31. Yu Xia, Zegang Wang, Li-Ye Chen, Si-Wei Xiong, Pan Zhang, Pei-Gen Fu, Jing-Gang Gai.  (2020)  Nanoscale polyelectrolyte/metal ion hydrogel modified RO membrane with dual anti-fouling mechanism and superhigh transport property.  DESALINATION,  488  (114510).  [10.1016/j.desal.2020.114510]
32. Muhammad A. Shehzad, Xian Liang, Aqsa Yasmin, Xiaolin Ge, Xinle Xiao, Yuan Zhu, Zijuan Ge, Yang Wang, Liang Wu, Tongwen Xu.  (2019)  Angioplasty mimetic stented ion transport channels construct durable high-performance membranes.  Journal of Materials Chemistry A,  (16): (10030-10040).  [10.1039/C9TA01291E]
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