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Basolite® C 300

    级别和纯度:
  • produced by BASF
有货

库存信息

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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
B475748-10g
10g 期货 Stock Image
B475748-100g
100g 期货 Stock Image

基本描述

英文别名 Cu-BTC MOF, HKUST-1, Copper benzene-1,3,5-tricarboxylate
规格或纯度 p杆uced by BASF
英文名称 Basolite® C 300
备注 可以在200°C(真空)下重新激活
产品介绍

MOF(金属有机框架)我们致力于为您提供更环保的替代产品,以符合“绿色化学的12项原则”的一项或多项原则要求。该产品为增强型,提高了能源效率。Basolite®C 300是一种金属有机框架(MOF)。它是一种结晶化的杂化多孔固体,由与有机连接剂(例如羧酸盐或膦酸酯)连接的无机亚基构成。这是一种商业化吸附剂,具有HKUST-1结构。HKUST-1也称为MOF-199、Cu-BTC和Basolite(TM)C300。HKUST-1是一种


应用

Basolite®C 300可用于吸附二氧化碳、一氧化碳及吸收二苯并噻吩液体。用于气体吸附(二氧化碳、氮气、氧气、氢气)、催化和分离

We are committed to bringing you Greener Alternative Products, which adhere to one or more of The 12 Principles of Greener Chemistry. This product has been enhanced for energy efficiency. Find detailshere.HKUST-1 is also known as MOF-199, Cu-BTC and Basolite(TM) C300. HKUST-1 is a blue cubic crystal of copper based ultramicroporous metal framework (MOF). It is prepared by solvothermal method. It could have a surface area of nearly 2200 m2/g2.MOF (metal organic framework)Basolite®C 300 is a metal organic framework (MOF). It is a crystallized hybrid porous solid built up from inorganic subunits, which are connected to organic linkers such as carboxylates or phosphonates. It is a commercialized sorbent that has the structure of HKUST-1.Basolite®C 300 can be used in the adsorption of carbon dioxide, carbon monoxide, and liquid absorption of dibenzothiopene.Used for gas adsorption (carbon dioxide, nitrogen, oxygen, hydrogen gas), catalysis, and separations

安全和危险性(GHS)

信号词 危险
危险声明

H301: 吞咽会中毒

H315: 引起皮肤刺激

H319: 引起严重眼睛刺激

H410: 对水生生物有剧毒并具有长期持续影响

预防措施声明

P273: 避免释放到环境中。

P302+P352: 如皮肤沾染:用水充分清洗。

P305+P351+P338: 如进入眼睛:用水小心冲洗几分钟。如戴隐形眼镜并可方便地取出,取出隐形眼镜。继续冲洗。

P301+P310+P330: 如果吞咽:漱口。立即致电中毒中心/医生。

质检证书(CoA,COO,BSE/TSE 和分析图谱)

C of A & Other Certificates(BSE/TSE, COO):
输入批号以搜索分析图谱:

此产品的引用文献

引用文献

1. Guang Lu,Omar K Farha,Lauren E Kreno,Paul M Schoenecker,Krista S Walton,Richard P Van Duyne,Joseph T Hupp.  (2011-08-23)  Fabrication of metal-organic framework-containing silica-colloidal crystals for vapor sensing..  Advanced materials (Deerfield Beach, Fla.),  23  ((38)): (4449-4452).  [PMID:21858878]
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7. Xiaodong Sun,Yu Tao,Yingxiang Du,Wen Ding,Cheng Chen,Xiaofei Ma.  (2019-06-23)  Metal organic framework HKUST-1 modified with carboxymethyl-β-cyclodextrin for use in improved open tubular capillary electrochromatographic enantioseparation of five basic drugs..  Mikrochimica acta,  186  ((7)): (462-462).  [PMID:31227901]
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10. Fotouh R Mansour,Sidra Waheed,Brett Paull,Fernando Maya.  (2019-10-08)  Porogens and porogen selection in the preparation of porous polymer monoliths..  Journal of separation science,  43  ((1)): (56-69).  [PMID:31589375]
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12. Christian Schneider,Matthias Mendt,Andreas Pöppl,Valentina Crocellà,Roland A Fischer.  (2019-12-07)  Scrutinizing the Pore Chemistry and the Importance of Cu(I) Defects in TCNQ-Loaded Cu3(BTC)2 by a Multitechnique Spectroscopic Approach..  ACS applied materials & interfaces,  12  ((1)): (1024-1035).  [PMID:31809022]
13. Clara Casado-Coterillo,Ana Fernández-Barquín,Angel Irabien.  (2020-01-08)  Effect of Humidity on CO2/N2 and CO2/CH4 Separation Using Novel Robust Mixed Matrix Composite Hollow Fiber Membranes: Experimental and Model Evaluation..  Membranes,  10  ((1)): [PMID:31905891]
14. Michael Maes,Luc Alaerts,Frederik Vermoortele,Rob Ameloot,Sarah Couck,Vincent Finsy,Joeri F M Denayer,Dirk E De Vos.  (2010-02-04)  Separation of C(5)-hydrocarbons on microporous materials: complementary performance of MOFs and zeolites..  Journal of the American Chemical Society,  132  ((7)): (2284-2292).  [PMID:20121122]
15. Yiyin Mao,Junwei Li,Wei Cao,Yulong Ying,Pan Hu,Yu Liu,Luwei Sun,Hongtao Wang,Chuanhong Jin,Xinsheng Peng.  (2014-11-19)  General incorporation of diverse components inside metal-organic framework thin films at room temperature..  Nature communications,  (5532-5532).  [PMID:25405547]
16. Dan Ping Wang,Maosen Fu,Yuan Ha,Hao Wang,Renbing Wu.  (2018-06-17)  Metal-organic framework-derived mesoporous octahedral copper oxide/titania composites for high-performance lithium-ion batteries..  Journal of colloid and interface science,  529  (265-272).  [PMID:29908402]
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18. Congcong Chen,He Zhu,Bo-Geng Li,Shiping Zhu.  (2020-01-11)  Structuring Metal-Organic Framework Materials into Hierarchically Porous Composites through One-Pot Fabrication Strategy..  Chemistry (Weinheim an der Bergstrasse, Germany),  26  ((15)): (3358-3363).  [PMID:31919969]
19. Qian Miao,Farzaneh Rouhani,Hamed Moghanni-Bavil-Olyaei,Kuan-Guan Liu,Xue-Mei Gao,Jing-Zhe Li,Xiu-De Hu,Zhi-Min Jin,Mao-Lin Hu,Ali Morsali.  (2020-05-08)  Comparative Study of the Supercapacitive Performance of Three Ferrocene-Based Structures: Targeted Design of a Conductive Ferrocene-Functionalized Coordination Polymer as a Supercapacitor Electrode..  Chemistry (Weinheim an der Bergstrasse, Germany),  26  ((43)): (9518-9526).  [PMID:32379364]
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