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Catalog | name | Description | price |
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R-M-095 | NU-1000,CAS:1446138-63-1 | Nu-1000 is a highly pure, monodisperse and highly stable zirconium based metal organic framework (MOF), which can be used as a gas separation material and a multifunctional scaffold material for heterogeneous catalysis.It can also be used as a support for catalyst installation. The Zr-based metal-organic framework NU-1000 is a robust, mesoporous material that can be used in a variety of applications, including catalysis, sensing, gas separation and storage, and scaffolds. Nu-1000 is a highly pure, monodisperse and highly stable zirconium based metal organic framework (MOF), which can be used as a gas separation material and a multifunctional scaffold material for heterogeneous catalysis.It can also be used as a support for catalyst installation. The Zr-based metal-organic framework NU-1000 is a robust, mesoporous material that can be used in a variety of applications, including catalysis, sensing, gas separation and storage, and scaffolds. | price> |
R-M-096 | PCN-777 (Zr),CAS 1644161-46-5 | PCN-777 (Zr),porous coordination network-777(Zr) from ruixi.Pcn-777 (Zr) is not only a good catalyst carrier, but also a potential gas (such as carbon dioxide) and pollutant adsorption material, as well as a drug molecule and small enzyme peptide adsorption material.Pcn-777 (Zr) can be used for gas adsorption separation and catalysis.The cage size and pore volume of pcn-777 were 3.8nm and 2.8cm (3) g (- 1), respectively.In addition, pcn-777 shows good stability in water environment, which makes it an ideal candidate vector to incorporate different functional parts. By simply modifying the inner surface of pcn-777, the interaction between pcn-777 and different objects can be changed, and efficient immobilization can be achieved. | price> |
R-R-1517 | Volasertib CAS No.755038-65-4 | Volasertib (BI 6727)/CAS No.755038-65-4 is an orally active, highly potent and ATP-competitive Polo-like kinase 1 (PLK1) inhibitor with an IC50 of 0.87 nM. Volasertib inhibits PLK2 and PLK3 with IC50s of 5 and 56 nM, respectively. Volasertib induces mitotic arrest and apoptosis. Volasertib, a dihydropteridinone derivative, shows marked antitumor activity in multiple cancer models. | price> |
R-OR-508 | MOF-505 | Metal organic framework-505,MOF-505 from ruixi.Metal organic frame material MOF-505.Metal organic frameworks (MOFs) are organic-inorganic hybrid materials with intramolecular pores formed by self-assembly of organic ligands and metal ions or clusters through coordination bonds.In MOFs, the arrangement of organic ligands and metal ions or clusters has obvious directionality, which can form different framework pore structures, thus showing different adsorption properties, optical properties, electromagnetic properties and so on. MOFs has great development potential and attractive prospect in modern materials science. | price> |
R-M-097 | PCN-250 (Fe),CAS1771755-22-6 | PCN-250 (Fe),porous coordination network-250(Fe) from ruixi.Pcn-250 (Fe) can be used for gas adsorption separation and catalysis.Pcn-250 is a promising methane storage material. Pcn-250 has excellent hygroscopic stability (stable even after exposed to 90% RH wet air for 30 days), good recycling and strong hygroscopicity, which makes pcn-250 an excellent MOF adsorbent and can capture CO2 under humid conditions. | price> |
R-R-1518 | Traumatic Acid CAS No.6402-36-4 | Traumatic Acid/CAS No.6402-36-4 is a wound healing agent and a cytokinin (phytohormone). Traumatic Acid enhances the biosynthesis of collagen in cultured human skin fibroblasts. Traumatic Acid inhibits MCF-7 breast cancer cells viability and enhances apoptosis and oxidative stress. Traumatic Acid can be used in studies of cancer, circulatory disorders (including arterial hypertension), and skin diseases associated with oxidative stress and impaired collagen biosynthesis. | price> |
R-OR-509 | ZIF-5 | Metal organic frame material ZIF-5.Metal organic frameworks (MOFs) are organic-inorganic hybrid materials with intramolecular pores formed by self-assembly of organic ligands and metal ions or clusters through coordination bonds.In MOFs, the arrangement of organic ligands and metal ions or clusters has obvious directionality, which can form different framework pore structures, thus showing different adsorption properties, optical properties, electromagnetic properties and so on. MOFs has great development potential and attractive prospect in modern materials science. | price> |
R-R-1519 | Sertaconazole nitrate CAS No.99592-39-9 | Sertaconazole nitrate (FI7056)/CAS No.99592-39-9 is a broad-spectrum topical antifungal agent, exhibits anti-inflammatory activity via activation of a p38-COX-2-PGE2 pathway. Sertaconazole nitrate is also a microtubule inhibitor, shows antiproliferative effect, induces apoptosis and autophagy, and can also inhibit the migration of cells. | price> |
R-OR-510 | ZIF-74 | Metal organic frame material ZIF-74.Metal organic frameworks (MOFs) are organic-inorganic hybrid materials with intramolecular pores formed by self-assembly of organic ligands and metal ions or clusters through coordination bonds.In MOFs, the arrangement of organic ligands and metal ions or clusters has obvious directionality, which can form different framework pore structures, thus showing different adsorption properties, optical properties, electromagnetic properties and so on. MOFs has great development potential and attractive prospect in modern materials science. | price> |
R-M-098 | PCN-222 (H),CAS 1403461-06-2 | PCN-222 (H),porous coordination network-222(H) from ruixi.Pcn-222 (H) can be used in the fields of gas adsorption and separation, catalysis, sensors, drug delivery of small molecule drugs or enzymes or peptides.Pcn-222 is a kind of macroporous zirconium porphyrin metal organic framework (MOF) nanorods.Pcn-222 is an excellent adsorbent and suitable for dye adsorption. | price> |
R-R-1520 | Cucurbitacin IIb CAS No.50298-90-3 | Cucurbitacin IIb/CAS No.50298-90-3 is an active component isolated from Hemsleya amabilis, induces apoptosis with anti-inflammatory activity. Cucurbitacin IIb inhibits phosphorylation of STAT3, JNK and Erk1/2, enhances the phosphorylation of IκB and NF-κB (p65), blocks nuclear translocation of NF-κB (p65) and decreases mRNA levels of IκBα and TNF-α. | price> |
R-OR-511 | MIL-100 | Metal organic frame material MIL-100.Metal organic frameworks (MOFs) are organic-inorganic hybrid materials with intramolecular pores formed by self-assembly of organic ligands and metal ions or clusters through coordination bonds.In MOFs, the arrangement of organic ligands and metal ions or clusters has obvious directionality, which can form different framework pore structures, thus showing different adsorption properties, optical properties, electromagnetic properties and so on. MOFs has great development potential and attractive prospect in modern materials science. | price> |
R-M-099 | PCN-224 (H),CAS 1476810-88-4 | PCN-224 (H),porous coordination network-224(H) from ruixi.Pcn-224 (H) can be used for gas adsorption separation and catalysis.Pcn-224 (H) is one of MOF series.Metal organic frameworks (MOFs), as a relatively new type of porous materials, have the advantages of structural tailoring, diversity and high specific surface area. At the same time, it has the advantages of homogeneous catalyst and heterogeneous catalyst, so it has potential application prospects in catalysis. | price> |
R-R-1521 | JPS014 TFA | JPS014 TFA is a benzamide-based Von Hippel-Lindau (VHL) E3-ligase proteolysis targeting chimeras (PROTAC). JPS014 TFA degrades class I histone deacetylase (HDAC). JPS014 TFA is potent HDAC1/2 degrader correlated with greater total differentially expressed genes and enhanced apoptosis in HCT116 cells. | price> |
R-OR-512 | 1,1,2,2-tetrakis(4-bromophenyl)ethylene,cas:61326-44-1 | 1,1,2,2-tetrakis(4-bromophenyl)ethylene from ruixi,cas:61326-44-1.Compared with the traditional organic light-emitting materials, AIE, as a new design concept and theory of optical materials, has attracted a wide range of interest from chemists and material scientists at home and abroad. The most significant advantage of AIE material is its efficient luminescence in the aggregation state. | price> |
R-M-100 | PCN-128 (Zr),CAS 2230488-02-3 | PCN-128 (Zr),porous coordination network-128(zirconium) from ruixi.Pcn-128 (Zr) can be used for gas adsorption and separation for drug delivery of smaller drug molecules or enzymes or peptides.PCN-128 (Zr) is one of MOF series.Metal organic frameworks (MOFs), as a relatively new type of porous materials, have the advantages of structural tailoring, diversity and high specific surface area. At the same time, it has the advantages of homogeneous catalyst and heterogeneous catalyst, so it has potential application prospects in catalysis. | price> |
R-R-1522 | Aristolactam I CAS No.13395-02-3 | Aristololactam I (AL-I)/CAS No.13395-02-3, is the main metabolite of aristolochic acid I (AA-I), participates in the processes that lead to renal damage. Aristololactam I (AL-I) directly injures renal proximal tubule cells, the cytotoxic potency of AL-I is higher than that of AA-I and that the cytotoxic effects of these molecules are mediated through the induction of apoptosis in a caspase-3-dependent pathway. | price> |
R-OR-513 | 1-Bromo-4-(1,2,2-triphenylethenyl)benzene,cas:34699-28-0 | 1-Bromo-4-(1,2,2-triphenylethenyl)benzene from ruixi,cas:34699-28-0.Compared with the traditional organic light-emitting materials, AIE, as a new design concept and theory of optical materials, has attracted a wide range of interest from chemists and material scientists at home and abroad. The most significant advantage of AIE material is its efficient luminescence in the aggregation state. | price> |
R-M-101 | PCN-250 (Fe2Co),cas 2393906-70-0 | PCN-250 (Fe2Co),porous coordination network-250(Fe2Cobalt) from ruixi.Pcn-250 (fe2co) can be used to adsorb gases (such as carbon dioxide) and pollutants, and Fe has good catalytic performance as Lewis acid catalyst.Pcn-250 is stable in air, but stable in aqueous solution and weak alkaline condition. | price> |
R-R-1523 | Anagrelide hydrochloride CAS No.58579-51-4 | Anagrelide hydrochloride (BL4162A)/CAS No.58579-51-4 is a potent inhibitor of phosphodiesterase type III (PDE3) (IC50=36 nM). Anagrelide hydrochloride, an imidazoquinazoline derivative, acts as an inhibitor of platelet aggregation. Anagrelide hydrochloride inhibits bone marrow megakaryocytopoiesis. Anagrelide hydrochloride decreases gastrointestinal stromal tumor (GIST) cell proliferation and promotes their apoptosis in vitro. Anagrelide hydrochloride is a platelet-lowering agent and plays in the antithrombopoietic action. | price> |