产品大类
材料科学
金属-有机框架(Metal-Organic Frameworks,简称MOFs)是一类由金属离子或团簇与有机配体通过配位键连接形成的多孔晶体材料。MOFs具有高度有序的孔隙结构、超高的比表面积和可调节的化学性质,因此在气体存储、分离、催化、药物输送、传感器等领域显示出广泛的应用前景。
在众多MOFs中,ZIF-8是一种特殊的材料,因其结构、化学和热稳定性而著称。ZIF-8的沸石型四面体网是由锌的四面体原子构建的,这些原子通过2-甲基咪唑连接剂连接。与其他ZIFs相比,ZIF-8具有更大的孔隙(11.6Å或1.16nm),这些孔隙通过3.4Å(0.34nm)的小孔径可进入,具有1947m²/g的表面积和0.663cm³/g的孔隙体积。该产品在550°C表现出优异的热稳定性[1]。
图1 ZIF-8的单体
ZIF-8有许多潜在的应用。由于其高孔隙率,这种材料可以用于存储天然气(其中甲烷是主要成分)和在石化工业中从CO2中分离烷烃[2-3]。此外,还有报道称它可以用作催化剂(Knoevenagel反应),或作为金属纳米颗粒的催化剂载体[4]。
该ZIF-8产品可通过strem Catalog(货号# 30-4015)获得。
百灵威还可提供多种MOFs材料,助力气体存储、分离及催化行业发展!
产品列表:
品名 | CAS | 货号 |
---|---|---|
NH2-MIL-101(Fe), 95% 三[[[-[[2-氨基-1,4-苯二甲酸(2-)-ΚO1:ΚO'1]]氯-Μ3-氧三铁 | 1189182-85-1 | 9108356 |
NH2-MIL-88B(Fe), 95% 三[Μ-[[2-氨基-1,4-苯二甲酸(2-)-ΚO1:ΚO'1]]-Μ3-氧三铁 | 1341134-09-5 | 924902 |
MIL-88B(Fe), 95% TRIS:[Μ-[[1,4-苯二甲酸(2-)-ΚO1:ΚO'1]]-Μ3-氧三铁 | 1341134-01-7 | 933712 |
MIL-68(Fe), 95% MIL-68(Fe) | 1251849-13-4 | 9108361 |
NH2-MIL-53(Fe), 95% ((2-氨基-4-羧基苯甲酰基)氧基)(羟基)铁(III) | 1291088-77-1 | 920819 |
MIL-88A(Fe), 95% MIL-88A(Fe) | 1138446-56-6 | 9408775 |
NH2-MIL-53(Al), 95% NH2-MIL-53(Al) | 1134360-62-5 | 980544 |
MIL-53(Al), 95% 1,4-苯二甲酸(2-)-ΚO1]羟基铝 | 654061-20-8 | 945569 |
NH2-MIL-101(Cr), 95% NH2-MIL-101(Cr) | 1414869-95-6 | 9408776 |
MIL-101(Cr), 95% MIL-101(Cr) | 869288-09-5 | 955545 |
MIL-100(Cr), 95% 铬,双季铵盐[Μ-[[1,3,5-苯三甲酸(3-)-ΚO1:ΚO1']]氟-Μ3-氧代三-水合物(9CI) | 840523-88-8 | 933559 |
MIL-53(Cr), 95% MIL-53(Cr) | 442912-79-0 | 953282 |
PCN-222(H), 95% PCN-222(H) | 1403461-06-2 | 937567 |
PCN-224(H), 95% PCN-224(H) | 1476810-88-4 | 9408777 |
PCN-250(Fe2Co), 95% PCN-250(Fe2Co) | 2393906-70-0 | 9408778 |
PCN-250(Fe), 95% 铁偶氮苯四羧酸,多孔[PCN-250(FE)],:F250 | 1771755-22-6 | 2081548 |
PCN-600(Fe), 95% PCN-600(Fe) | 1630794-12-5 | 9408779 |
PCN-222(Mn), 95% PCN-222(Mn) | 1403461-01-7 | 9408780 |
UIO-66-F, 95% UIO-66-F | 1380595-28-7 | 9408781 |
UIO-66-F2, 95% UIO-66-F2 | 1458048-16-2 | 9408782 |
MIL-47(V), 95% MIL-47(V) | 410542-58-4 | 9408783 |
UIO-66-F4, 95% UIO-66-F4 | 2170275-20-2 | 9408784 |
MIL-68(Al), 95% MIL-68(Al) | / | 9408785 |
OH-UIO-66, 95% OH-UIO-66 | 1334721-91-3 | 9408786 |
UIO-66-(SH)2, 95% UIO-66-(SH)2 | 1435475-69-6 | 9408787 |
UIO-66(Ce), 95% UIO-66(Ce) | 1801427-51-9 | 9343687 |
ZIF-70, 95% ZIF-70 | 1207355-49-4 | 9408788 |
ZIF-69, 95% ZIF-69 | 1018477-10-5 | 9408789 |
ZIF-62, 95% ZIF-62 | 1446434-44-1 | 9408790 |
PCN-128(Zr) , 95% PCN-128(Zr) | 2230488-02-3 | 950145 |
PCN-223(H), 95% PCN-223(H) | 1640226-29-4 | 9408791 |
PCN-333(Al), 95% PCN-333(Al) | 1843260-12-7 | 9408792 |
PCN-777(Zr), 95% PCN-777(Zr) | 1644161-46-5 | 9408793 |
UIO-66-MSA, 95% UIO-66-MSA | / | 9408794 |
UIO-68(Zr) , 95% UIO-68(Zr) | 1072413-85-4 | 9408795 |
NO2-UIO-66, 95% NO2-UIO-66 | 1260119-01-4 | 9408796 |
UIO-66-(OH)2, 95% UIO-66-(OH)2 | 1356031-63-4 | 9338728 |
UIO-66-(COOH)2, 95% UIO-66-(COOH)2 | 1458048-15-1 | 9408797 |
MIL-124(In), 95% MIL-124(In) | 2138292-58-5 | 9408798 |
MIL-101(Cr) F Free, 95% MIL-101(Cr) F Free | 876661-00-6 | 978770 |
NO2-MIL-101(Cr), 95% NO2-MIL-101(Cr) | 1425509-24-5 | 9408799 |
UIO-66-SO3H, 95% UIO-66-SO3H | 1334722-07-4 | 977608 |
PCN-222(Fe), 95% PCN-222(Fe) | 1403461-00-6 | 9108357 |
MIL-101(Cr)-SO3H, 95% MIL-101(Cr)-SO3H | 1331961-41-1 | 951289 |
ZIF-9(Co), 95% ZIF-9(Co) | 15933-15-0 | 9340195 |
ZIF-11, 95% ZIF-11 | 24304-54-9 | 9408800 |
ZIF-67(Co), 95% ZIF-67(Co) | 46201-07-4 | 980525 |
ZIF-14, 95% ZIF-14 | 945215-37-2 | 9338730 |
ED-MIL-101(Cr), 95% ED-MIL-101(Cr) | 1041469-06-0 | 9408801 |
MOF-801/UIO-66-FA, 95% MOF-801/UIO-66-FA | 1355974-78-5 | 9408802 |
MOF-867(Zr), 95% MOF-867(Zr) | 1431375-07-3 | 9408803 |
MOF-253(Al), 95% MOF-253(Al) | 1251862-76-6 | 9108360 |
MIL-96(Al), 95% MIL-96(Al) | 908831-43-6 | 9108346 |
MIL-100(Al), 95% MIL-100(Al) | 1200358-58-2 | 9108345 |
IRMOF-9, 95% IRMOF-9 | 473981-45-2 | 9408804 |
IRMOF-8, 95% IRMOF-8 | 473981-43-0 | 9408805 |
ZIF-68, 95% ZIF-68 | 1018477-09-2 | 935433 |
ZIF-90, 95% ZIF-90 | 1062147-37-8 | 992599 |
ZIF-64, 95% ZIF-64 | 17339-44-5 | 9108342 |
ZIF-7, 95% ZIF-7 | 909531-29-9 | 982118 |
IRMOF-3, 95% IRMOF-3 | 473981-31-6 | 976892 |
MOF-5(Zn), 95% MOF-5(Zn) | 255367-66-9 | 9108333 |
UiO-66(Zr), 95% UiO-66(Zr) | 1072413-89-8 | 951801 |
UiO-67(Zr), 95% UiO-67(Zr) | 1072413-83-2 | 955307 |
UIO-66(Zr)-COOH, 95% UIO-66(Zr)-COOH | 1334722-04-1 | 9338034 |
ZIF-8, 95% ZIF-8 | 59061-53-9 | 917899 |
NH2-UIO-66(Zr) , 95% NH2-UIO-66(Zr) | 1260119-00-3 | 992800 |
COF-TMP-DFB, 95% COF-TMP-DFB | 57469-15-5 | 9408806 |
DhaTp, 95% DhaTp | 1529776-43-9 | 9408807 |
COF-366, 95% COF-366 | 1381930-10-4 | 9408808 |
CTF-1-(CN), 95% CTF-1-(CN) | 33411-58-4 | 9408809 |
Py-1P-COF, 95% Py-1P-COF | 2043949-92-2 | 9408810 |
TPB-TP-COF, 95% TPB-TP-COF | 1262433-88-4 | 9408811 |
PI-COF-1, 95% PI-COF-1 | 286831-92-3 | 9408812 |
COF-300, 95% COF-300 | 1133843-97-6 | 9408813 |
COF-v, 95% COF-v | 2065232-77-9 | 9408814 |
COF-Tz, 95% COF-Tz | 1788078-55-6 | 9408815 |
TPBD-Me2, 95% TPBD-Me2 | 1491156-88-7 | 9408816 |
Py-COF, 95% Py-COF | 2185790-08-1 | 9408817 |
CTF-1, 95% CTF-1 | 2155822-92-5 | 9408818 |
TpPa-1, 95% TpPa-1 | 1414350-37-0 | 9224115 |
HCOF-1, 95% HCOF-1 | 1639211-37-2 | 9408819 |
COF-42, 95% COF-42 | 1314877-67-2 | 9408820 |
COF-LZU-1, 95% COF-LZU-1 | 1242082-12-7 | 9224116 |
Zinc 2-methylimidazole MOF (ZIF-8) 2-甲基咪唑锌盐 | 59061-53-9 | 30-4015 |
参考文献
- [1]Exceptional chemical and thermal stability of zeolitic imidazolate frameworks Park K S et al. PNAS 2006;103,10186-10191
- [2](a) Separation of xylene isomers Micropor. Mesopor. Mat., 2013, 173, 1; (b) Separation of C6 Paraffins Ind. Eng. Chem. Res., 2012, 51, 4692; (c) Effective separation of propylene/propane binary mixtures J. Membrane Sci., 2012, 93, 390.
- [3](a) MOF-containing mixed-matrix membranes for CO2/CH4 and CO2/N2 binary gas mixture separations, Sep. Purif. Technol., 2011, 81, 31. (b) Porous polyethersulfone-supported Zeolitic Imidazolate Framework Membranes for hydrogen separation
- [4]J. Phys.Chem. C., 2012, 116, 13264.
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