نتایج جستجو برای: zif 8

تعداد نتایج: 655453  

Journal: :Chemical communications 2015
Changyong Yim Moonchan Lee Wuseok Kim Sanghee Lee Gook-Hee Kim Kyong Tae Kim Sangmin Jeon

Zinc oxide nanorods were synthesized directly on a silicon microcantilever and converted into a nanoporous ZIF-8 film via a solvothermal reaction. The simultaneous measurements of the resonance frequency and deflection of the cantilever revealed that the adsorption of alcohol vapors induced a structural change in the ZIF-8 framework.

Journal: :Chemical communications 2013
Xinlei Liu Yanshuo Li Yujie Ban Yuan Peng Hua Jin Helge Bux Longya Xu Jürgen Caro Weishen Yang

The metal-organic framework ZIF-8, which undergoes hydrolysis under hydrothermal conditions, is endowed with high water-resistance after a shell-ligand-exchange-reaction. The stabilized ZIF-8 retains its structural characteristics with improved application performances in adsorption and membrane separation.

Journal: :Chemical communications 2015
A S Munn P W Dunne S V Y Tang E H Lester

A new method for the large-scale hydrothermal production and activation of ZIF-8 is presented in this communication. Activated ZIF-8 has been produced, at lab-scale and pilot-scale, at a rate of 27 g h(-1) and 810 g h(-1) respectively with the activated material showing a surface area of 1800 m(2) g(-1).

Journal: :Chemical communications 2013
Osama Shekhah Mohamed Eddaoudi

Highly-oriented ZIF-8 thin films with controllable thickness were grown on an -OH-functionalized Au substrate using the liquid phase epitaxy method at room temperature, as evidenced by SEM and PXRD. The adsorption-desorption properties of the resulting ZIF-8 thin film were investigated for various VOCs using the QCM technique.

2012
Joshua A. Thompson Karena W. Chapman William J. Koros Christopher W. Jones Sankar Nair

1387-1811/$ see front matter 2012 Elsevier Inc. A http://dx.doi.org/10.1016/j.micromeso.2012.03.052 ⇑ Corresponding authors. E-mail addresses: [email protected] (C.W. Jo ch.edu (S. Nair). The effect of typical membrane processing conditions on the structure, interfacial morphology, and gas separation performance of MOF/polymer nanocomposite membranes is investigated. In particular, the ZIF...

Journal: :Journal of the American Chemical Society 2017
Zhi Su William L Shaw Yu-Run Miao Sizhu You Dana D Dlott Kenneth S Suslick

Metal-organic frameworks (MOFs) have potential applications as energy absorbing materials for shock wave energy mitigation due to their nanoporosity. Here we have examined km/s laser-driven flyer plate impacts on a prototypical MOF, ZIF-8. We observed particle fragmentation and morphological changes in microcrystals of ZIF-8 at lower shock pressures (≈2.5 GPa), and amorphization and structural ...

Journal: :Journal of the Turkish Chemical Society, Section A: Chemistry 2016

Journal: :Chemical communications 2015
Ezzatollah Shamsaei Ze-Xian Low Xiaocheng Lin Alireza Mayahi Huiyuan Liu Xiwang Zhang Jefferson Zhe Liu Huanting Wang

Ultrathin ZIF-8 membranes with a thickness of around 200 nm were prepared by chemical vapour modification of surface chemistry and nanopores of an asymmetric bromomethylated poly(2,6-dimethyl-1,4-phenylene oxide) (BPPO) substrate. The resulting ZIF-8 membranes exhibited exceptional H2 permeance as high as 2.05 × 10(-6) mol m(-2) s(-1) Pa(-1) with high H2/N2 and H2/CO2 selectivities (9.7 and 12....

Journal: :Chemistry of Materials 2021

Zeolitic imidazolate frameworks (ZIFs) undergo pressure-induced phase transitions that are peculiar to each ZIF. The transition is associated with the rotation of imidazolate, and it accompanied by an increase their pore openings, affecting ZIFs performance in separation processes. This phenomenon known as gate opening or swing effect. Here we report metal dependence ambient pressure high (HP) ...

Journal: :Dalton transactions 2012
Adam F Gross Elena Sherman John J Vajo

Sodalite zeolitic imidazolate frameworks containing Co (ZIF-67) and Zn (ZIF-8) were synthesized at room temperature under aqueous conditions in 10 min. A trialkylamine deprotonated the 2-methylimidazole ligand and nucleated the frameworks. Furthermore, the ligand acted as a structure directing agent in place of an organic solvent.

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