نتایج جستجو برای: ذرات بلوری ZIF-8
تعداد نتایج: 672286 فیلتر نتایج به سال:
در این پژوهش چارچوب آلی- فلزی زئولیتی ایمیدازولات هشت (ZIF-8) بهعنوان یک جاذب جدید برای حذف یونهای آرسنات از محلول آبی مورد استفاده قرارگرفت. ذرههای بلوری ZIF-8 بهصورت موفقیتآمیز با استفاده از روش آبگرمایی و با اعمال عامل دما ساخته شد. تعیین مشخصههای جاذب با استفاده از روشهای جذب نیتروژن، پراش پرتو ایکس، طیفسنجی فروسرخ تبدیل فوریه و میکروسکوپ الکترونی روبشی انجام شد. اثر متغیرهای غلظت ا...
در این مطالعه، غشاهای دولایه ماتریس ترکیبی بر پایه پلی(اتر-b-آمید) با نام تجاری Pebax همراه با نانوذرات ZIF-8 و(zeolitic imidazole framework-8) با ساختار آلی فلزی بهعنوان ذرات پراکنش یافته درون شبکه پلیمری برای جداسازی دو گاز کربن دیاکسید و متان ساخته شد. ذرات به منظور بهبود سازگاری در شبکه پلیمر بهوسیله عامل اتصالدهنده 3-(آمینوپروپیل)تریاتوکسیسیلان (APTES) اصلاح شده و با فنون میکروسکوپی...
The energetic performances of seven SOD or RHO-topology ZIFs, with zinc or cobalt metal cation (ZIF-8, ZIF-90, Zn(dcim)2-SALE, ZIF-67, ZIF-7, ZIF-71, ZIF-11) were evaluated using water intrusion-extrusion under high pressure. The relationship between the structural parameters (in particular the pore system SOD or RHO, the type of linker, the metal cation nature) and the intrusion pressure was s...
This paper reports for the first time in situ crystal growth of ZIF-8 on electrospun polyurethane (PU) nanofibers. In SEM images, continuous and compact ZIF-8 nanocrystals grow along electrospun PU nanofibers. The highest loading capacity of ZIF-8 on PU reaches 63%. By N2 adsorption-desorption, ZIF-8-PU shows a high surface area of 566 cm(2) g(-1). Combining the good flexibility of PU with the ...
An advanced multifunctional, hollow metal-organic framework (MOF) drug delivery system with a high drug loading level and targeted delivery was designed and fabricated for the first time and applied to inhibit tumour cell growth. This hollow MOF targeting drug delivery system was prepared via a simple post-synthetic surface modification procedure, starting from hollow ZIF-8 successfully obtaine...
Luminescent graphene quantum dots (GQDs) are encapsulated and stabilized in Zeolitic Imidazolate Framework (ZIF-8) nanocrystals. The GQDs are well confined due to the adsorption on the growing face of the ZIF-8 nanocrystals and have a profound effect on the shape of the nanocrystals from rhombic dodecahedron to spherical. Stabilizing GQDs inside the ZIF-8 nanocrystals results in tailoring of th...
ZIF-8, a prototypical zeolitic porous coordination polymer, prepared via the self-assembly of tetrahedral atoms (e.g. Zn and Co) and organic imidazolate linkers, presents large cavities which are interconnected by narrow windows that allow, in principle, molecular sieving. However, ZIF-8 shows flexibility due to the swing of the imidazolate linkers, which results in the adsorption of molecules ...
Local transformation of ZIF-8 powders and coatings into ZnO nanorods for photocatalytic application.
Silver nitrate induces spontaneous room temperature transformation of ZIF-8 into a composite of ZnO nanorods embedded in a ZIF-8 matrix. This first example of reverse transformation of ZIF-8 into ZnO is a convenient method for generating fixed ZnO nanoparticles in powders as well as films and coatings. The fabricated ZnO nanorod@ZIF-8 is photocatalytically active.
A simple methodology for encapsulating ca. 10 nm-sized superparamagnetic Fe3O4 nanoparticles in zeolitic imidazolate frameworks (ZIF-8) crystals was developed. The corresponding Fe3O4@ZIF-8 heterostructured material exhibits bifunctional properties with both high magnetization (Fe3O4) and high thermal stability, large specific surface, and catalytic properties (ZIF-8). The Fe3O4@ZIF-8 catalyst ...
Zeolitic imidazolate frameworks (ZIFs) have attracted great interest in recent years due to their high chemical and thermal stability with promising applications in gas storage and separations. We investigate the structures of three different crystalline ZIFs - ZIF-4, ZIF-8, ZIF-zni - and their amorphous counterparts using high field (13)C and (15)N CP MAS NMR. The high field (20 T) allows for ...
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