نتایج جستجو برای: cu zno zro2

تعداد نتایج: 83558  

A. Esmaeilzadeh A. Shojaeian M. Hatami M. Qandalee, P. Biparva

Two-component reaction of 2-aminobenzophenones with acetylenic esters in the presence of γ-Al2O3 and Cu/ZnO as suitable heterogeneous catalysts has been studied. Nano γ-Al2O3 and Cu/ZnO showed high activities when used as surface catalysts for the synthesis of quinoline derivatives. After completion of the reaction, the catalyst was ...

Journal: :Journal of Physical Chemistry C 2021

We investigated the orientation and morphology of Cu nanoparticles grown under ultrahigh-vacuum conditions on ZnO(0001), ZnO(0001̅), ZnO(101̅4) single crystal surfaces by scanning tunneling microscopy, high-energy grazing incidence X-ray diffraction, low-energy electron microscopy. The (111) oriented NPs basal ZnO showed only small area fractions high indexed Cu(225) Cu(331) facets. show alignmen...

Journal: :Advances in Production Engineering & Management 2013

ZnO and Cu doped[1] (CZO) thin films were prepared by radio frequency sputtering. The structural and optical properties of thin films were investigated using X-ray diffraction (XRD), atomic force microscopy (AFM), optical spectrophotometer, and photoluminescence (PL) techniques. ZnO thin films showed crystalline and micro-stress defects in the crystal lattice. Annealing of CZO thin films increa...

Journal: :Nanoscale 2011
Jayaprakash Khanderi Cosmin Contiu Jörg Engstler Rudolf C Hoffmann Jörg J Schneider Alfons Drochner Herbert Vogel

Cuprous oxide agglomerates composed of 4-10 nm Cu2O nanoparticles were deposited on multiwalled carbon nanotubes (MWCNTs) and on ZnO/MWCNTs to give binary [Cu2O/MWCNT] and ternary [Cu2O/ZnO/MWCNT] composites. Di-aqua-bis[2-(methoxyimino)propanoato]copper Cu[O2CCCH3NOMe](2)·2H2O 1 in DMF was used as single source precursor for the deposition of nanoscaled Cu2O. The precursor decomposes either in...

Journal: :Physical chemistry chemical physics : PCCP 2013
Malte Behrens Giulio Lolli Nelli Muratova Igor Kasatkin Michael Hävecker Raoul Naumann d'Alnoncourt Oksana Storcheva Klaus Köhler Martin Muhler Robert Schlögl

A pure ZnO sample and a sample containing 3 mol% Al were prepared by (co)-precipitation as model materials for the oxidic support phase in Cu/ZnO/Al(2)O(3) methanol synthesis catalysts. The samples were characterized with respect to their crystal, defect and micro-structure using various methods (XRD, TEM, XPS, UV-vis spectroscopy, EPR, NMR). It was found that a significant fraction of the Al i...

Journal: :Journal of Catalysis 2021

The roles of CO and CO2 in Cu-catalyzed methanol synthesis from syngas were evaluated experiments with gas switching between CO/H2 CO2/H2 feeds a CO2/CO/H2 feed corresponding CO-free CO2/inert/H2 feed. Switching CO/Ar/H2 (3/29/68) CO2/N2/H2 for Cu/Al2O3 showed that the rate on Cu is more than an order magnitude higher compared to CO. Experiments at low conversion conditions negligible product f...

در کار حاضر، ساختار نامتجانس دو مؤلفه‌ای از آرایه نانومیله‌های اکسید روی (ZnO NRs) و ساختارهای اکسید مس (CuO) رشد داده می‌شود. نانومیله-های یک بعدی ZnO به کمک لایه جوانه‌زنی به‌وسیله‌ی روش شیمیایی‌تر در دمای پایین رشد داده می‌شوند. سپس فیلم نازک اکسید مس با اکسایش حرارتی فیلم نازک Cu نهشت‌شده با کندوپاش مگنترونی بر ZnO NRs به منظور افزایش و گسترش جذب اپتیکی در ناحیه مرئی تشکیل می‌شود. مشخصه‌های...

2003
Guoqing Guan Tetsuya Kida Tomohiro Harada Munetoshi Isayama Akira Yoshida

Photoreduction of CO2 with water into valuable organic compounds under concentrated sunlight as well as Xeor Hg-lamp irradiation was investigated using a Pt-loaded potassium hexatitanate (K2Ti6O13) photocatalyst or a composite catalyst in which the Pt-K2Ti6O13 photocatalyst was combined with a CO2 hydrogenation catalyst of Cu/ZnO. When the Pt-K2Ti6O13 photocatalyst was used under Xeor Hg-lamp i...

Journal: :Chemical communications 2010
Jinli Liu Chengkun Guo Zhaofu Zhang Tao Jiang Huizhen Liu Jinliang Song Honglei Fan Buxing Han

Cheap and simple Cu/ZnO catalysts are very effective and recyclable for the synthesis of dimethylformamide (DMF) from CO(2), H(2), and dimethylamine, and a yield of 97% can be reached.

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