cellular foams
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Polymer ◽  
2021 ◽  
pp. 124272
Author(s):  
Z. Chen ◽  
A.A. Faysal ◽  
M. Embabi ◽  
L. Yu ◽  
C.B. Park ◽  
...  

Materials ◽  
2021 ◽  
Vol 14 (13) ◽  
pp. 3473
Author(s):  
Jutta Luksch ◽  
Anne Jung ◽  
Christoph Pauly ◽  
Ralf Derr ◽  
Patrick Gruenewald ◽  
...  

Nickel(Ni)/aluminium(Al) hybrid foams are Al base foams coated with Ni by electrodeposition. Hybrid foams offer an enhanced energy absorption capacity. To ensure a good adhering Ni coating, necessary for a shear resistant interface, the influence of a chemical pre-treatment of the base foam was investigated by a combination of an interface morphology analysis by focused ion beam (FIB) tomography and in situ mechanical testing. The critical energy for interfacial decohesion from these microbending fracture tests in the scanning electron microscope (SEM) were contrasted to and the results validated by depth-resolved measurements of the evolving stresses in the Ni coating during three-point bending tests at the energy-dispersive diffraction (EDDI) beamline at the synchrotron BESSY II. Such a multi-method assessment of the interface decohesion resistance with respect to the interface morphology provides a reliable investigation strategy for further improvement of the interface morphology.


Author(s):  
Han Wang ◽  
Shulan Wang ◽  
Jingqiao Zhang ◽  
Han Wang ◽  
Hui Li ◽  
...  

Catalysts ◽  
2021 ◽  
Vol 11 (4) ◽  
pp. 518
Author(s):  
Dominika Stradomska ◽  
Monika Heba ◽  
Aleksandra Czernek ◽  
Nikodem Kuźnik ◽  
Danuta Gillner ◽  
...  

Dynamic kinetic resolution (DKR) is one of the most attractive methods for enantioselective synthesis. In the reported studies, lipase B from Candida antarctica (CALB) immobilized on siliceous mesoporous cellular foams (MCF) functionalized with different hydrophobic groups, and two ruthenium complexes with substituted cyclopentadienyl ligands were investigated as catalysts for the chemoenzymatic DKR of (rac)-1-phenylethanol, using Novozym 435 as a benchmark biocatalyst. Studies on the (rac)-1-phenylethanol transesterification reaction showed that CALB supported on MCFs grafted with methyl groups is a promising biocatalyst and isopropenyl acetate is a preferable acylation agent. Both Ru-complexes activated by K3PO4 or t-BuOK, proved to be effective catalysts of the racemization reaction. The final DKR experiments using all catalysts combinations singled out, gave 96% conversion, and (R)-1-phenylethyl acetate enantiomeric excess of 98% in 8 h using K3PO4 activator.


Author(s):  
Milene Zezzi do Valle Gomes ◽  
Gerard Masdeu ◽  
Patrick Eiring ◽  
Alexander Kuhlemann ◽  
Markus Sauer ◽  
...  

CO2 can be enzymatically reduced to methanol in a cascade reaction involving three enzymes: formate-, formaldehyde- and alcohol dehydrogenase (FateDH, FaldDH, ADH).


2020 ◽  
Vol 104 ◽  
pp. 105742 ◽  
Author(s):  
Hafiz Muhammad Ahsan ◽  
Xingzhong Zhang ◽  
Yingli Liu ◽  
Yixiang Wang ◽  
Yan Li ◽  
...  

2019 ◽  
Vol 9 (1) ◽  
Author(s):  
Jun Liu ◽  
Peiwen Xu ◽  
Pengcheng Wang ◽  
Zhijia Xu ◽  
Xinzhen Feng ◽  
...  

AbstractA new type of supported vanadium phosphorus oxide (VPO) with self-phase regulation was simply fabricated (organic solvent free) for the first time by depositing the specific VPO precursor NH4(VO2)HPO4 onto the Siliceous Mesostructured Cellular Foams (MCF) with controlled activation. The resulting materials were found to be highly efficient and selective for sustainable acrylic acid (AA) plus methyl acrylate (MA) production via a condensation route between acetic acid (HAc) and formaldehyde (HCHO). A (AA + MA) yield of 83.7% (HCHO input-based) or a (AA + MA) selectivity of 81.7% (converted HAc-based) are achievable at 360 °C. The systematic characterizations and evaluations demonstrate a unique surface regulation occurring between the MCF and the NH4(VO2)HPO4 precursor. NH3 release upon activation of NH4(VO2)HPO4 precursor together with adsorption of NH3 by MCF automatically induces partial reduction of V5+ whose content is fine-tunable by the VPO loading. Such a functionalization simultaneously modifies phase constitution and surface acidity/basicity of catalyst, hence readily controls catalytic performance.


2019 ◽  
Vol 37 (3) ◽  
pp. 488-495
Author(s):  
Stanisław Pikus ◽  
Małgorzata Zienkiewicz-Strzałka ◽  
Małgorzata Skibińska

AbstractThe paper presents the new way of preparation of MCF foams with NaY zeolite. Significant changes in the amount of micro and mesopores in relation to the amount of NaY zeolite and 1,3,5-trimethylbenzene (TMB) added during the synthesis was observed. It suggests the possibility of controlling the micro/mesopores ratio by applying the proposed method. Environmental aspects of using new MCF/NaY foams is related to the adsorption of thorium ions (Th+4). The term of “MCF/NaY materials” refers to the general name of the material without referring to the content and state of zeolite. The obtained materials were highly effective in relation to Th+4. The adsorption capacity was greater when the number of micropores was lower. The dependence of adsorption capacity of Th+4 ions on aluminum atoms content was also confirmed.


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