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Pd and Pt supported on glass fiber materials with developed porosity and high specific surface areas were studied in total propane oxidation.
The main attention is paid to development of film coatings and membranes [1 5, 8 12], as well as to highly dispersed materials with developed surface area [13 16].
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The matching of pore size and cation size was more predominant in the capacitor unit, especially for the electrode materials with less developed porosity.
The asymmetric capacitance distribution of 7 F g−1 in the negative electrode and 113 F g−1 in the positive electrode occurred for electrode materials with less developed porosity.
In this paper, dual N, S-doped carbon materials with high-developed ultra-micopores (∼0.70 nm) are prepared by direct carbonization of potassium salts of m-amionphenol-m-mecaptophenol co-resin.
A 3D mesoporous TiO2 material with well-developed mesostructure is prepared in the form of a binder-free thin (100 nm) film and studied as potential candidate for the negative electrode in lithium microbatteries.
This paper represent the results of an experimental study handled with developed grouting materials for fully-cement-grouted ribbed rockbolts.
The application of foam monolith catalyst coated with developed support materials to high pressure and short contact time CPOX reaction has been investigated, and we have succeeded in demonstrating the stable catalytic performance for 2000 h at 1.0 MPa and 500,000 h−1 GHSV.
Our study used materials from both developed and developing countries with varying investigation levels across the cohorts.
Ba0.5Sr0.5Co0.8Fe0.2O3−δ (BSCF), a material which can be used for the fabrication of oxygen membranes with developed surfaces, was synthesized by a solid state method.
Developing countries that supply goods and raw materials to developed country markets are paying significantly more (on account of direct costs and the cost of delays) than developed countries trading with other developed countries, thus fundamentally altering competitive conditions.
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