Porous PdIrH alloy nano-network catalyst with three-dimensional frame structure as well as high-throughput preparation method and application of porous PdIrH alloy nano-network catalyst
The invention discloses a porous PdIrH alloy nano-network catalyst with a three-dimensional frame structure as well as a high-throughput preparation method and application of the porous PdIrH alloy nano-network catalyst. Palladium inorganic salt and iridium inorganic salt are used as precursors, sod...
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creator | HUANG QIUZI XIAO JIAYI LIU QICHENG FU GENGTAO ZENG XIN WANG RUOTONG ZHANG BAIYU LIU QINYI ZHANG SHOULIN TANG YAWEN NING SHUWANG |
description | The invention discloses a porous PdIrH alloy nano-network catalyst with a three-dimensional frame structure as well as a high-throughput preparation method and application of the porous PdIrH alloy nano-network catalyst. Palladium inorganic salt and iridium inorganic salt are used as precursors, sodium cyanoborohydride is used as a reducing agent, and the porous PdIrH alloy nano-network catalyst with a three-dimensional frame structure can be obtained at room temperature. The method has the advantages of simple operation process, easy synthesis, easy removal of by-products, centrifugal washing with deionized water, low energy consumption and high safety. In addition, the porous PdIrH alloy nano-network catalyst with the three-dimensional frame structure is uniform in morphology and high in purity, and hundred milligram-level high-throughput preparation can be achieved. Due to the fact that the specific surface area caused by the multi-mesoporous channel structure is large, more reaction active sites can be ex |
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Palladium inorganic salt and iridium inorganic salt are used as precursors, sodium cyanoborohydride is used as a reducing agent, and the porous PdIrH alloy nano-network catalyst with a three-dimensional frame structure can be obtained at room temperature. The method has the advantages of simple operation process, easy synthesis, easy removal of by-products, centrifugal washing with deionized water, low energy consumption and high safety. In addition, the porous PdIrH alloy nano-network catalyst with the three-dimensional frame structure is uniform in morphology and high in purity, and hundred milligram-level high-throughput preparation can be achieved. 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Palladium inorganic salt and iridium inorganic salt are used as precursors, sodium cyanoborohydride is used as a reducing agent, and the porous PdIrH alloy nano-network catalyst with a three-dimensional frame structure can be obtained at room temperature. The method has the advantages of simple operation process, easy synthesis, easy removal of by-products, centrifugal washing with deionized water, low energy consumption and high safety. In addition, the porous PdIrH alloy nano-network catalyst with the three-dimensional frame structure is uniform in morphology and high in purity, and hundred milligram-level high-throughput preparation can be achieved. Due to the fact that the specific surface area caused by the multi-mesoporous channel structure is large, more reaction active sites can be ex</abstract><oa>free_for_read</oa></addata></record> |
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subjects | BASIC ELECTRIC ELEMENTS ELECTRICITY MANUFACTURE OR TREATMENT OF NANOSTRUCTURES MEASUREMENT OR ANALYSIS OF NANOSTRUCTURES NANOTECHNOLOGY PERFORMING OPERATIONS PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY SPECIFIC USES OR APPLICATIONS OF NANOSTRUCTURES TRANSPORTING |
title | Porous PdIrH alloy nano-network catalyst with three-dimensional frame structure as well as high-throughput preparation method and application of porous PdIrH alloy nano-network catalyst |
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