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| Photocatalytic material having the active center of the bimetal and to study its photocatalytic activity in three different organic synthesis reactions, and explore the mechanism of action of the material in the catalytic redox system, visible after the modification of the transition metal ion, and ultimately to guide the designsynthesis of high efficiency and high selectivity, visible light photocatalytic material response. This project is not only a new way for the development of efficient new visible light photocatalytic material, and to explore the application of materials in organic synthesis, expand the practical application |
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»ñµÃ¾ßÓÐË«½ðÊô»îÐÔÖÐÐĵĹâ´ß»¯²ÄÁÏ£¬²¢Ñо¿ÆäÔÚÈýÖÖ²»Í¬ÓлúºÏ³É·´Ó¦ÖеĹâ´ß»¯»îÐÔ£¬Ì½Ë÷¹ý¶É½ðÊôÀë×ÓÐÞÊκóµÄ²ÄÁÏÔڿɼû¹â´ß»¯Ñõ»¯»¹ÔÌåϵÖеÄ×÷ÓûúÖÆ£¬×îÖÕÀ´Ö¸µ¼Éè¼ÆºÏ³É¸ßЧ¸ßÑ¡ÔñÐԵġ¢¿É¼û¹âÏìÓ¦µÄµÄ¹â´ß»¯²ÄÁÏ¡£±¾ÏîÄ¿²»½öΪ¿ª·¢¸ßЧÐÂÐͿɼû¹â¹â´ß»¯²ÄÁÏÌṩÁËÒ»ÌõÕ¸ÐÂ;¾¶£¬¶øÇÒ̽Ë÷Á˲ÄÁÏÔÚÓлúºÏ³ÉÀïµÄÓ¦Óã¬ÍØÕ¹ÁËʵ¼ÊÓ¦ÓᣠA photocatalytic material possessing a bi-metallic active center was prepared, its photocatalytic activity in three types of organic synthesis reactions were investigated, and the mechnisms behind the function of transition-metal-ion-modified photocatalysts in visible-light-driven photocatalytic re-dox systems were also explored. This study can contribute to the design of highly selective and visible-light-responsive photocatalysts. Furthermore, this project provides a new avenue for development of new visible-light-responsive photocatalysts and broadens the application of this type of material in organic synthesis. |

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