The Experts below are selected from a list of 270 Experts worldwide ranked by ideXlab platform
Jun Wang - One of the best experts on this subject based on the ideXlab platform.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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polyoxometalate based Phase Transfer Catalysis for liquid solid organic reactions a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions is summarized in this review.
Yu Zhou - One of the best experts on this subject based on the ideXlab platform.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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polyoxometalate based Phase Transfer Catalysis for liquid solid organic reactions a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions is summarized in this review.
Qian Wang - One of the best experts on this subject based on the ideXlab platform.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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polyoxometalate based Phase Transfer Catalysis for liquid solid organic reactions a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions is summarized in this review.
Wenhua Hou - One of the best experts on this subject based on the ideXlab platform.
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polyoxometalate based Phase Transfer Catalysis for liquid solid organic reactions a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions is summarized in this review.
Zengjing Guo - One of the best experts on this subject based on the ideXlab platform.
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polyoxometalate based Phase Transfer Catalysis for liquid solid organic reactions a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Phase Transfer Catalysis combines the advantages of homogeneous and heterogeneous catalysts and therefore attracts ever-growing interest for environmentally-friendly sustainable processes. Polyoxometalates (POMs) are a class of molecular metal oxides showing numerous applications in various catalytic processes due to their unique acid/base and redox features. The tunable molecular structures of POM anions and countercations bring about facile adjusting of POMs' physical and chemical properties including solubility, through which many POM-based Phase Transfer catalysts are fabricated, such as reaction-controlled, temperature-responsive and photo-sensitive Phase Transfer catalysts. This mini-review summarizes the recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions.
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Polyoxometalate-based Phase Transfer Catalysis for liquid–solid organic reactions: a review
Catalysis Science & Technology, 2015Co-Authors: Yu Zhou, Qian Wang, Zengjing Guo, Wenhua Hou, Jun WangAbstract:Recent progress in POM-based Phase Transfer Catalysis for liquid–solid organic reactions is summarized in this review.