The Experts below are selected from a list of 259812 Experts worldwide ranked by ideXlab platform
Yen Wei - One of the best experts on this subject based on the ideXlab platform.
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renewable itaconic acid based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Yang Yang, Yen WeiAbstract:A renewable cross-linked fluorescent amphiphilic polymer was facilely fabricated from a new aggregation induced emission monomer and biobased itaconic acid via free radical polymerization. This amphiphilic polymer was prone to self-assemble into nanoparticles with high water dispersibility, low critical miCelle concentration, bright red fluorescence, and exCellent biocompatibility for Cell Imaging.
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polymerizable aggregation induced emission dye based fluorescent nanoparticles for Cell Imaging applications
Polymer Chemistry, 2014Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:A polymerizable aggregation-induced emission (AIE) dye (named PhE) was facilely incorporated into polymer nanoparticles through reversible addition fragmentation chain transfer polymerization. The thus obtained fluorescent organic nanoparticles showed uniform size, high water dispersibility, strong fluorescence and exCellent biocompatibility, and are expected to show great potential for Cell Imaging applications.
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a novel method for preparing aie dye based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Junfeng Hui, Yen WeiAbstract:An aggregation induced emission dye (PhENH2) with vinyl and amino end-groups was facilely incorporated into stable cross-linked fluorescent polymeric nanoparticles (FPNs) via reversible addition–fragmentation chain transfer polymerization and subsequent ring-opening condensation. Thus obtained FPNs showed high water dispersibility, uniform size, strong fluorescence, and exCellent biocompatibility, making them promising for Cell Imaging applications.
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cross linkable aggregation induced emission dye based red fluorescent organic nanoparticles and their Cell Imaging applications
Polymer Chemistry, 2013Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Yen WeiAbstract:A cross-linkable aggregation induced emission (AIE) dye (named as R-E) with two vinyl end groups was facilely incorporated into polymer nanoparticles through reversible addition–fragmentation chain transfer polymerization. Thus obtained polymeric nanoparticles showed uniform size, high water dispersibility, strong red fluorescence and exCellent biocompatibility, making them promising for Cell Imaging applications.
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facile fabrication and Cell Imaging applications of aggregation induced emission dye based fluorescent organic nanoparticles
Polymer Chemistry, 2013Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:Aggregation-induced emission (AIE) dye-based fluorescent organic nanoparticles (FONs) were prepared via Schiff base interactions between an AIE dye and a carbohydrate polymer (carboxymethyl chitosan). The obtained FONs with uniform size, high water dispersibility, strong fluorescence and high biocompatibility were explored for Cell Imaging applications.
Xiaoyong Zhang - One of the best experts on this subject based on the ideXlab platform.
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renewable itaconic acid based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Yang Yang, Yen WeiAbstract:A renewable cross-linked fluorescent amphiphilic polymer was facilely fabricated from a new aggregation induced emission monomer and biobased itaconic acid via free radical polymerization. This amphiphilic polymer was prone to self-assemble into nanoparticles with high water dispersibility, low critical miCelle concentration, bright red fluorescence, and exCellent biocompatibility for Cell Imaging.
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polymerizable aggregation induced emission dye based fluorescent nanoparticles for Cell Imaging applications
Polymer Chemistry, 2014Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:A polymerizable aggregation-induced emission (AIE) dye (named PhE) was facilely incorporated into polymer nanoparticles through reversible addition fragmentation chain transfer polymerization. The thus obtained fluorescent organic nanoparticles showed uniform size, high water dispersibility, strong fluorescence and exCellent biocompatibility, and are expected to show great potential for Cell Imaging applications.
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a novel method for preparing aie dye based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Junfeng Hui, Yen WeiAbstract:An aggregation induced emission dye (PhENH2) with vinyl and amino end-groups was facilely incorporated into stable cross-linked fluorescent polymeric nanoparticles (FPNs) via reversible addition–fragmentation chain transfer polymerization and subsequent ring-opening condensation. Thus obtained FPNs showed high water dispersibility, uniform size, strong fluorescence, and exCellent biocompatibility, making them promising for Cell Imaging applications.
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cross linkable aggregation induced emission dye based red fluorescent organic nanoparticles and their Cell Imaging applications
Polymer Chemistry, 2013Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Yen WeiAbstract:A cross-linkable aggregation induced emission (AIE) dye (named as R-E) with two vinyl end groups was facilely incorporated into polymer nanoparticles through reversible addition–fragmentation chain transfer polymerization. Thus obtained polymeric nanoparticles showed uniform size, high water dispersibility, strong red fluorescence and exCellent biocompatibility, making them promising for Cell Imaging applications.
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facile fabrication and Cell Imaging applications of aggregation induced emission dye based fluorescent organic nanoparticles
Polymer Chemistry, 2013Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:Aggregation-induced emission (AIE) dye-based fluorescent organic nanoparticles (FONs) were prepared via Schiff base interactions between an AIE dye and a carbohydrate polymer (carboxymethyl chitosan). The obtained FONs with uniform size, high water dispersibility, strong fluorescence and high biocompatibility were explored for Cell Imaging applications.
Xiqi Zhang - One of the best experts on this subject based on the ideXlab platform.
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renewable itaconic acid based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Yang Yang, Yen WeiAbstract:A renewable cross-linked fluorescent amphiphilic polymer was facilely fabricated from a new aggregation induced emission monomer and biobased itaconic acid via free radical polymerization. This amphiphilic polymer was prone to self-assemble into nanoparticles with high water dispersibility, low critical miCelle concentration, bright red fluorescence, and exCellent biocompatibility for Cell Imaging.
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polymerizable aggregation induced emission dye based fluorescent nanoparticles for Cell Imaging applications
Polymer Chemistry, 2014Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:A polymerizable aggregation-induced emission (AIE) dye (named PhE) was facilely incorporated into polymer nanoparticles through reversible addition fragmentation chain transfer polymerization. The thus obtained fluorescent organic nanoparticles showed uniform size, high water dispersibility, strong fluorescence and exCellent biocompatibility, and are expected to show great potential for Cell Imaging applications.
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a novel method for preparing aie dye based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Junfeng Hui, Yen WeiAbstract:An aggregation induced emission dye (PhENH2) with vinyl and amino end-groups was facilely incorporated into stable cross-linked fluorescent polymeric nanoparticles (FPNs) via reversible addition–fragmentation chain transfer polymerization and subsequent ring-opening condensation. Thus obtained FPNs showed high water dispersibility, uniform size, strong fluorescence, and exCellent biocompatibility, making them promising for Cell Imaging applications.
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cross linkable aggregation induced emission dye based red fluorescent organic nanoparticles and their Cell Imaging applications
Polymer Chemistry, 2013Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Yen WeiAbstract:A cross-linkable aggregation induced emission (AIE) dye (named as R-E) with two vinyl end groups was facilely incorporated into polymer nanoparticles through reversible addition–fragmentation chain transfer polymerization. Thus obtained polymeric nanoparticles showed uniform size, high water dispersibility, strong red fluorescence and exCellent biocompatibility, making them promising for Cell Imaging applications.
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facile fabrication and Cell Imaging applications of aggregation induced emission dye based fluorescent organic nanoparticles
Polymer Chemistry, 2013Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:Aggregation-induced emission (AIE) dye-based fluorescent organic nanoparticles (FONs) were prepared via Schiff base interactions between an AIE dye and a carbohydrate polymer (carboxymethyl chitosan). The obtained FONs with uniform size, high water dispersibility, strong fluorescence and high biocompatibility were explored for Cell Imaging applications.
Bin Yang - One of the best experts on this subject based on the ideXlab platform.
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renewable itaconic acid based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Yang Yang, Yen WeiAbstract:A renewable cross-linked fluorescent amphiphilic polymer was facilely fabricated from a new aggregation induced emission monomer and biobased itaconic acid via free radical polymerization. This amphiphilic polymer was prone to self-assemble into nanoparticles with high water dispersibility, low critical miCelle concentration, bright red fluorescence, and exCellent biocompatibility for Cell Imaging.
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polymerizable aggregation induced emission dye based fluorescent nanoparticles for Cell Imaging applications
Polymer Chemistry, 2014Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:A polymerizable aggregation-induced emission (AIE) dye (named PhE) was facilely incorporated into polymer nanoparticles through reversible addition fragmentation chain transfer polymerization. The thus obtained fluorescent organic nanoparticles showed uniform size, high water dispersibility, strong fluorescence and exCellent biocompatibility, and are expected to show great potential for Cell Imaging applications.
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a novel method for preparing aie dye based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Junfeng Hui, Yen WeiAbstract:An aggregation induced emission dye (PhENH2) with vinyl and amino end-groups was facilely incorporated into stable cross-linked fluorescent polymeric nanoparticles (FPNs) via reversible addition–fragmentation chain transfer polymerization and subsequent ring-opening condensation. Thus obtained FPNs showed high water dispersibility, uniform size, strong fluorescence, and exCellent biocompatibility, making them promising for Cell Imaging applications.
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cross linkable aggregation induced emission dye based red fluorescent organic nanoparticles and their Cell Imaging applications
Polymer Chemistry, 2013Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Yen WeiAbstract:A cross-linkable aggregation induced emission (AIE) dye (named as R-E) with two vinyl end groups was facilely incorporated into polymer nanoparticles through reversible addition–fragmentation chain transfer polymerization. Thus obtained polymeric nanoparticles showed uniform size, high water dispersibility, strong red fluorescence and exCellent biocompatibility, making them promising for Cell Imaging applications.
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facile fabrication and Cell Imaging applications of aggregation induced emission dye based fluorescent organic nanoparticles
Polymer Chemistry, 2013Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:Aggregation-induced emission (AIE) dye-based fluorescent organic nanoparticles (FONs) were prepared via Schiff base interactions between an AIE dye and a carbohydrate polymer (carboxymethyl chitosan). The obtained FONs with uniform size, high water dispersibility, strong fluorescence and high biocompatibility were explored for Cell Imaging applications.
Meiying Liu - One of the best experts on this subject based on the ideXlab platform.
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polymerizable aggregation induced emission dye based fluorescent nanoparticles for Cell Imaging applications
Polymer Chemistry, 2014Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:A polymerizable aggregation-induced emission (AIE) dye (named PhE) was facilely incorporated into polymer nanoparticles through reversible addition fragmentation chain transfer polymerization. The thus obtained fluorescent organic nanoparticles showed uniform size, high water dispersibility, strong fluorescence and exCellent biocompatibility, and are expected to show great potential for Cell Imaging applications.
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a novel method for preparing aie dye based cross linked fluorescent polymeric nanoparticles for Cell Imaging
Polymer Chemistry, 2014Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Junfeng Hui, Yen WeiAbstract:An aggregation induced emission dye (PhENH2) with vinyl and amino end-groups was facilely incorporated into stable cross-linked fluorescent polymeric nanoparticles (FPNs) via reversible addition–fragmentation chain transfer polymerization and subsequent ring-opening condensation. Thus obtained FPNs showed high water dispersibility, uniform size, strong fluorescence, and exCellent biocompatibility, making them promising for Cell Imaging applications.
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cross linkable aggregation induced emission dye based red fluorescent organic nanoparticles and their Cell Imaging applications
Polymer Chemistry, 2013Co-Authors: Xiqi Zhang, Xiaoyong Zhang, Bin Yang, Meiying Liu, Zhenguo Chi, Siwei Liu, Yen WeiAbstract:A cross-linkable aggregation induced emission (AIE) dye (named as R-E) with two vinyl end groups was facilely incorporated into polymer nanoparticles through reversible addition–fragmentation chain transfer polymerization. Thus obtained polymeric nanoparticles showed uniform size, high water dispersibility, strong red fluorescence and exCellent biocompatibility, making them promising for Cell Imaging applications.
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facile fabrication and Cell Imaging applications of aggregation induced emission dye based fluorescent organic nanoparticles
Polymer Chemistry, 2013Co-Authors: Xiaoyong Zhang, Xiqi Zhang, Bin Yang, Meiying Liu, Wanyun Liu, Yiwang Chen, Yen WeiAbstract:Aggregation-induced emission (AIE) dye-based fluorescent organic nanoparticles (FONs) were prepared via Schiff base interactions between an AIE dye and a carbohydrate polymer (carboxymethyl chitosan). The obtained FONs with uniform size, high water dispersibility, strong fluorescence and high biocompatibility were explored for Cell Imaging applications.
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aggregation induced emission material based fluorescent organic nanoparticles facile pegylation and Cell Imaging applications
RSC Advances, 2013Co-Authors: Xiaoyong Zhang, Shiqi Wang, Lei Tao, Xiqi Zhang, Bin Yang, Meiying Liu, Yun Zhang, Yen WeiAbstract:Aggregation-induced emission (AIE) dye was facilely incorporated into poly(stearyl methacrylate-co-poly(ethylene glycol) methacrylate) copolymers leading to the formation of PEGylated AIE-based fluorescent organic nanoparticles (FONs). The utilization of such FONs for Cell Imaging applications was further explored.