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Õã½´óѧ¸ß·Ö×Ó¿ÆÑ§Ó빤³Ìѧϵ½ÌÊÚ ÂÛÎÄˮƽָÊý ¡ª¡ª£¨½ØÖ¹2014.12.9£¬Êý¾ÝÀ´Ô´£ºscopus£© Êý¾Ý¼ûÏÂÃæÍ¼Æ¬ ±¸×¢£º1¡¢±¾ÁбíÖÐÖ»º¬Óи߷Ö×Ó¿ÆÑ§Ó빤³Ìѧϵ ½ÌÊÚµÄÃûµ¥£¨³ýÉòÖ®Üõ¡¢Éò¼Òæõ¡¢ÌƱ¾ÖÒÍ⣩£¬°²È«¸£ÀÏʦÔÝʱ»¹²»ÊǽÌÊÚ£¬µ«ËûÊÇÒ»¸ö¿ÎÌâ×é×鳤¹ÊÁÐÈëÆäÖУ¬ÁíÍâµÄ¸ß·Ö×ÓÃô¸Ð²ÄÁÏÑо¿¿ÎÌâ×éµÄÀîÑ︱½ÌÊÚµÄÊý¾ÝÄÑÒÔ·ÖÀ룬ÔÝδÁгö¡£×÷Õßµ¥Î»ÎªZhejiang University, Department of Polymer Science and Engineering, Hangzhou, China 2¡¢¶ÔÊý¾ÝÖеÄÍõÀûȺÀÏʦÊý¾Ý´æÒÉ£¬ÔÝʱ²»ÁгöÀ´ÁË 3¡¢h-index£ºHÖ¸ÊýµÄ¼ÆËã»ùÓÚÆäÑо¿ÕßµÄÂÛÎÄÊýÁ¿¼°ÆäÂÛÎı»ÒýÓõĴÎÊý¡£ºÕÏ£ÈÏΪ£ºÒ»¸öÈËÔÚÆäËùÓÐѧÊõÎÄÕÂÖÐÓÐNƪÂÛÎÄ·Ö±ð±»ÒýÓÃÁËÖÁÉÙN´Î£¬ËûµÄHÖ¸Êý¾ÍÊÇN¡£ÈçÃÀ¹úҮ³´óѧÃâÒßѧ¼ÒÀí²éµÂ•¸¥À´ÎÖ£¨Richard Flavell)·¢±íµÄ900ƪÎÄÕÂÖУ¬ ÓÐ107ƪ±»ÒýÓÃÁË107´ÎÒÔÉÏ£¬ËûµÄHÖ¸ÊýÊÇ107 4¡¢ÂÛÎÄÊý£º½ØÖ¹2014Äê12ÔÂ5ÈÕ£¬Ëù·¢±íµÄºÍÒѼû¿¯µÄÂÛÎÄÊ飬Êý¾ÝÀ´Ô´scopus£¬µ«ÆäÖпÉÄÜ»áÒòΪһЩÒòËØÓëʵ¼ÊÇé¿öÓÐÉÙÐí³öÈë 5¡¢Æ½¾ù±»Òý=×ܱ»Òý/ÂÛÎÄÊý£¬ËûÒý£ºÖ¸Åųý¸Ã×÷ÕßÎÄÕÂÖÐËùÓÐ×÷ÕߵįäËû²¢Î´³öÏÖÔÚ×÷ÕßÎÄÕÂÖеÄÒýÎÄ¡£ËûÒýÂÊ=ËûÒý/×ܱ»Òý 6¡¢first/Ä꣺ÔÚ¼ìË÷ÖÐÊÕ¼¯µ½µÄ×÷ÕßµÚһƪËù·¢±íÎÄÕµÄÄê·Ý£»Highest£ºÖ¸×÷ÕßËù·¢±íµÄËùÓе¥ÆªÎÄÕÂÖÐ×î¸ß±»ÒýÓôÎÊý ÏÂÃæÎªÏêϸÇé¿ö£¬ÆäÖÐ1-5Ϊ×÷Õßµ¥Æª±»Òý´ÎÊý×î¸ßµÄ5ƪÎÄÕ ¸ß·Ö×Ó¿ÆÑ§Ñо¿Ëù ÐÕÃû:ÐìÖ¾¿µXu Zhi-kang H-index:40 ÂÛÎÄÊý:269 ×ܱ»Òý´ÎÊý:5430 ƽ¾ùÿƪ±»Òý´ÎÊý:20.18 ÅųýËûÒýºóh-index:35 ËûÒý´ÎÊý:4228 ËûÒý±ÈÀý:0.7786 µÚһƪÎÄÕ·¢±íÄê·Ý:1993 µ¥Æª×î¸ß´ÎÊý:164 1¡¢Preparation and properties of the polyimide/multi-walled carbon nanotubes (MWNTs) nanocomposites 2¡¢Enzyme immobilization on electrospun polymer nanofibers: An overview 3¡¢Surface modification of polypropylene microporous membranes with a novel glycopolymer 4¡¢Nanofibrous poly(acrylonitrile-co-maleic acid) membranes functionalized with gelatin and chitosan for lipase immobilization 5¡¢Preparation and characterization of stable chitosan nanofibrous membrane for lipase immobilization Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7405426930 ÐÕÃû:Ö챦¿âZhu Bao-ku H-index:31 ÂÛÎÄÊý:214 ×ܱ»Òý´ÎÊý:3122 ƽ¾ùÿƪ±»Òý´ÎÊý:14.58 ÅųýËûÒýºóh-index:29 ËûÒý´ÎÊý:2796 ËûÒý±ÈÀý:0.8955 µÚһƪÎÄÕ·¢±íÄê·Ý:1997 µ¥Æª×î¸ß´ÎÊý:164 1¡¢Preparation and properties of the polyimide/multi-walled carbon nanotubes (MWNTs) nanocomposites 2¡¢Improving hydrophilicity and protein resistance of poly(vinylidene fluoride) membranes by blending with amphiphilic hyperbranched-star polymer 3¡¢A facile method of surface modification for hydrophobic polymer membranes based on the adhesive behavior of poly(DOPA) and poly(dopamine) 4¡¢Modification of porous poly(vinylidene fluoride) membrane using amphiphilic polymers with different structures in phase inversion process 5¡¢A study on formation of regular honeycomb pattern in polysulfone film Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=12798591300 ÐÕÃû:Ðì¾ýÍ¥Xu, Junting H-index:26 ÂÛÎÄÊý:182 ×ܱ»Òý´ÎÊý:2408 ƽ¾ùÿƪ±»Òý´ÎÊý:13.23 ÅųýËûÒýºóh-index:22 ËûÒý´ÎÊý:1753 ËûÒý±ÈÀý:0.7279 µÚһƪÎÄÕ·¢±íÄê·Ý:1994 µ¥Æª×î¸ß´ÎÊý:129 1¡¢Structure and properties of polypropylene/poly(ethylene-co-propylene) in-situ blends synthesized by spherical Ziegler-Natta catalyst 2¡¢Polyethylene/Maleic anhydride grafted polyethylene/organic-montmorillonite nanocomposites. I. Preparation, microstructure, and mechanical properties 3¡¢Micellar morphologies of poly(¦Å-caprolactone)-b-poly(ethylene oxide) block copolymers in water with a crystalline core 4¡¢Isothermal crystallization kinetics and melting behavior of poly(oxyethylene)-b-poly(oxybutylene)/poly(oxybutylene) blends 5¡¢Morphological confinement on crystallization in blends of poly(oxyethylene-block-oxybutylene) and poly(oxybutylene) Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7407008377 ÐÕÃû:·¶Ö¾Ç¿Fan, Zhiqiang H-index:27 ÂÛÎÄÊý:303 ×ܱ»Òý´ÎÊý:2675 ƽ¾ùÿƪ±»Òý´ÎÊý:8.82 ÅųýËûÒýºóh-index:21 ËûÒý´ÎÊý:1827 ËûÒý±ÈÀý:0.6829 µÚһƪÎÄÕ·¢±íÄê·Ý:1991 µ¥Æª×î¸ß´ÎÊý:129 1¡¢Structure and properties of polypropylene/poly(ethylene-co-propylene) in-situ blends synthesized by spherical Ziegler-Natta catalyst 2¡¢Micellar morphologies of poly(¦Å-caprolactone)-b-poly(ethylene oxide) block copolymers in water with a crystalline core 3¡¢Study on solvent permeation resistance properties of nylon6/clay nanocomposite 4¡¢Metallocene-catalyzed propene/1-hexene copolymerization: Influence of amount and bulkiness of cocatalyst and of solvent polarity 5¡¢Efficient activators for an iron catalyst in the polymerization of ethylene Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=55508275300 ÍõÆë Êý¾Ý²Î¿¼£ºhttp://polymer.zju.edu.cn/chines ... amp;object_id=54679 ÐÕÃû:½ÀèÃ÷Jiang, Liming H-index:13 ÂÛÎÄÊý:51 ×ܱ»Òý´ÎÊý:559 ƽ¾ùÿƪ±»Òý´ÎÊý:10.96 ÅųýËûÒýºóh-index:11 ËûÒý´ÎÊý:325 ËûÒý±ÈÀý:0.5813 µÚһƪÎÄÕ·¢±íÄê·Ý:1996 µ¥Æª×î¸ß´ÎÊý:59 1¡¢Synthesis and magnetic properties of novel poly(Schiff base)-Fe2+ complexes 2¡¢Syntheses and magnetic properties of novel complexes of polymer containing bithiazole ring and salicylic acid 3¡¢Synthesis and characterization of temperature responsive graft copolymers of dextran with poly(N-isopropylacrylamide) 4¡¢A novel bithiazole oligomer containing C60 and its ferro-complexes: Syntheses and magnetic properties 5¡¢A novel chemosensor based on Fe(III)-complexation for selective recognition and rapid detection of fluoride anions in aqueous media Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7403476107 ÐÕÃû:ËïάÁÖSun, Weilin H-index:19 ÂÛÎÄÊý:118 ×ܱ»Òý´ÎÊý:1405 ƽ¾ùÿƪ±»Òý´ÎÊý:11.9 ÅųýËûÒýºóh-index:16 ËûÒý´ÎÊý:971 ËûÒý±ÈÀý:0.6911 µÚһƪÎÄÕ·¢±íÄê·Ý:1996 µ¥Æª×î¸ß´ÎÊý:131 1¡¢Enhanced CO 2 absorption of poly(ionic liquid)s 2¡¢Poly(ionic liquid)s: A new material with enhanced and fast CO2 absorption 3¡¢Poly(ionic liquid)s as new materials for CO 2 absorption 4¡¢Low-pressure CO2 sorption in ammonium-based poly(ionic liquid)s 5¡¢Synthesis and magnetic properties of novel poly(Schiff base)-Fe2+ complexes Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7404011271 ÐÕÃû:ÍõÀûȺWang, Liqun£¨²Î¿¼Êý¾Ý£© H-index:10 ÂÛÎÄÊý:62 ×ܱ»Òý´ÎÊý:526 ƽ¾ùÿƪ±»Òý´ÎÊý:8.48 ÅųýËûÒýºóh-index:10 ËûÒý´ÎÊý:464 ËûÒý±ÈÀý:0.8821 µÚһƪÎÄÕ·¢±íÄê·Ý:1995 µ¥Æª×î¸ß´ÎÊý:87 1¡¢Surface functionalization of porous coordination nanocages via click chemistry and their application in drug delivery 2¡¢Micellization phenomena of amphiphilic block copolymers based on methoxy poly(ethylene glycol) and either crystalline or amorphous poly(caprolactone-b-lactide) 3¡¢In situ polymerization of starch with lactic acid in aqueous solution and the microstructure characterization 4¡¢Mild immobilization of diverse macromolecular bioactive agents onto multifunctional fibrous membranes prepared by coaxial electrospinning 5¡¢Synthesis and characterization of temperature responsive graft copolymers of dextran with poly(N-isopropylacrylamide) Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=8934231000# ÐÕÃû:ÇñÀûÑ×Qiu, Liyan H-index:21 ÂÛÎÄÊý:74 ×ܱ»Òý´ÎÊý:1429 ƽ¾ùÿƪ±»Òý´ÎÊý:19.31 ÅųýËûÒýºóh-index:20 ËûÒý´ÎÊý:1227 ËûÒý±ÈÀý:0.8586 µÚһƪÎÄÕ·¢±íÄê·Ý:2000 µ¥Æª×î¸ß´ÎÊý:268 1¡¢Polymer architecture and drug delivery 2¡¢Self-assembled polyethylenimine-graft-poly(¦Å-caprolactone) micelles as potential dual carriers of genes and anticancer drugs 3¡¢Biodegradable poly(¦Å-caprolactone)-poly(ethylene glycol) copolymers as drug delivery system 4¡¢Thermosensitive micelles self-assembled by novel N-isopropylacrylamide oligomer grafted polyphosphazene 5¡¢Self-assembled honokiol-loaded micelles based on poly(¦Å-caprolactone)-poly(ethylene glycol)-poly(¦Å-caprolactone) copolymer Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7201538036 ÐÕÃû:¶Å±õÑôDu, Binyang H-index:22 ÂÛÎÄÊý:95 ×ܱ»Òý´ÎÊý:1400 ƽ¾ùÿƪ±»Òý´ÎÊý:14.73 ÅųýËûÒýºóh-index:19 ËûÒý´ÎÊý:1075 ËûÒý±ÈÀý:0.7678 µÚһƪÎÄÕ·¢±íÄê·Ý:1999 µ¥Æª×î¸ß´ÎÊý:89 1¡¢Study of elastic modulus and yield strength of polymer thin films using atomic force microscopy 2¡¢Observation of inverted phases in poly(styrene-b-butadiene-b-styrene) triblock copolymer by solvent-induced order-disorder phase transition 3¡¢Swelling, elasticity, and spatial inhomogeneity of poly(N- isopropylacrylamide)/clay nanocomposite hydrogels 4¡¢Effect of low surface energy chain ends on the glass transition temperature of polymer thin films 5¡¢Study on the origin of inverted phase in drying solution-cast block copolymer films Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7102831583 ¸ß³¬ 1¡¢Hyperbranched polymers: From synthesis to applications 2¡¢Controlled Functionalization of Multiwalled Carbon Nanotubes by in Situ Atom Transfer Radical Polymerization 3¡¢Functionalization of multiwalled carbon nanotubes by atom transfer radical polymerization and defunctionalization of the products ²Î¿¼£ºhttp://polymer.zju.edu.cn/chines ... amp;object_id=10308 ÐÕÃû:°²È«¸£An, Quanfu H-index:21 ÂÛÎÄÊý:97 ×ܱ»Òý´ÎÊý:1147 ƽ¾ùÿƪ±»Òý´ÎÊý:11.82 ÅųýËûÒýºóh-index:15 ËûÒý´ÎÊý:745 ËûÒý±ÈÀý:0.649520488230166 µÚһƪÎÄÕ·¢±íÄê·Ý:2003 µ¥Æª×î¸ß´ÎÊý:42 1¡¢Synthesis and characterization of soluble chitosan/sodium carboxymethyl cellulose polyelectrolyte complexes and the pervaporation dehydration of their homogeneous membranes 2¡¢Polyelectrolyte complex membranes for pervaporation, nanofiltration and fuel cell applications 3¡¢Influence of polyvinyl alcohol on the surface morphology, separation and anti-fouling performance of the composite polyamide nanofiltration membranes 4¡¢Study on kinetics of controlled/living radical polymerization of acrylonitrile by RAFT technique 5¡¢Pervaporation dehydration of isopropanol using homogeneous polyelectrolyte complex membranes of poly(diallyldimethylammonium chloride)/sodium carboxymethyl cellulose Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=8643688100 ¸ß·Ö×Ó¸´ºÏ²ÄÁÏÑо¿Ëù ÐÕÃû:֣ǿZheng, Qiang H-index:29 ÂÛÎÄÊý:434 ×ܱ»Òý´ÎÊý:3968 ƽ¾ùÿƪ±»Òý´ÎÊý:9.14 ÅųýËûÒýºóh-index:25 ËûÒý´ÎÊý:3019 ËûÒý±ÈÀý:0.7608 µÚһƪÎÄÕ·¢±íÄê·Ý:1990 µ¥Æª×î¸ß´ÎÊý:127 1¡¢Calculating barrier properties of polymer/clay nanocomposites: Effects of clay layers 2¡¢Wrapping carbon nanotubes in pyrene-containing poly(phenylacetylene) chains: Solubility, stability, light emission, and surface photovoltaic properties 3¡¢Disubstituted polyacetylenes containing photopolymerizable vinyl groups and polar ester functionality: Polymer synthesis, aggregation-enhanced emission, and fluorescent pattern formation 4¡¢ 5¡¢Disubstituted polyacetylenes containing photopolymerizable vinyl groups and polar ester functionality: Polymer synthesis, aggregation-enhanced emission, and fluorescent pattern formation Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7401825747 ÐÕÃû:³ÂºìÕ÷Chen, Hongzheng H-index:29 ÂÛÎÄÊý:227 ×ܱ»Òý´ÎÊý:3291 ƽ¾ùÿƪ±»Òý´ÎÊý:14.49 ÅųýËûÒýºóh-index:26 ËûÒý´ÎÊý:2629 ËûÒý±ÈÀý:0.7988 µÚһƪÎÄÕ·¢±íÄê·Ý:1992 µ¥Æª×î¸ß´ÎÊý:150 1¡¢Air stable n-channel organic semiconductors for thin film transistors based on fluorinated derivatives of perylene diimides 2¡¢Superconductivity induced by Ni doping in BaFe2As2 single crystals 3¡¢Carbon Nanotube/CdS Core-Shell Nanowires Prepared by a Simple Room-Temperature Chemical Reduction Method 4¡¢Photoconductivity study of modified carbon nanotube/oxotitanium phthalocyanine composites 5¡¢Structure-property relationships for photoconduction in substituted polyacetylenes Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=8408772100 ÐÕÃû:ÍôãWang, Mang H-index:30 ÂÛÎÄÊý:272 ×ܱ»Òý´ÎÊý:3863 ƽ¾ùÿƪ±»Òý´ÎÊý:14.2 ÅųýËûÒýºóh-index:27 ËûÒý´ÎÊý:3123 ËûÒý±ÈÀý:0.8084 µÚһƪÎÄÕ·¢±íÄê·Ý:1990 µ¥Æª×î¸ß´ÎÊý:245 1¡¢Preparation and characterization of biodegradable chitosan/hydroxyapatite nanocomposite rods via in situ hybridization: A potential material as internal fixation of bone fracture 2¡¢Air stable n-channel organic semiconductors for thin film transistors based on fluorinated derivatives of perylene diimides 3¡¢Carbon Nanotube/CdS Core-Shell Nanowires Prepared by a Simple Room-Temperature Chemical Reduction Method 4¡¢Photoconductivity study of modified carbon nanotube/oxotitanium phthalocyanine composites 5¡¢Structure-property relationships for photoconduction in substituted polyacetylenes Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7406689711 ÐÕÃû:Ê©ÃôÃôShi, Minmin H-index:20 ÂÛÎÄÊý:113 ×ܱ»Òý´ÎÊý:1602 ƽ¾ùÿƪ±»Òý´ÎÊý:14.17 ÅųýËûÒýºóh-index:17 ËûÒý´ÎÊý:1315 ËûÒý±ÈÀý:0.8208 µÚһƪÎÄÕ·¢±íÄê·Ý:1997 µ¥Æª×î¸ß´ÎÊý:239 1¡¢Graphene-like two-dimensional materials 2¡¢Air stable n-channel organic semiconductors for thin film transistors based on fluorinated derivatives of perylene diimides 3¡¢Atomically monodispersed and fluorescent sub-nanometer gold clusters created by biomolecule-assisted etching of nanometer-sized gold particles and rods 4¡¢One-step fabrication of CdS nanorod arrays via solution chemistry 5¡¢Fluorinated Alq3 derivatives with tunable optical properties Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7201371015 ÐÕÃû:·½Õ÷ƽFang, Zhengping H-index:27 ÂÛÎÄÊý:186 ×ܱ»Òý´ÎÊý:2335 ƽ¾ùÿƪ±»Òý´ÎÊý:12.55 ÅųýËûÒýºóh-index:24 ËûÒý´ÎÊý:1945 ËûÒý±ÈÀý:0.8329 µÚһƪÎÄÕ·¢±íÄê·Ý:2000 µ¥Æª×î¸ß´ÎÊý:99 1¡¢Effect of a novel phosphorous-nitrogen containing intumescent flame retardant on the fire retardancy and the thermal behaviour of poly(butylene terephthalate) 2¡¢Fabrication of exfoliated graphene-based polypropylene nanocomposites with enhanced mechanical and thermal properties 3¡¢A novel intumescent flame retardant: Synthesis and application in ABS copolymer 4¡¢Functionalizing carbon nanotubes by grafting on intumescent flame retardant: nanocomposite synthesis, morphology, rheology, and flammability 5¡¢Effect of amino-functionalization of multi-walled carbon nanotubes on the dispersion with epoxy resin matrix Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7402681966 ÐÕÃû:ËÎÒ廢Song, Yihu H-index:21 ÂÛÎÄÊý:173 ×ܱ»Òý´ÎÊý:1615 ƽ¾ùÿƪ±»Òý´ÎÊý:9.33 ÅųýËûÒýºóh-index:17 ËûÒý´ÎÊý:1180 ËûÒý±ÈÀý:0.7306 µÚһƪÎÄÕ·¢±íÄê·Ý:1999 µ¥Æª×î¸ß´ÎÊý:127 1¡¢Calculating barrier properties of polymer/clay nanocomposites: Effects of clay layers 2¡¢Phase morphology and impact toughness of impact polypropylene copolymer 3¡¢Morphologies and properties of thermo-molded biodegradable plastics based on glycerol-plasticized wheat gluten 4¡¢Dynamic rheological properties of wheat flour dough and proteins 5¡¢Structure, morphology and non-isothermal crystallization behavior of polypropylene catalloys Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7404920820 ÐÕÃû:ÐìÃ÷ÉúXu, Mingsheng H-index:18 ÂÛÎÄÊý:67 ×ܱ»Òý´ÎÊý:1057 ƽ¾ùÿƪ±»Òý´ÎÊý:15.77 ÅųýËûÒýºóh-index:17 ËûÒý´ÎÊý:888 ËûÒý±ÈÀý:0.8401 µÚһƪÎÄÕ·¢±íÄê·Ý:2000 µ¥Æª×î¸ß´ÎÊý:239 1¡¢Graphene-like two-dimensional materials 2¡¢Perspectives and challenges of emerging single-molecule DNA sequencing technologies 3¡¢Graphene uniformly decorated with gold nanodots: In situ synthesis, enhanced dispersibility and applications 4¡¢Conductance of single thiolated poly(GC)-poly(GC) DNA molecules 5¡¢Production of extended single-layer graphene Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=23490960300 ÐÕÃû:ÀӨLi, Hanying H-index:20 ÂÛÎÄÊý:52 ×ܱ»Òý´ÎÊý:1138 ƽ¾ùÿƪ±»Òý´ÎÊý:21.88 ÅųýËûÒýºóh-index:18 ËûÒý´ÎÊý:992 ËûÒý±ÈÀý:0.8717 µÚһƪÎÄÕ·¢±íÄê·Ý:2002 µ¥Æª×î¸ß´ÎÊý:121 1¡¢Carbon Nanotube/CdS Core-Shell Nanowires Prepared by a Simple Room-Temperature Chemical Reduction Method 2¡¢Epitaxial ferroelectric Pb(Zr,Ti)O3 thin films on Si using SrTiO3 template layers 3¡¢Visualizing the 3D internal structure of calcite single crystals grown in agarose hydrogels 4¡¢High-mobility field-effect transistors from large-area solution-grown aligned C 60 single crystals 5¡¢A facile room-temperature chemical reduction method to TiO2@CdS core/sheath heterostructure nanowires Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=8528015100 ÉúÎïÒ½Óôó·Ö×ÓÑо¿Ëù ÐÕÃû:¸ß³¤ÓÐGao Chang-you H-index:46 ÂÛÎÄÊý:242 ×ܱ»Òý´ÎÊý:7180 ƽ¾ùÿƪ±»Òý´ÎÊý:29.66 ÅųýËûÒýºóh-index:42 ËûÒý´ÎÊý:5898 ËûÒý±ÈÀý:0.8214 µÚһƪÎÄÕ·¢±íÄê·Ý:1995 µ¥Æª×î¸ß´ÎÊý:340 1¡¢Collagen/chitosan porous scaffolds with improved biostability for skin tissue engineering 2¡¢Surface modification of polycaprolactone membrane via aminolysis and biomacromolecule immobilization for promoting cytocompatibility of human endothelial cells 3¡¢Surface modification and property analysis of biomedical polymers used for tissue engineering 4¡¢Cartilage tissue engineering PLLA scaffold with surface immobilized collagen and basic fibroblast growth factor 5¡¢Stability and mechanical properties of polyelectrolyte capsules obtained by stepwise assembly of poly(styrenesulfonate sodium salt) and poly(diallyldimethyl ammonium) chloride onto melamine resin particles Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7402617522 ÐÕÃû:ºúÇÉÁáHu, Qiaoling H-index:11 ÂÛÎÄÊý:84 ×ܱ»Òý´ÎÊý:672 ƽ¾ùÿƪ±»Òý´ÎÊý:8 ÅųýËûÒýºóh-index:9 ËûÒý´ÎÊý:531 ËûÒý±ÈÀý:0.7901 µÚһƪÎÄÕ·¢±íÄê·Ý:2001 µ¥Æª×î¸ß´ÎÊý:245 1¡¢Preparation and characterization of biodegradable chitosan/hydroxyapatite nanocomposite rods via in situ hybridization: A potential material as internal fixation of bone fracture 2¡¢Long-term fluorescent cellular tracing by the aggregates of AIE bioconjugates 3¡¢In situ hybridization to chitosan/magnetite nanocomposite induced by the magnetic field 4¡¢Preparation and structure of chitosan soluble in wide pH range 5¡¢Bioabsorbable chitosan/hydroxyapatite composite rod prepared by in-situ precipitation for internal fixation of bone fracture Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7403214834 ÐÕÃû:¼Æ½£Ji,Jian H-index:30 ÂÛÎÄÊý:240 ×ܱ»Òý´ÎÊý:3204 ƽ¾ùÿƪ±»Òý´ÎÊý:13.35 ÅųýËûÒýºóh-index:26 ËûÒý´ÎÊý:2619 ËûÒý±ÈÀý:0.8174 µÚһƪÎÄÕ·¢±íÄê·Ý:1997 µ¥Æª×î¸ß´ÎÊý:205 1¡¢Construction of anti-adhesive and antibacterial multilayer films via layer-by-layer assembly of heparin and chitosan 2¡¢Fabrication of a superhydrophobic surface from the amplified exponential growth of a multilayer 3¡¢Construction and enzymatic degradation of multilayered poly-L-lysine/DNA films 4¡¢Constructing thromboresistant surface on biomedical stainless steel via layer-by-layer deposition anticoagulant 5¡¢Novel biomimetic polymersomes as polymer therapeutics for drug delivery Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7201361932 ÐÕÃû:Ëï¾°Ö¾Sun, Jingzhi H-index:29 ÂÛÎÄÊý:171 ×ܱ»Òý´ÎÊý:3237 ƽ¾ùÿƪ±»Òý´ÎÊý:18.92 ÅųýËûÒýºóh-index:26 ËûÒý´ÎÊý:2421 ËûÒý±ÈÀý:0.7479 µÚһƪÎÄÕ·¢±íÄê·Ý:1998 µ¥Æª×î¸ß´ÎÊý:167 1¡¢Specific detection of D-glucose by a tetraphenylethene-based fluorescent sensor 2¡¢Carbon Nanotube/CdS Core-Shell Nanowires Prepared by a Simple Room-Temperature Chemical Reduction Method 3¡¢Wrapping carbon nanotubes in pyrene-containing poly(phenylacetylene) chains: Solubility, stability, light emission, and surface photovoltaic properties 4¡¢Polytriazoles with aggregation-induced emission characteristics: Synthesis by click polymerization and application as explosive chemosensors 5¡¢Tunable aggregation-induced emission of diphenyldibenzofulvenes Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7410370115 ÐÕÃû:ÂíÁÐMa, Lie H-index:22 ÂÛÎÄÊý:63 ×ܱ»Òý´ÎÊý:1309 ƽ¾ùÿƪ±»Òý´ÎÊý:20.77 ÅųýËûÒýºóh-index:17 ËûÒý´ÎÊý:1076 ËûÒý±ÈÀý:0.822 µÚһƪÎÄÕ·¢±íÄê·Ý:1997 µ¥Æª×î¸ß´ÎÊý:340 1¡¢Collagen/chitosan porous scaffolds with improved biostability for skin tissue engineering 2¡¢Enhanced biological stability of collagen porous scaffolds by using amino acids as novel cross-linking bridges 3¡¢Preformed microcapsules for loading and sustained release of ciprofloxacin hydrochloride 4¡¢The gene transfection efficiency of thermoresponsive N,N,N-trimethyl chitosan chloride-g-poly(N-isopropylacrylamide) copolymer 5¡¢Layer by layer chitosan/alginate coatings on poly(lactide-co-glycolide) nanoparticles for antifouling protection and Folic acid binding to achieve selective cell targeting Êý¾ÝÀ´Ô´http://www.scopus.com/authid/detail.url?authorId=7403574654 PS1£ºÕã½´óѧ¸ß·Ö×Ó¸÷Ñо¿¿ÎÌâ×é¼ò½éhttp://polymer.zju.edu.cn/chines ... amp;object_id=25379 PS2£º¸½¼þÖи½ÓÐpdfÎĵµºÍxlsxÎĵµ¡£ ÎÄÖÐËùÓÐÊý¾Ý¾ùÀ´×Ôscopus£¬¿ÉÄÜÓÉÓÚ¼ìË÷ÔÒò£¬ÓÐÊý¾ÝÓгöÈë¡£ Make Science Visible |
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