基本信息
王丕新 男 博导 长春应用化学研究所
电子邮件:pxwang@ciac.jl.cn
通信地址:长春市人民大街5625号
邮政编码:130022

研究领域

1.亲水性单体分散聚合方法;
2.无机/有机纳米复合两性智能凝胶的合成方法;
3.淀粉疏水改性方法及应用研究;
4.油田钻井用耐高温材料的合成及应用;
5.工业废水的处理方法、工艺及设备研究;
6.利用核磁方法研究固体、软物质材料的结构和分子动力学。

招生信息

   
招生专业
081704-应用化学
招生方向
高分子化学与物理

教育背景

1995-04--1998-03 东京工业大学 博士学位
1988-09--1991-07 中国科学院研究生院 硕士学位
1980-09--1984-07 吉林大学 学士学位
学历
东京工业大学 1995--1998 研究生毕业
学位
东京工业大学 1995--1998 博士
出国学习工作

1994-1998:日本东京工业大学高分子工学攻读博士学位;
1998-2002:日本国HYMO株式会社研究中心研究员。

工作经历

1984-1998:中国科学院长春应用化学研究所;
1998-2002:日本国HYMO株式会社研究中心;
2002-现在:中国科学院长春应用化学研究所。

合作情况

   
项目协作单位

1.大庆油田;
2.山东威海金钰环保科技有限公司;
3.上海安洁士石油化工有限公司;
4.长春百维实业有限公司。

指导学生

已指导学生

徐昆  博士研究生  070305-高分子化学与物理  

岳玉梅  博士研究生  070305-高分子化学与物理  

陈冬年  硕士研究生  070305-高分子化学与物理  

项盛  硕士研究生  070305-高分子化学与物理  

刘晓光  博士研究生  070305-高分子化学与物理  

杨青波  硕士研究生  070305-高分子化学与物理  

陈强  博士研究生  070305-高分子化学与物理  

谭颖  博士研究生  070305-高分子化学与物理  

现指导学生

安会勇  博士研究生  070305-高分子化学与物理  

李鹏翀  硕士研究生  070305-高分子化学与物理  

李文波  博士研究生  070305-高分子化学与物理  

李养令  硕士研究生  070305-高分子化学与物理  

路璀阁  博士研究生  070305-高分子化学与物理  

出版信息

   
发表论文
(1) Fabrication and characterization of nanostructured and pH sensitive interpenetrating networks hydrogel films and application in drug delivery field,European polymer Journal,
(2) Synthesis, Characterization, and Aqueous Solution Behavior of Copolymers of Acrylamide and Sodium 10-Acryloyloxydecanoate,Journal of Polymer Science: Part B: Polymer Physics,
(3) Dispersion Copolymerization of Acrylamide with Quaternary Ammonium Cationic Monomer in Aqueous Salts Solution,European polymer Journal,
(4) The Study on the Swelling Behaviors of Three-Component Copolymer (Starch Graft Sodium Acrylate and AMPS) Synthesized by Microwave Polymerization,Journal of Applied Polymer Science,
(5) Copolymerization of Acrylamide with Acrylic Acid in an Aqueous Solution of Ammonium Sulfate: Synthesis and Characterization,Journal of Applied Polymer Science,
(6) The Studies on Synthesis and Characterization of Dodecenyl Succinic Anhydride (DDSA) Starch,Food Reaserch International,
(7) Polyampholytes Superabsorbent Nanocomposites with Excellent Gel Intensity,Composites Science and Technology,
(8) The study on the synthesis and performance of superabsorbent nanocomposites with ionic monomer and MMT,Applied Clay Science,
(9) Preparation of Poly(acrylamide-co-acrylic acid) Aqueous Latex Dispersions using Anionic Polyelectrolyte as Stabilizer,Colloids and Surfaces A,
(10) Phase behaviour and self-assembly of Poly [N-vinylformamide-co-(acrylic acid)] copolymers under high acidic condition,Journal of Applied Polymer Science,
(11) Study on structure and molecular dynamics of starch/poly(sodium acrylate)-grafted superabsorbent by 13C solid state NMR,Fibers and Polymers,
(12) Properties of Acetylated Starch with Different Degree of Substitution,Food Chemistry,
(13) Preparation and Characterization of Interpenetration Polymer Network Films Based on Poly(vinyl alcohol) and Poly(acrylic acid) for Drug Delivery,Journal of Applied Polymer Science,
(14) Spontaneous volume transition of polyampholyte nanocomposite hydrogels,Journal of Colloid and Interface Science,
(15) The Effect of MMT/Modified MMT on the Structure and Performance of the Superabsorbent Composite,Polymer Bulletin,
(16) Low Cationic Proportion Ampholytic Polymer: Synthesis,Solution Properties and Interaction with Anionic Surfactant,Polymer Bulletin,
(17) Preparation of polyacrylamide aqueous dispersions using poly(sodium acrylic acid) as stabilizer,Journal of Applied Polymer Science,
(18) Preparation and characterization of cationic corn starch with a high degree of substitution in dioxane–THF–water media,Carbohydrate Research,
(19) Preparation and Characterization of Nanostructured and High Transparent Hydrogel Films with pH Sensitivity and Application,Journal of Applied Polymer Science,
(20) A novel hydrophobically associating polyampholytes of poly(AM/AA/AMQC12): preparation, characterization, and solution properties,Polym. Bull,2011,通讯作者
(21) Design and Fabrication of Fluorescein-Labelled Starch-Based Nanospheres,Carbohydrate Polymers,2011,通讯作者
(22) High Mechanical Strength and Rapid Response Rate of Poly(N-isopropyl acrylamide) Hydrogel Crosslinked by Starch-Based Nanospheres,Soft Matter,2010,通讯作者
(23) A robust route to fabricate starch esters vesicles,Chemical Communications,2010,通讯作者
(24) Starch Polycaprolactone Blends Compatibilized with Starch Modified Polyurethane,Chem. Res. Chinese Universities,2010,通讯作者
(25) A Novel Multi-responsive Polyampholyte Composite Hydrogel with Excellent Mechanical Strength and Rapid Shrinking Rate,Journal of Colloid and Interface Science,2010,通讯作者
(26) Fabrication and characterization of nanostructured and pH sensitive interpenetrating networks hydrogel films and application in drug delivery field,European polymer Journal,2009,通讯作者
(27) Preparation and characterization of poly (N-isopropylacrylamide)/polyvinylamine core-shell microgels,Colloid Polym Sci ,2009,通讯作者
(28) Preparation and characterization of cationic corn starch with a high degree of substitution in dioxane–THF–water media,Carbohydrate Research,2009,通讯作者
(29) Designing Starch-Based Nanospheres to Make Hydrogels with High Mechanical Strength,Macromolecular Materials and Engineering,2009,通讯作者
(30) Preparation and Characterization of Nanostructured and High Transparent Hydrogel Films with pH Sensitivity and Application,Journal of Applied Polymer Science,2009,通讯作者
(31) Preparation of polyacrylamide aqueous dispersions using poly(sodium acrylic acid) as stabilizer,Journal of Applied Polymer Science,2009,通讯作者
(32) Fabrication of Size-controlled Starch-based Nanospheres by Nanoprecipitation,ACS Appl. Mater. Interfaces,2009,通讯作者
发表著作
(1) 丙烯酰胺聚合物,化学工业出版社,2006-07

专利与奖励

   
奖励信息
(1) 油田用新型水处理剂及废弃物的高值化,三等奖,部委级,2010
专利成果
(1) 高分子分散液の製造方法,发明,专利号:特開 2002-114808
(2) 水溶性高分子分散液の製造方法,发明,专利号:特開 2001-253902
(3) アニオン性水溶性重合体分散液及びその製造方法,发明,专利号:特開2002-302521
(4) 高分子分散液及びその製造方法,发明,专利号:特開2002-246909
(5) 一种阳离子型水溶性高分子分散体,发明,专利号:ZL200510016972.0
(6) 一种水溶性高分子材料的合成方法,发明,专利号:ZL200510016971.6
(7) 一种水煤浆,发明,专利号:ZL200610016624.8
(8) 一种多功能可降解液体地膜,发明,专利号:ZL200610017265.8
(9) 风化煤接枝阳离子型水溶性高分子分散体的制备方法,发明,专利号:200610173384.2
(10) 一种复合压裂液的制备方法,发明,专利号:200610063700.0
(11) 一种接枝型压裂液及制备方法,发明,专利号:200610173388.0
(12) 一种耐盐增稠剂的制备方法,发明,专利号:ZL200610131697.1
(13) 一种全生物降解淀粉基材料及其制备方法,发明,专利号:200710056396.1
(14) 一种高凝胶强度、耐盐的两性离子型纳米复合水凝胶及制备方法,发明,专利号:200710056351.4
(15) 一种两性半互穿网络水凝胶及其制备方法,发明,专利号:200710056352.9
(16) 水溶性疏水缔合共聚物及其制备方法,发明,专利号:200710193544.4
(17) 一种重金属离子吸附膜及制备方法,发明,专利号:200710056397.6
(18) 一种耐温油井水泥降滤失剂及其制备方法,发明,专利号:200810051339.9
(19) 一种多孔淀粉的制备方法,发明,专利号:200810051601.x
(20) 多元共聚油井水泥降滤失剂及其制备方法,发明,专利号:200810051338.4