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文献检索.docx

1、文献检索计算机检索中文打开IE图书信息河北联合大学主校区CNKI(本地)跨库检索高级检索(关键词聚氨酯)并且(关键词氧化锡)(一)【篇名】;原位聚合制备纳米氧化锡锑/水性聚氨酯复合乳液及性能表征【英文篇名】:ATO/WPU Nano-Composite Emulsion Prepared by In-Stiu Emulsion Polymerization and Performance Characterization【作者中文名】:芦小松; 项尚林; 赵石林;【作者英文名】:Lu Xiaosong; Xiang Shanglin; Zhao Shilin(Nanjing Universit

2、y of Technology【作者单位】:南京工业大学材料化学国家重点实验室;【文献出处】:涂料工业, Paint & Coatings Industry, 编辑部邮箱 2008年 12期 期刊荣誉:中State Key Laboratory of Materials-Oriented Chemical Engineering; Nanjing 210009; China);文核心期刊要目总览 ASPT来源刊 中国期刊方阵 CJFD收录刊【关键词】:原位聚合; 水性聚氨酯; 红外屏蔽; 纳米复合乳液;【英文关键词】:in-stiu polymerization; WPU; near infr

3、ared shield; nano-composite emulsion;【摘要】:以异佛尔酮二异氰酸酯(IPDI)、聚己二酸丁二醇酯(PBA1000)、二羟甲基丙酸(DMPA)等原料合成了水性聚氨酯(WPU),并通过原位聚合法将纳米ATO水浆与WPU复合,合成了纳米ATO/WPU复合乳液。研究了不同ATO含量对复合乳液光学性能的影响,并通过红外光谱、透射电镜、热分析仪等对乳液的热性能以及微观结构等进行了表征。实验结果表明,当纳米ATO/WPU复合乳液中ATO质量含量为6%时,可见光平均透过率为81.5%,红外光平均屏蔽率高达73.7%。乳液的热性能优异,且纳米ATO粒子在乳液中分布均匀。【英

4、文摘要】:The title waterborne polyurethane(WPU) was synthesized with IPDI,PBA1000,DMPA,etc,which was then hybrided with nanosized antimony coated tin oxide(ATO) suspension to prepare ATO/WPU nano-composite emulsion by in-situ emulsion polymerization.The influence of different contents of ATO on the opti

5、cal property of the emulsion was discussed.TG-DTA and TEM were applied to characterize the thermal property of the emulsion as well as the micro-structure.It was found that when the ATO/WPU nano-composite emulsion con.【DOI】:CNKI:SUN:TLGY.0.2008-12-006(二)【篇名】:仿生微模塑制备超疏水半透明隔热ATO/PU复合 【英文篇名】:Fabricatio

6、n of Semitransparent,Heat-insulating and Superhydrophobic ATO/PU Composite Films by Biomimetic Micromolding【作者中文名】:冯杰; 黄宝元; 钟明强;【作者英文名】:FENG Jie; HUANG Bao-yuan; ZHONG Ming-qiang (College of Chemical Engineering and Materials Science; Zhejiang University of Technology; Hangzhou 310014; China);【作者单位】

7、:浙江工业大学化学工程与材料学院;【文献出处】高校化学工程学报, Journal of Chemical Engineering of Chinese Universities, 编辑部邮箱 2010年 01期 期刊荣誉:中文核心期刊要目总览 ASPT来源刊 中国期刊方阵 CJFD收录刊【关键词】:掺锑二氧化锡; 水性聚氨酯; 隔热膜; 超疏水; 仿生微模塑;【英文关键词】:ATO (Antimony doped tin oxide); waterborne polyurethane; heat-insulating film; superhydrophobic; biomimetic mic

8、romolding.;【摘要】掺锑二氧化锡(ATO)基透明隔热涂层或贴膜是一种节能新材料,但其表面不耐脏,超疏水化可解决此问题。今在聚二甲基硅氧烷(PDMS)软模板上,采用溶液浇注微模塑法制得了不同ATO含量的ATO/水性聚氨酯(WPU)复合功能膜,其水静态接触角达(151.32.1),水滴在膜表面极易滚落,同时具有优良的隔热性能和半透明性。扫描电子显微镜(SEM)表征了薄膜表面微结构,发现ATO纳米粒子的加入,使得微米级乳突表面及乳突之间布满纳米级小凸起,这种微米结构和纳米结构相结合的二阶结构,与天然荷叶表面极其相似,是引起隔热薄膜表面超疏水的主要原因。研究结果为规模制备半透明隔热自清洁聚氨

9、酯薄膜提供了理论和实验依据。【英文摘要】:Transparent and thermal insulation coating or film based on antimony doped tin oxide (ATO) nano particle is a new kind of energy-saving material. However, its surface is often contaminated easily, and the surface superhydrophobic modification can solve this problem. In this stud

10、y, ATO/Polyurethane (ATO/PU) composite film with different ATO% contents were micromolded by casting nanodispersed ATO/waterborne PU suspensions on poly(dimethylsiloxane) (PDMS) templates replicated from fresh lotus leaves. Surface t.【基金】:浙江省自然科学基金(Y407256); 浙江省“钱江人才”计划(2007R10005); 浙江省重大科技专项(008C11

11、117)资助【DOI】:CNKI:SUN:GXHX.0.2010-01-026(三)【篇名】:锑掺杂二氧化锡纳米粉体的改性及在涂料中的应用【英文篇名】:Modification of antimony-doped tin dioxide(ATO)powders and its application for the nanocomposite coatings【作者中文名】:刘蕤;【作者英文名】:Liu Rui(College of Chemical and Environmental Engineering; Shaoguan University; Shaoguan 512005);【作者

12、单位】:韶关学院化学与环境工程学院;【文献出处】:化工新型材料, New Chemical Materials, 编辑部邮箱 2009年 01期 期刊荣誉:中文核心期刊要目总览 ASPT来源刊 CJFD收录刊【关键词】:水性聚氨酯; 纳米ATO; 表面改性; 隔热性;【英文关键词】:waterborne polyurethane; nano-ATO; surface modification; heat insulation;【摘要】:利用硅烷偶联剂、醇、油酸钠及自制高分子表面活性剂对锑掺杂二氧化锡纳米粉体(ATO)进行表面处理,研究了不同改性剂对粉体分散性的影响。以改性纳米ATO分散浆料和水

13、性聚氨酯为原料,采用共混法制备了纳米复合涂料,并对其隔热性及基本性能进行测试。TEM及离心实验表明,ATO粉体经自制高分子表面活性剂或硅烷偶联剂改性后,分散性明显提高。性能测试表明:ATO粉体的加入能显著提高涂膜硬度及隔热性。【英文摘要】:Nano-ATO was modified by siloxane coupling agents,alcohols,sodium oleate and self-made polymeric surfactant,and the effects of different modifiers on the dispersibility were studie

14、d.Nanocomposite coatings were prepared by the blending method with nanosized antimony-doped tin dioxide(ATO) slurry and waterborne polyurethane as raw materials.TEM and centrifuge test showed that the nano-ATO were dispersed well in coating by siloxane coupling agents or self-made polymeric surfacta

15、nt.The results of performance te.【DOI】:CNKI:SUN:HGXC.0.2009-01-037手工检索中文(一)中国学术期刊 2009年15卷第4期关键词索引聚氨酯0904132909041392铋掺杂氧化锡/聚氨酯的原位聚合动力学=Synthesis kinetics of polyurethane with addition of nanosized particles of bismuth-doped tin dioxide刊,中/何秋星1,刘蕤1,涂伟平2(1.广东药学院药科学院,广州510006;2.华南理工大学化工与能源学院,广州510640)

16、/化工学报。2008,59(9)23662370采用原位聚合法制备了纳米铋掺杂氧化锡/水性聚氨酯复合材料。研究了纳米铋掺杂氧化锡(nano-BTO)存在下对聚氨酯(PU)合成反应动力学的影响。研究表明,体系中添加了nano-BTO粒子后,由于nano-BTO的高度反应活性及其表面的Sn原子具有催化反应特性,降低了氨酯化反应的活化能,使异腈酸酯基(NCO)与羟基(OH)反应的活化能由18.71KJ-1.K-1降低到16.29 KJ-1.K-1,加快NCO与 OH的反应速率。图5表1参14(刘家新)关键词:纳米铋掺杂氧化锡;原位聚合法;聚氨酯;催化作用;反应动力学(二)中国学术期刊 2008年14

17、卷第5期关键词索引水性聚氨酯08061481纳米铋掺杂二氧化锡水性/聚氨酯复合材料=Nanosized bismuth-doped tin dioxide/waterborn polyurethane nanocomposite materials刊,中/(华南理工大学化工与能源学院,广州510640),胡剑青,涂伟萍/化工学报。2007,58(11)。29202925 以自制纳米铋掺杂二氧化锡(nano-BTO)分散浆料和水性聚氨酯(PU)为原料,采用共混法制备nano-BTO/水性聚氨酯杂合材料。运用zeta电位仪机关粒度仪和TEM等研究了nano-BTO浆料的等电点在PH=6附近;采用硅

18、烷偶联剂KH-550和高分子分散剂DP-518对nano-BTO粉进行分散处理可获得良好分散性的水性浆料。采用紫外可见近红外分光光度计和自制的隔热测试装置等研究了nano-BTO/氨酯杂合材料的力学性能光学性能和热学性能。结果表明,当nano-BTO含量为1.0%时,膜的拉伸强度和断裂伸长率分别达到了9.23MPa223%,可见光透射率约为70%,起隔热效果同比纯PU膜可降温达8。C。图7表2参15关键词:纳米;铋掺杂二氧化锡;水性聚氨酯;共混法;zeta电位英文计算机检索打开IE图书信息河北联合大学主校区scienceresearch(ATO and polyurethane in all

19、fields)(一)Fabrication of superhydrophobic and heat-insulating antimony doped tin oxide/polyurethane films by cast replica micromoldingJournal of Colloid and Interface Science, Volume 336, Issue 1, 1 August 2009, Pages 268-272Jie Feng, Baoyuan Huang, Mingqiang ZhongXin Wang, Yuan Hu, Lei Song, Weiyi

20、Xing, Hongdian Lu, Pin Lv, Ganxin JieJie Feng, , Baoyuan Huang, Mingqiang ZhongDepartment of Materials Science & Engineering, Zhejiang University of Technology, 18# Chaowang Road, Cunzhong Building 203, Hangzhou 310014, PR ChinaReceived 27 November 2008. Accepted 21 March 2009. Available online 31 M

21、arch 2009.AbstractA novel process for fabricating superhydrophobic and heat-insulating polymeric nanocomposite films was developed. Briefly, antimony doped tin oxide (ATO) nanoparticles that commonly endow coats heat-insulating and transparent functions were mixed into commercial waterborne polyuret

22、hane (WPU) suspensions to obtain ATO/WPU suspensions, which were then cast onto poly(dimethylsiloxane) (PDMS) stamps replicated from fresh lotus leaves. After being dried and peeled off from stamps, ATO/PU films with superhydrophobic surface and heat-insulating property were created, while PU films

23、without ATO only showed high hydrophobicity. Scanning electron microscopy (SEM) imaging showed the surface of ATO/PU superhydrophobic films had unique micro- and nano-structures similar with those on the lotus leaf. On the contrary, no obvious nano-structures were found on the surface of pure PU fil

24、ms, demonstrating mixing functional nanoparticles into polymers is a necessary and feasible step in creating superhydrophobic and functional films by replica molding method.Graphical abstractAntimony doped tin oxide (ATO) nanoparticles/waterborne polyurethane (WPU) suspension composite cast replica

25、molding process not only ensures the ATO/PU films sufficient surface superhydrophobicity but also endows films heat-insulating function.KeywordsReplica micromolding; Superhydrophobic; Antimony doped tin oxide; Polyurethane; Heat-insulating film(二)Effect of antimony doped tin oxide on behaviors of wa

26、terborne polyurethane acrylate nanocomposite coatingsSurface and Coatings Technology, Volume 205, Issue 7, 25 December 2010, Pages 1864-1869Xin Wang, Yuan Hu, Lei Song, Weiyi Xing, Hongdian Lu, Pin Lv, Ganxin JieXin WangYuan Hu, Lei SongWeiyi XingHongdian LuPin LvGanxin JieState Key Lab of Fire Scie

27、nce, University of Science and Technology of China, Hefei, Anhui 230026, PR China Suzhou Key Laboratory of Urban Public Safety, Suzhou Institute for Advanced Study, University of Science and Technology of China, Suzhou, Jiangsu 215123, PR China Department of Chemical and Materials Engineering, Key L

28、aboratory of Powder and Energy Materials, Hefei University, Hefei, Anhui, 230022, PR China State Key Laboratory of Environmental Adaptability for Industrial Products, China National Electric Apparatus Research Institute, Guangzhou, 510300, PRChinaReceived 26 April 2010. Accepted 12 August 2010. Avai

29、lable online 19 August 2010.AbstractA multi-functional waterborne polyurethane acrylate (WPUA) nanocomposite coating was prepared through introducing the acrylate groups into the end of the polyurethane main chains and then modified by antimony doped tin oxide (ATO) nanoparticles by ultrasonic dispe

30、rsion. Structural and morphological features of coatings were assessed using Fourier transform infrared spectroscopy (FTIR), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS) and a 3D measuring laser microscope. Performance of the coatings was evaluated using water resis

31、tance studies, thermogravimetric analysis (TGA), dynamic mechanical thermal analysis (DMTA) and mechanical tests such as tensile strength, elongation at break. The data showed that the WPUA/ATO coatings possessed good mechanical properties and thermal stability. The UVvisiblenear infrared (UVVISNIR)

32、 spectra results suggested that the WPUA/ATO coatings could absorb near infrared radiation so that it would prevent heat transmission and heat diffusion effectively.KeywordsWaterborne polyurethane acrylate (WPUA); Antimony doped tin oxide (ATO);Mechanical properties; Heat insulation(三)Platinumantimony doped tin oxide nanoparticles supported on carbon black as anode catalysts for direct methanol fuel cel

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