Polylcaprolactam Polymer
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Recent MD Results on Supercooled Thin Polymer Films
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001Recent MD Results on Supercooled Thin Polymer Films
F.Varnik 1?,J.Baschnagel 2,K.Binder 1
1Institut f¨u r Physik,Johannes-Gutenberg Universit¨a t,D-55099Mainz,Germany 2Institut Charles Sadron,6rue Boussingault,F-67083,Strasbourg Cedex,France Abstract The dynamic and static properties of a supercooled (non-entangled)polymer melt are investigated via molecular dynamics (MD)simulations.The system is con?ned between two completely smooth and purely repulsive walls.The wall-to-wa
SYNTHESIS AND CHARACTERIZATION OF BLOCK POLYMER OF ALTERNATING COPOLYMERS
Block polymer of alternating copolymers, poly[(ST-a-MA)-b(IP-a-MMA)-b-(ST-a-MA)](I), has been synthesized in the presence of AlEt1.5Cl1.5,by using Mn2(CO)10/CBr4. initiation system.The GPC results indicate that there is no unreacted prepolymer in I purifie
Block polymer of alternating copolymers, poly[(ST-a-MA)-b(IP-a-MMA)-b-(ST-a-MA)](I), has been synthesized in the presence of AlEt1.5Cl1.5,by using Mn2(CO)10/CBr4. initiation system.The GPC results indicate that there is no unreacted prepolymer in I purifie
Block polymer of
Polymer-Supported Carbene Complexes of Palladium
FULLPAPER
N-HeterocyclicCarbenes,Part25[=]
Polymer-SupportedCarbeneComplexesofPalladium:
Well-Defined,Air-Stable,RecyclableCatalystsfortheHeckReaction
JürgenSchwarz,[a]VolkerP.W.Böhm,[a]MichaelG.Gardiner,[b]ManjaGrosche,[a]WolfgangA.Herrmann,*[a]WolfgangHieringer,[a]andGabrieleRaudaschl-Sieber[a]
dicarbenechelatecomplexesofformula[cis-CH22PdX2](X Br,I;R (CH2)nOH;n 2,3)havebeenpreparedandstructurallycharacterized(forX I,n 2).Thecomplexeswereimmobilizedonafunctionalizedpolystyrenesupport(Wangresin)throughoneoftheoxy
Controlling the Localization of Liquid Droplets in Polymer Matrices by Evaporative Lithography
German Edition:DOI:10.1002/ange.201604868Dynamic Materials International Edition:DOI:10.1002/anie.201604868Controlling the Localization of Liquid Droplets in Polymer Matrices by Evaporative Lithography
Huaixia Zhao,Jiajia Xu,Guangyin Jing,Lizbeth Ofelia Prieto-López,Xu Deng,*and Jiaxi Cui*Dedicated to Professor Eduard Arzt on the occasion of his 60th birthday
Abstract:Localized inclusions of liquids provide solid mate-rials with many functions,such as self-healing,secretion,and tunable mechanical properties,in a spatially con
Thermal performance and optical properties of wood–polymer composites
Article
Thermalperformance
andopticalproperties
ofwood–polymer
composites
SvetlanaButylina,OssiMartikkaand
¨rkiTimoKaJournalofThermoplasticCompositeMaterials26(1)60–73!TheAuthor(s)2011Reprintsandpermissions:sagepub.co.uk/journalsPermissions.navDOI:10.1177/0892705711419694
Abstract
Thethermalperformanceandopticalpropertiesofwood–polypropylenecompositesmadefromuntreatedwoodmaterialwithandwithoutmetal-containingpigments,andcompositesmadefromheat-treatedwoodmaterialwerestudied.Thethermalheatbuildupandlinearshrinkageweredetermined.
Single-Hole Hollow Polymer Microspheres toward Specific High
DOI:10.1002/adma.200700984
Single-Hole Hollow Polymer Microspheres toward Specific High-Capacity Uptake of Target Species**
By Guijian Guan ,Zhongping Zhang ,*Zhenyang Wang ,Bianhua Liu ,Daming Gao ,and Chenggen Xie
Functionalized hollow polymer microspheres are of techno-logical importance in controlled release of drugs,protection of active species,and removal of pollutants.[1–4]Hollow poly-mer microspheres are most commonly fabricated by coating the surface of template particles with charged polyelectrolytes or reactive poly
A New Two-dimensional Coordination Polymer Based on Trinuclear Manganese Clusters①
32卷11期 结 构 化 学 (JIEGOU HUAXUE) Vol. 32, No. 11
A New Two-dimensional Coordination Polymer Based on Trinuclear Manganese Clusters①
XU Naa ZHANG Yan-Nanb WANG Xiu-Yanb②
a
(School of Chemical & Environmental Engineering,
China University of Mining & Technology, Beijing 100083, China)
b
(Department of Chemistry, Jilin Normal University, Siping 136000, China)
ABSTRACT A novel two-dimensional Mn(II) coordination polymer, [Mn3(L)2(cis-chdc)2(trans- chdc)]n (L = 2-amino-4-(1H-imi