VIAF

Virtual International Authority File

Search

Leader 00000nz a2200037n 45 0
001 WKP|Q57941752 (VIAF cluster) (Authority/Source Record)
003 WKP
005 20241020233034.0
008 241020nneanz||abbn n and d
035 ‎‡a (WKP)Q57941752‏
024 ‎‡a 0000-0002-9669-7273‏ ‎‡2 orcid‏
035 ‎‡a (OCoLC)Q57941752‏
100 0 ‎‡a Jaime Martin‏ ‎‡c researcher, ORCID id # 0000-0002-9669-7273‏ ‎‡9 en‏
400 0 ‎‡a Jaime Martin‏ ‎‡c wetenschapper‏ ‎‡9 nl‏
670 ‎‡a Author's CO2 Selective PolyActive Membrane: Thermal Transitions and Gas Permeance as a Function of Thickness‏
670 ‎‡a Author's Confinement effects on the crystallization of poly(ethylene oxide) nanotubes‏
670 ‎‡a Author's Conjugated Copolymers of Vinylene Flanked Naphthalene Diimide‏
670 ‎‡a Author's Decrease in thermal conductivity in polymeric P3HT nanowires by size-reduction induced by crystal orientation: new approaches towards thermal transport engineering of organic materials.‏
670 ‎‡a Author's Diffusion-Limited Crystallization: A Rationale for the Thermal Stability of Non-Fullerene Solar Cells‏
670 ‎‡a Author's Direct Calorimetric Observation of the Rigid Amorphous Fraction in a Semiconducting Polymer‏
670 ‎‡a Author's Direct observation of confined single chain dynamics by neutron scattering‏
670 ‎‡a Author's Doping of Large Ionization Potential Indenopyrazine Polymers via Lewis Acid Complexation with Tris‏
670 ‎‡a Author's Doping of Large Ionization Potential Indenopyrazine Polymers via Lewis Acid Complexation with Tris(pentafluorophenyl)borane: A Simple Method for Improving the Performance of Organic Thin-Film Transistors‏
670 ‎‡a Author's Fabrication and mechanical characterization of semi-free-standing (conjugated) polymer thin films.‏
670 ‎‡a Author's Gecko-like Branched Polymeric Nanostructures from Nanoporous Templates‏
670 ‎‡a Author's High-aspect-ratio and highly ordered 15-nm porous alumina templates‏
670 ‎‡a Author's Manipulating Semicrystalline Polymers in Confinement.‏
670 ‎‡a Author's Microstructural control suppresses thermal activation of electron transport at room temperature in polymer transistors‏
670 ‎‡a Author's Neutron scattering study of the dynamics of a polymer melt under nanoscopic confinement‏
670 ‎‡a Author's On the Effect of Confinement on the Structure and Properties of Small-Molecular Organic Semiconductors‏
670 ‎‡a Author's One-dimensional magnetopolymeric nanostructures with tailored sizes‏
670 ‎‡a Author's Ordered arrays of magnetic polymer-based nanorods by template synthesis‏
670 ‎‡a Author's Ordered arrays of polymeric nanopores by using inverse nanostructured PTFE surfaces‏
670 ‎‡a Author's Ordered three-dimensional interconnected nanoarchitectures in anodic porous alumina‏
670 ‎‡a Author's Origin of fullerene-induced vitrification of fullerene:donor polymer photovoltaic blends and its impact on solar cell performance‏
670 ‎‡a Author's Poly(3-hexylthiophene) nanowires in porous alumina: internal structure under confinement‏
670 ‎‡a Author's Solid-state-processing of δ-PVDF‏
670 ‎‡a Author's Synthesis and properties of a novel narrow band gap oligomeric diketopyrrolopyrrole-based organic semiconductor‏
670 ‎‡a Author's Tailored polymer-based nanofibers and nanotubes by means of different infiltration methods into alumina nanopores.‏
670 ‎‡a Author's Temperature-Dependence of Persistence Length Affects Phenomenological Descriptions of Aligning Interactions in Nematic Semiconducting Polymers‏
670 ‎‡a Author's The Importance of Quantifying the Composition of the Amorphous Intermixed Phase in Organic Solar Cells‏
670 ‎‡a Author's The use of PEEK nanorod arrays for the fabrication of nanoporous surfaces under high temperature: SiNx example‏
909 ‎‡a (orcid) 0000000296697273‏ ‎‡9 1‏
919 ‎‡a decreaseinthermalconductivityinpolymericp3htnanowiresbysizereductioninducedbycrystalorientationnewapproachestowardsthermaltransportengineeringoforganicmaterials‏ ‎‡A Decrease in thermal conductivity in polymeric P3HT nanowires by size-reduction induced by crystal orientation: new approaches towards thermal transport engineering of organic materials.‏ ‎‡9 1‏
919 ‎‡a confinementeffectsonthecrystallizationofpolyethyleneoxidenanotubes‏ ‎‡A Confinement effects on the crystallization of poly(ethylene oxide) nanotubes‏ ‎‡9 1‏
919 ‎‡a co2selectivepolyactivemembranethermaltransitionsandgaspermeanceasafunctionofthickness‏ ‎‡A CO2 Selective PolyActive Membrane: Thermal Transitions and Gas Permeance as a Function of Thickness‏ ‎‡9 1‏
919 ‎‡a conjugatedcopolymersofvinyleneflankednaphthalenediimide‏ ‎‡A Conjugated Copolymers of Vinylene Flanked Naphthalene Diimide‏ ‎‡9 1‏
919 ‎‡a useofpeeknanorodarraysforthefabricationofnanoporoussurfacesunderhightemperaturesinxexample‏ ‎‡A The use of PEEK nanorod arrays for the fabrication of nanoporous surfaces under high temperature: SiNx example‏ ‎‡9 1‏
919 ‎‡a importanceofquantifyingthecompositionoftheamorphousintermixedphaseinorganicsolarcells‏ ‎‡A The Importance of Quantifying the Composition of the Amorphous Intermixed Phase in Organic Solar Cells‏ ‎‡9 1‏
919 ‎‡a temperaturedependenceofpersistencelengthaffectsphenomenologicaldescriptionsofaligninginteractionsinnematicsemiconductingpolymers‏ ‎‡A Temperature-Dependence of Persistence Length Affects Phenomenological Descriptions of Aligning Interactions in Nematic Semiconducting Polymers‏ ‎‡9 1‏
919 ‎‡a tailoredpolymerbasednanofibersandnanotubesbymeansofdifferentinfiltrationmethodsintoaluminananopores‏ ‎‡A Tailored polymer-based nanofibers and nanotubes by means of different infiltration methods into alumina nanopores.‏ ‎‡9 1‏
919 ‎‡a synthesisandpropertiesofanovelnarrowbandgapoligomericdiketopyrrolopyrrolebasedorganicsemiconductor‏ ‎‡A Synthesis and properties of a novel narrow band gap oligomeric diketopyrrolopyrrole-based organic semiconductor‏ ‎‡9 1‏
919 ‎‡a solidstateprocessingofδpvdf‏ ‎‡A Solid-state-processing of δ-PVDF‏ ‎‡9 1‏
919 ‎‡a poly3hexylthiophenenanowiresinporousaluminainternalstructureunderconfinement‏ ‎‡A Poly(3-hexylthiophene) nanowires in porous alumina: internal structure under confinement‏ ‎‡9 1‏
919 ‎‡a originoffullereneinducedvitrificationoffullerenedonorpolymerphotovoltaicblendsanditsimpactonsolarcellperformance‏ ‎‡A Origin of fullerene-induced vitrification of fullerene:donor polymer photovoltaic blends and its impact on solar cell performance‏ ‎‡9 1‏
919 ‎‡a ordered3dimensionalinterconnectednanoarchitecturesinanodicporousalumina‏ ‎‡A Ordered three-dimensional interconnected nanoarchitectures in anodic porous alumina‏ ‎‡9 1‏
919 ‎‡a orderedarraysofpolymericnanoporesbyusinginversenanostructuredptfesurfaces‏ ‎‡A Ordered arrays of polymeric nanopores by using inverse nanostructured PTFE surfaces‏ ‎‡9 1‏
919 ‎‡a orderedarraysofmagneticpolymerbasednanorodsbytemplatesynthesis‏ ‎‡A Ordered arrays of magnetic polymer-based nanorods by template synthesis‏ ‎‡9 1‏
919 ‎‡a 1dimensionalmagnetopolymericnanostructureswithtailoredsizes‏ ‎‡A One-dimensional magnetopolymeric nanostructures with tailored sizes‏ ‎‡9 1‏
919 ‎‡a ontheeffectofconfinementonthestructureandpropertiesofsmallmolecularorganicsemiconductors‏ ‎‡A On the Effect of Confinement on the Structure and Properties of Small-Molecular Organic Semiconductors‏ ‎‡9 1‏
919 ‎‡a neutronscatteringstudyofthedynamicsofapolymermeltundernanoscopicconfinement‏ ‎‡A Neutron scattering study of the dynamics of a polymer melt under nanoscopic confinement‏ ‎‡9 1‏
919 ‎‡a microstructuralcontrolsuppressesthermalactivationofelectrontransportatroomtemperatureinpolymertransistors‏ ‎‡A Microstructural control suppresses thermal activation of electron transport at room temperature in polymer transistors‏ ‎‡9 1‏
919 ‎‡a manipulatingsemicrystallinepolymersinconfinement‏ ‎‡A Manipulating Semicrystalline Polymers in Confinement.‏ ‎‡9 1‏
919 ‎‡a highaspectratioandhighlyordered15nmporousaluminatemplates‏ ‎‡A High-aspect-ratio and highly ordered 15-nm porous alumina templates‏ ‎‡9 1‏
919 ‎‡a geckolikebranchedpolymericnanostructuresfromnanoporoustemplates‏ ‎‡A Gecko-like Branched Polymeric Nanostructures from Nanoporous Templates‏ ‎‡9 1‏
919 ‎‡a fabricationandmechanicalcharacterizationofsemifreestandingconjugatedpolymerthinfilms‏ ‎‡A Fabrication and mechanical characterization of semi-free-standing (conjugated) polymer thin films.‏ ‎‡9 1‏
919 ‎‡a dopingoflargeionizationpotentialindenopyrazinepolymersvialewisacidcomplexationwithtrispentafluorophenylboraneasimplemethodforimprovingtheperformanceoforganicthinfilmtransistors‏ ‎‡A Doping of Large Ionization Potential Indenopyrazine Polymers via Lewis Acid Complexation with Tris(pentafluorophenyl)borane: A Simple Method for Improving the Performance of Organic Thin-Film Transistors‏ ‎‡9 1‏
919 ‎‡a dopingoflargeionizationpotentialindenopyrazinepolymersvialewisacidcomplexationwithtris‏ ‎‡A Doping of Large Ionization Potential Indenopyrazine Polymers via Lewis Acid Complexation with Tris‏ ‎‡9 1‏
919 ‎‡a directobservationofconfinedsinglechaindynamicsbyneutronscattering‏ ‎‡A Direct observation of confined single chain dynamics by neutron scattering‏ ‎‡9 1‏
919 ‎‡a directcalorimetricobservationoftherigidamorphousfractioninasemiconductingpolymer‏ ‎‡A Direct Calorimetric Observation of the Rigid Amorphous Fraction in a Semiconducting Polymer‏ ‎‡9 1‏
919 ‎‡a diffusionlimitedcrystallizationarationaleforthethermalstabilityofnonfullerenesolarcells‏ ‎‡A Diffusion-Limited Crystallization: A Rationale for the Thermal Stability of Non-Fullerene Solar Cells‏ ‎‡9 1‏
996 ‎‡2 DNB|1084237091
996 ‎‡2 LC|n 98802591
996 ‎‡2 BNE|XX977847
996 ‎‡2 NII|DA11927804
996 ‎‡2 LC|no 98101041
996 ‎‡2 ISNI|0000000109299000
996 ‎‡2 PLWABN|9811498242105606
996 ‎‡2 ISNI|0000000046460046
996 ‎‡2 BLBNB|000175723
996 ‎‡2 ISNI|0000000512364570
996 ‎‡2 CAOONL|ncf10159863
996 ‎‡2 NII|DA18106781
996 ‎‡2 BNF|13605759
996 ‎‡2 PLWABN|9810701895705606
996 ‎‡2 RERO|A012520195
996 ‎‡2 RERO|A014213226
996 ‎‡2 ISNI|000000003026055X
996 ‎‡2 ISNI|0000000022610062
996 ‎‡2 ISNI|0000000081809848
996 ‎‡2 LC|nr2001046802
996 ‎‡2 DE633|pe30060105
996 ‎‡2 LC|n 84005690
996 ‎‡2 ISNI|0000000118812267
996 ‎‡2 KRNLK|KAC200800680
996 ‎‡2 BNF|13612805
996 ‎‡2 ISNI|0000000059465030
996 ‎‡2 SUDOC|066893070
996 ‎‡2 BNF|15704461
996 ‎‡2 ISNI|0000000082798458
996 ‎‡2 LC|no2002083761
996 ‎‡2 LC|nb2015007695
996 ‎‡2 ISNI|0000000033649245
996 ‎‡2 NUKAT|n 2019072818
996 ‎‡2 CAOONL|ncf11040135
996 ‎‡2 LC|no2013069322
996 ‎‡2 ISNI|000000044467850X
996 ‎‡2 SZ|1179955773
996 ‎‡2 J9U|987007281898805171
996 ‎‡2 CAOONL|ncf10445197
996 ‎‡2 NUKAT|n 2008104447
996 ‎‡2 ISNI|0000000044549741
996 ‎‡2 DE633|pe30098102
996 ‎‡2 N6I|vtls000057987
996 ‎‡2 RERO|A012104007
996 ‎‡2 DNB|1059467666
996 ‎‡2 LC|n 79028800
996 ‎‡2 ISNI|0000000040581998
996 ‎‡2 BNF|16268806
996 ‎‡2 JPG|500088366
996 ‎‡2 DNB|1120024609
996 ‎‡2 LC|no2019040533
996 ‎‡2 LC|no2009162611
996 ‎‡2 NTA|329919407
996 ‎‡2 BIBSYS|90138423
996 ‎‡2 SUDOC|156530872
996 ‎‡2 J9U|987007427479005171
996 ‎‡2 ISNI|0000000034175117
996 ‎‡2 LC|n 85353494
996 ‎‡2 DNB|1111045186
996 ‎‡2 ISNI|000000003041562X
996 ‎‡2 LC|n 2021021778
996 ‎‡2 BNC|981058509723506706
996 ‎‡2 LC|n 2002127222
996 ‎‡2 LC|n 2006207014
996 ‎‡2 BIBSYS|1707990464626
996 ‎‡2 NII|DA08288161
996 ‎‡2 NLA|000035867662
996 ‎‡2 SUDOC|086058118
996 ‎‡2 BIBSYS|98047378
996 ‎‡2 ISNI|0000000054489869
996 ‎‡2 BIBSYS|5056316
996 ‎‡2 LC|n 2020067355
996 ‎‡2 LC|no2014096521
996 ‎‡2 BNC|981058513693106706
996 ‎‡2 DNB|132047543
996 ‎‡2 BNF|13944727
996 ‎‡2 BNF|16262674
996 ‎‡2 ISNI|0000000059978493
996 ‎‡2 N6I|vtls002400260
996 ‎‡2 NKC|osd2011670778
996 ‎‡2 ISNI|0000000392210007
996 ‎‡2 NII|DA0518815X
996 ‎‡2 NUKAT|n 2003081462
996 ‎‡2 CAOONL|ncf11552064
996 ‎‡2 LC|nb2012016388
996 ‎‡2 NUKAT|n 2014053267
996 ‎‡2 LC|n 95070382
996 ‎‡2 CAOONL|ncf11341362
996 ‎‡2 KRNLK|KAC200807689
996 ‎‡2 RERO|A003566291
996 ‎‡2 LC|nb2005016509
996 ‎‡2 ISNI|0000000042191280
996 ‎‡2 LC|no2014121703
996 ‎‡2 NTA|237104431
996 ‎‡2 LC|n 92038872
996 ‎‡2 DNB|115716711X
996 ‎‡2 SUDOC|243294042
996 ‎‡2 LC|n 2013069963
996 ‎‡2 NII|DA15222480
996 ‎‡2 LC|no 98069535
996 ‎‡2 ISNI|000000007947417X
996 ‎‡2 RERO|A003566329
996 ‎‡2 RERO|A003566326
996 ‎‡2 SUDOC|263878368
996 ‎‡2 RERO|A003566324
996 ‎‡2 RERO|A003566325
996 ‎‡2 RERO|A003566322
996 ‎‡2 NKC|skuk0003952
996 ‎‡2 NKC|skuk0003951
996 ‎‡2 NLA|000035714630
996 ‎‡2 J9U|987007342734505171
996 ‎‡2 RERO|A013796101
996 ‎‡2 DNB|120200929
996 ‎‡2 BIBSYS|13065365
996 ‎‡2 ISNI|0000000025618529
996 ‎‡2 BNC|981058524844206706
996 ‎‡2 LC|n 91112501
996 ‎‡2 LC|n 2023015483
996 ‎‡2 BAV|495_35215
996 ‎‡2 SUDOC|275865347
996 ‎‡2 ISNI|0000000074161174
996 ‎‡2 PTBNP|140088
996 ‎‡2 SIMACOB|25082979
996 ‎‡2 NUKAT|n 2020012056
996 ‎‡2 JPG|500443707
996 ‎‡2 BNC|981058524844106706
996 ‎‡2 BNE|XX1066501
996 ‎‡2 BNE|XX1014794
996 ‎‡2 SUDOC|16430567X
996 ‎‡2 LC|no 92004488
996 ‎‡2 LC|n 93019905
996 ‎‡2 LC|n 91011540
996 ‎‡2 BNF|12276803
996 ‎‡2 CAOONL|ncf10026982
996 ‎‡2 DNB|1091593140
996 ‎‡2 NII|DA07484765
996 ‎‡2 SUDOC|276985168
996 ‎‡2 LC|n 2017018271
996 ‎‡2 SUDOC|109266447
996 ‎‡2 DNB|1163471488
996 ‎‡2 BNE|XX1306014
996 ‎‡2 ISNI|0000000080191345
996 ‎‡2 NUKAT|n 2011305982
996 ‎‡2 DNB|124113435
996 ‎‡2 DNB|124113389
996 ‎‡2 SUDOC|08798881X
996 ‎‡2 DNB|1261823265
996 ‎‡2 ISNI|0000000033969812
996 ‎‡2 LC|n 2012043598
996 ‎‡2 ISNI|0000000039876932
996 ‎‡2 LC|n 96082512
996 ‎‡2 CAOONL|ncf10035692
996 ‎‡2 ISNI|0000000058308834
996 ‎‡2 ISNI|0000000063836885
996 ‎‡2 NTA|192420992
996 ‎‡2 NKC|mzk2018998747
996 ‎‡2 LC|no2004068952
996 ‎‡2 LC|n 84151517
996 ‎‡2 SUDOC|120787954
996 ‎‡2 J9U|987007391205405171
996 ‎‡2 RERO|A013262333
996 ‎‡2 LNB|LNC10-000103031
996 ‎‡2 ISNI|0000000050892634
996 ‎‡2 J9U|987007346086405171
996 ‎‡2 LC|n 94041221
996 ‎‡2 BIBSYS|5047965
996 ‎‡2 BNF|16907923
996 ‎‡2 RERO|A003566296
996 ‎‡2 ISNI|0000000363295961
996 ‎‡2 SUDOC|262555069
996 ‎‡2 NTA|353299758
996 ‎‡2 BNC|981058524844406706
996 ‎‡2 SUDOC|243342152
996 ‎‡2 LIH|LNB:CW_i__o_;=CC
996 ‎‡2 CAOONL|ncf10220207
996 ‎‡2 BNF|16393701
996 ‎‡2 ISNI|0000000110323290
996 ‎‡2 ISNI|0000000498005079
996 ‎‡2 SUDOC|251089274
996 ‎‡2 CAOONL|ncf10117416
996 ‎‡2 DNB|135064449
996 ‎‡2 JPG|500071473
996 ‎‡2 DNB|105839214X
996 ‎‡2 B2Q|0000028304
996 ‎‡2 BNF|12290182
996 ‎‡2 J9U|987007318841705171
996 ‎‡2 KRNLK|KAC202119680
996 ‎‡2 LC|no2002081343
996 ‎‡2 LC|no2014022720
996 ‎‡2 ISNI|0000000450029629
996 ‎‡2 BNE|XX1006071
996 ‎‡2 N6I|vtls002377237
996 ‎‡2 LC|n 93042265
996 ‎‡2 NUKAT|n 98086090
996 ‎‡2 J9U|987007274490905171
996 ‎‡2 BNC|981058524844306706
996 ‎‡2 SUDOC|117247227
996 ‎‡2 ISNI|0000000001106115
996 ‎‡2 BNC|981058612814106706
996 ‎‡2 RERO|A027267889
996 ‎‡2 LC|n 2014190603
996 ‎‡2 PTBNP|1320363
996 ‎‡2 ISNI|0000000065697065
996 ‎‡2 CAOONL|ncf10621460
996 ‎‡2 BNE|XX4978449
996 ‎‡2 ISNI|0000000496803333
996 ‎‡2 BNC|981058530323506706
996 ‎‡2 DNB|1056419164
996 ‎‡2 NKC|stk2008477245
996 ‎‡2 DE633|pe30010105
996 ‎‡2 RERO|A006481632
996 ‎‡2 CAOONL|ncf10486923
996 ‎‡2 DNB|1224705815
996 ‎‡2 J9U|987007448304805171
996 ‎‡2 LC|n 2017065472
996 ‎‡2 PTBNP|152743
996 ‎‡2 PLWABN|9810679695705606
996 ‎‡2 BIBSYS|6085834
996 ‎‡2 SUDOC|151346127
996 ‎‡2 BIBSYS|90118817
996 ‎‡2 LC|no2005043644
996 ‎‡2 BNF|18177160
996 ‎‡2 RERO|A026544470
996 ‎‡2 RERO|A012389684
996 ‎‡2 LC|n 85179463
996 ‎‡2 JPG|500024640
996 ‎‡2 ISNI|0000000048246684
996 ‎‡2 BNE|XX891903
996 ‎‡2 LC|no 97016593
996 ‎‡2 LC|n 99804301
996 ‎‡2 LC|nr 96027109
996 ‎‡2 NUKAT|n 2005119840
996 ‎‡2 ISNI|0000000059562906
996 ‎‡2 BAV|495_231919
996 ‎‡2 DNB|121893677
996 ‎‡2 DNB|1026193486
996 ‎‡2 LC|no2013052092
996 ‎‡2 NTA|120009978
996 ‎‡2 SUDOC|06989244X
996 ‎‡2 SUDOC|276386523
996 ‎‡2 SUDOC|270136746
996 ‎‡2 SUDOC|221452176
996 ‎‡2 SUDOC|269894802
996 ‎‡2 LC|n 96083887
996 ‎‡2 J9U|987007272824105171
996 ‎‡2 LC|no2001089314
996 ‎‡2 ISNI|0000000076566730
996 ‎‡2 BNF|14063340
996 ‎‡2 BNCHL|10000000000000000059075
996 ‎‡2 BNF|12684912
997 ‎‡a 0 0 lived 0 0‏ ‎‡9 1‏