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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2a86659e0fe8bfd67d07b462548859221/aniketpal",         
         "tags" : [
            "RF","electronic","electronics,","electrophysiological","epidermal","implantable","monitoring,","myOwn","omniphobic","paper,","reinforced","skin"
         ],
         
         "intraHash" : "a86659e0fe8bfd67d07b462548859221",
         "interHash" : "08327b6b1b1a7baf750757d6545d4aa3",
         "label" : "Wearable and Implantable Epidermal Paper-Based Electronics",
         "user" : "aniketpal",
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         "date" : "2024-10-28 13:32:26",
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         "pub-type": "article",
         "journal": "ACS Applied Materials and Interfaces",
         "year": "2018", 
         "url": "http://pubs.acs.org/doi/10.1021/acsami.8b11020", 
         
         "author": [ 
            "Behnam Sadri","Debkalpa Goswami","Marina Sala De Medeiros","Aniket Pal","Beatriz Castro","Shihuan Kuang","Ramses V. Martinez"
         ],
         "authors": [
         	
            	{"first" : "Behnam",	"last" : "Sadri"},
            	{"first" : "Debkalpa",	"last" : "Goswami"},
            	{"first" : "Marina",	"last" : "Sala De Medeiros"},
            	{"first" : "Aniket",	"last" : "Pal"},
            	{"first" : "Beatriz",	"last" : "Castro"},
            	{"first" : "Shihuan",	"last" : "Kuang"},
            	{"first" : "Ramses V.",	"last" : "Martinez"}
         ],
         "volume": "10","number": "37","pages": "31061--31068","abstract": "© 2018 American Chemical Society. Traditional manufacturing methods and materials used to fabricate epidermal electronics for physiological monitoring, transdermal stimulation, and therapeutics are complex and expensive, preventing their adoption as single-use medical devices. This work describes the fabrication of epidermal, paper-based electronic devices (EPEDs) for wearable and implantable applications by combining the spray-based deposition of silanizing agents, highly conductive nanoparticles, and encapsulating polymers with laser micromachining. EPEDs are inexpensive, stretchable, easy to apply, and disposable by burning. The omniphobic character and fibrous structure of EPEDs make them breathable, mechanically stable upon stretching, and facilitate their use as electrophysiological sensors to record electrocardiograms, electromyograms, and electrooculograms, even under water. EPEDs can also be used to provide thermotherapeutic treatments to joints, map temperature spatially, and as wirelessly powered implantable devices for stimulation and therapeutics. This work makes epidermal electronic devices accessible to high-throughput manufacturing technologies and will enable the fabrication of a variety of wearable medical devices at a low cost.",
         "copyright" : "All rights reserved",
         
         "file" : "acsami.8b11020.pdf:C\\:\\\\Users\\\\ac143615\\\\Zotero\\\\storage\\\\UQ5WR4QE\\\\acsami.8b11020.pdf:application/pdf;am8b11020_si_001.pdf:C\\:\\\\Users\\\\ac143615\\\\Zotero\\\\storage\\\\IBDYZV6P\\\\am8b11020_si_001.pdf:application/pdf",
         
         "issn" : "19448252",
         
         "doi" : "10.1021/acsami.8b11020",
         
         "bibtexKey": "Sadri2018WearableImplantableEpidermal"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2c1ff1983fa994828490197e0cf9e55b3/lorisburth",         
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         "intraHash" : "c1ff1983fa994828490197e0cf9e55b3",
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         "label" : "Equilibrium properties of a bidisperse ferrofluid with chain aggregates: theory and\r\ncomputer simulations",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-10-16 10:29:51",
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         "journal": "Journal of Physics: Condensed Matter",
         "year": "2006", 
         "url": "https://dx.doi.org/10.1088/0953-8984/18/38/S14", 
         
         "author": [ 
            "Christian Holm","Alexey Ivanov","Sofia Kantorovich","Elena Pyanzina","Evgeniy Reznikov"
         ],
         "authors": [
         	
            	{"first" : "Christian",	"last" : "Holm"},
            	{"first" : "Alexey",	"last" : "Ivanov"},
            	{"first" : "Sofia",	"last" : "Kantorovich"},
            	{"first" : "Elena",	"last" : "Pyanzina"},
            	{"first" : "Evgeniy",	"last" : "Reznikov"}
         ],
         "volume": "18","number": "38","pages": "S2737","abstract": "In this paper we investigate a bidisperse model ferrofluid, where the aggregates are treated as flexible chains, under the influence of an arbitrary valued external magnetic field. An extensive comparison of the theoretical predictions to the results of the computer simulations is provided. Both magnetostatic properties and structural observables are investigated with the help of the newly developed theoretical approach and molecular dynamic simulations. It is shown that the results of the cluster analysis are very sensitive to the cluster definition. Here we use two different criteria for the particles to be bound: an energy criterion which is slightly different in the theory and simulations due to technical problems, and an entropy criterion which is the same for the molecular dynamics and theoretical model. This enables us to compare qualitatively and quantitatively theoretical and numerical microstructural observables, as well as the macro properties of the bidisperse ferrofluids. Finally, an answer to the question which chain criterion should actually be used is provided in this paper.",
         "doi" : "10.1088/0953-8984/18/38/S14",
         
         "bibtexKey": "Holm_2006"

      }
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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/208e7e1e6be0ae565e7f1c1fe97215aa8/lorisburth",         
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         "interHash" : "e0f03d65e067f1158a0ecc93a77f8fb6",
         "label" : "Magnetic properties of polydisperse ferrofluids: A critical comparison between experiment, theory, and computer simulation",
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         "description" : "",
         "date" : "2023-10-15 17:50:17",
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         "pub-type": "article",
         "journal": "Phys. Rev. E","publisher":"American Physical Society",
         "year": "2007", 
         "url": "https://link.aps.org/doi/10.1103/PhysRevE.75.061405", 
         
         "author": [ 
            "Alexey O. Ivanov","Sofia S. Kantorovich","Evgeniy N. Reznikov","Christian Holm","Alexander F. Pshenichnikov","Alexander V. Lebedev","Alexandros Chremos","Philip J. Camp"
         ],
         "authors": [
         	
            	{"first" : "Alexey O.",	"last" : "Ivanov"},
            	{"first" : "Sofia S.",	"last" : "Kantorovich"},
            	{"first" : "Evgeniy N.",	"last" : "Reznikov"},
            	{"first" : "Christian",	"last" : "Holm"},
            	{"first" : "Alexander F.",	"last" : "Pshenichnikov"},
            	{"first" : "Alexander V.",	"last" : "Lebedev"},
            	{"first" : "Alexandros",	"last" : "Chremos"},
            	{"first" : "Philip J.",	"last" : "Camp"}
         ],
         "volume": "75","number": "6","pages": "061405","abstract": "Experimental magnetization curves for a polydisperse ferrofluid at various concentrations are examined using analytical theories and computer simulations with the aim of establishing a robust method for obtaining the magnetic-core diameter distribution function $p(x)$. Theoretical expressions are fitted to the experimental data to yield the parameters of $p(x)$. It is shown that the majority of available theories yield results that depend strongly on the ferrofluid concentration, even though the magnetic composition should be fixed. The sole exception is the second-order modified mean-field (MMF2) theory of Ivanov and Kuznetsova [Phys. Rev. E 64, 041405 (2001)] which yields consistent results over the full experimental range of ferrofluid concentration. To check for consistency, extensive molecular dynamics and Monte Carlo simulations are performed on systems with discretized versions of $p(x)$ corresponding as closely as possible to that of the real ferrofluid. Essentially perfect agreement between experiment, theory, and computer simulation is demonstrated. In addition, the MMF2 theory provides excellent predictions for the initial susceptibility measured in simulations.",
         "numpages" : "12",
         
         "doi" : "10.1103/PhysRevE.75.061405",
         
         "bibtexKey": "PhysRevE.75.061405"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2f6e037e11806f22646f480aba2470c68/lorisburth",         
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         "intraHash" : "f6e037e11806f22646f480aba2470c68",
         "interHash" : "b858af432296b6f00a557f5ef886bf7b",
         "label" : "Aggregate formation in ferrofluid monolayers: simulations and theory",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-10-15 16:41:03",
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         "pub-type": "article",
         "journal": "Journal of Physics: Condensed Matter",
         "year": "2008", 
         "url": "https://dx.doi.org/10.1088/0953-8984/20/20/204125", 
         
         "author": [ 
            "Juan J Cerdà","Sofia Kantorovich","Christian Holm"
         ],
         "authors": [
         	
            	{"first" : "Juan J",	"last" : "Cerdà"},
            	{"first" : "Sofia",	"last" : "Kantorovich"},
            	{"first" : "Christian",	"last" : "Holm"}
         ],
         "volume": "20","number": "20","pages": "204125","abstract": "In order to investigate the peculiarities of the aggregation processes in ferrofluids in a quasi-2D geometry, a combination of density functional theory (DFT) and molecular dynamics (MD) simulations is presented. The microstructure formation in monodisperse ferrofluid monolayers is studied thoroughly through a comparison of the theoretical and computational results. Theoretical and simulation results show similar trends which renders the theoretical approach a useful tool for getting insight into the microstructure formation in monolayers.",
         "doi" : "10.1088/0953-8984/20/20/204125",
         
         "bibtexKey": "Cerdà_2008"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2e44d2efa2eca196c98eca2eed453b66e/lorisburth",         
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         "interHash" : "2ee98df5006a8ae9f125b0fdb9b7f3d1",
         "label" : "Ground state structures in ferrofluid monolayers",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-25 01:41:44",
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         "count" : 4,
         "pub-type": "article",
         "journal": "Phys. Rev. E","publisher":"American Physical Society",
         "year": "2009", 
         "url": "https://link.aps.org/doi/10.1103/PhysRevE.80.031404", 
         
         "author": [ 
            "Taisia A. Prokopieva","Victor A. Danilov","Sofia S. Kantorovich","Christian Holm"
         ],
         "authors": [
         	
            	{"first" : "Taisia A.",	"last" : "Prokopieva"},
            	{"first" : "Victor A.",	"last" : "Danilov"},
            	{"first" : "Sofia S.",	"last" : "Kantorovich"},
            	{"first" : "Christian",	"last" : "Holm"}
         ],
         "volume": "80","number": "3","pages": "031404","abstract": "A combination of analytical calculations and Monte Carlo simulations is used to find the ground state structures in monodisperse ferrofluid monolayers. Taking into account the magnetic dipole-dipole interaction between all particles in the system we observe different topological structures that are likely to exist at low temperatures. The most energetically favored structures we find are rings, embedded rings, and rings side by side, and we are able to derive analytical expressions for the total energy of these structures. A detailed analysis of embedded rings and rings side by side shows that the interring interactions are negligible. We furthermore find that a single ideal ring is the ground state structure for a ferrofluid monolayer. We compared our theoretical predictions to the results of simulated annealing data and found them to be in excellent agreement.",
         "numpages" : "13",
         
         "doi" : "10.1103/PhysRevE.80.031404",
         
         "bibtexKey": "PhysRevE.80.031404"

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         "label" : "Ferrofluids with shifted dipoles: ground state structures",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:37:15",
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         "pub-type": "article",
         "journal": "Soft Matter","publisher":"The Royal Society of Chemistry",
         "year": "2011", 
         "url": "http://dx.doi.org/10.1039/C1SM05186E", 
         
         "author": [ 
            "Sofia Kantorovich","Rudolf Weeber","Juan J. Cerda","Christian Holm"
         ],
         "authors": [
         	
            	{"first" : "Sofia",	"last" : "Kantorovich"},
            	{"first" : "Rudolf",	"last" : "Weeber"},
            	{"first" : "Juan J.",	"last" : "Cerda"},
            	{"first" : "Christian",	"last" : "Holm"}
         ],
         "volume": "7","number": "11","pages": "5217-5227","abstract": "In the past decades, ferrofluids have become relevant in many applications ranging from engineering to medicine, and have attracted the interest of scientists from many fields. To understand the physical mechanisms serving as a basis for these applications, over the last decades, many of the properties of ferrofluids have been studied and can now be controlled. However, in order to fine-tune various aspects of the interactions in the system and hopefully \u2013 in the long run \u2013 to build tailored structures, in recent years, magnetic nanoparticles and colloids that deviate from the model of a spherical particle with a dipole moment at its center were examined. Among them are dumbbells, magnetic core-shell particles, elongated ferro-particles, and colloidal particles with a magnetic cap. In this paper, we introduce and examine \u2013 using analytical calculations and Monte Carlo simulations \u2013 one such model system, namely, magnetic particles in which the dipole moment is shifted from the center of mass towards the particle's surface. In this way, an additional anisotropy is introduced to the particles, which results in quite different and surprising microscopic properties of suspensions. Here, we mainly concentrate on ground states of small clusters of shifted-dipole particles, but also take a first glance on suspensions at finite temperature.",
         "doi" : "10.1039/C1SM05186E",
         
         "bibtexKey": "C1SM05186E"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2122c96073ccd0e053d8a9b0de8604fba/lorisburth",         
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         "intraHash" : "122c96073ccd0e053d8a9b0de8604fba",
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         "label" : "Study of the structure factor anisotropy and long range correlations of ferrofluids in the dilute low-coupling regime",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:30:17",
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         "pub-type": "article",
         "journal": "Journal of Magnetism and Magnetic Materials","publisher":"Elsevier BV",
         "year": "2011", 
         "url": "https://doi.org/10.1016%2Fj.jmmm.2010.11.015", 
         
         "author": [ 
            "Juan J. Cerdà","Ekaterina Elfimova","V. Ballenegger","Ekaterina Krutikova","Alexey Ivanov","Christian Holm"
         ],
         "authors": [
         	
            	{"first" : "Juan J.",	"last" : "Cerdà"},
            	{"first" : "Ekaterina",	"last" : "Elfimova"},
            	{"first" : "V.",	"last" : "Ballenegger"},
            	{"first" : "Ekaterina",	"last" : "Krutikova"},
            	{"first" : "Alexey",	"last" : "Ivanov"},
            	{"first" : "Christian",	"last" : "Holm"}
         ],
         "volume": "323","number": "10","pages": "1246--1253",
         "doi" : "10.1016/j.jmmm.2010.11.015",
         
         "bibtexKey": "Cerd__2011"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2ed382b7d44a8326ebb7a28d5cccd2c22/lorisburth",         
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         "label" : "Ground state structures in ferrofluid monolayers",
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         "year": "2011", 
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         "author": [ 
            "T. Prokopyeva","V. Danilov","A. Dobroserdova","S. Kantorovich","C. Holm"
         ],
         "authors": [
         	
            	{"first" : "T.",	"last" : "Prokopyeva"},
            	{"first" : "V.",	"last" : "Danilov"},
            	{"first" : "A.",	"last" : "Dobroserdova"},
            	{"first" : "S.",	"last" : "Kantorovich"},
            	{"first" : "C.",	"last" : "Holm"}
         ],
         "volume": "323","number": "10","pages": "1298--1301",
         "doi" : "10.1016/j.jmmm.2010.11.034",
         
         "bibtexKey": "Prokopyeva_2011"

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         "interHash" : "2eb080eba949d3be7494ba24f0e8ef15",
         "label" : "System of particles with shifted magnetic dipoles",
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         "pub-type": "article",
         "journal": "Magnetohydrodynamics",
         "year": "2011", 
         "url": "http://mhd.sal.lv/contents/2011/2/MG.47.2.5.R.html", 
         
         "author": [ 
            "Marco Klinkigt","Rudolf Weeber","Sofia Kantorovich","Christian Holm"
         ],
         "authors": [
         	
            	{"first" : "Marco",	"last" : "Klinkigt"},
            	{"first" : "Rudolf",	"last" : "Weeber"},
            	{"first" : "Sofia",	"last" : "Kantorovich"},
            	{"first" : "Christian",	"last" : "Holm"}
         ],
         "volume": "47","number": "2","pages": "143--148",
         "file" : ":klinkigt11b.pdf:PDF",
         
         "issn" : "1574-0579",
         
         "bibtexKey": "klinkigt11b"

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         "type" : "Publication",
         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2a8176c3f3d510ad631a81747faa95f4a/lorisburth",         
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            "avcp","dfg","fasi","icp","rf","rfbr"
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         "intraHash" : "a8176c3f3d510ad631a81747faa95f4a",
         "interHash" : "05d091ee5cf5fa2410c6607816eef775",
         "label" : "Magnetic particles with shifted dipoles",
         "user" : "lorisburth",
         "description" : "",
         "date" : "2023-09-24 21:13:09",
         "changeDate" : "2023-09-24 21:13:09",
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         "pub-type": "article",
         "journal": "Journal of Magnetism and Magnetic Materials","publisher":"Elsevier BV",
         "year": "2011", 
         "url": "https://doi.org/10.1016%2Fj.jmmm.2010.11.019", 
         
         "author": [ 
            "Sofia Kantorovich","Rudolf Weeber","Joan J. Cerdà","Christian Holm"
         ],
         "authors": [
         	
            	{"first" : "Sofia",	"last" : "Kantorovich"},
            	{"first" : "Rudolf",	"last" : "Weeber"},
            	{"first" : "Joan J.",	"last" : "Cerdà"},
            	{"first" : "Christian",	"last" : "Holm"}
         ],
         "volume": "323","number": "10","pages": "1269--1272",
         "doi" : "10.1016/j.jmmm.2010.11.019",
         
         "bibtexKey": "Kantorovich_2011"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2445f1d0255aa5bb96f511373e309d0a1/annettegugel",         
         "tags" : [
            "Characterization","Design","Efficient","Filters","Noise","RF","Sources","Suppression","of"
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         "intraHash" : "445f1d0255aa5bb96f511373e309d0a1",
         "interHash" : "6070d702acb10ac9ac38efa8e450f023",
         "label" : "Efficient Characterization of RF Sources for the Design of Noise Suppression Filters",
         "user" : "annettegugel",
         "description" : "",
         "date" : "2020-07-09 14:23:50",
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         "year": "2008", 
         "url": "https://www.ieh.uni-stuttgart.de/dokumente/publikationen/2008_Rebholz_Stuttgart_SourceCharacterization.pdf", 
         
         "author": [ 
            "Heinz Rebholz","Stefan Tenbohlen"
         ],
         "authors": [
         	
            	{"first" : "Heinz",	"last" : "Rebholz"},
            	{"first" : "Stefan",	"last" : "Tenbohlen"}
         ],
         
         "eventtitle" : "ISAPE 2008, International Symposium on Antennas, Propagation and EM Theory",
         
         "venue" : "Kunming, China",
         
         "eventdate" : "November 2-6",
         
         "bibtexKey": "rebholz2008efficient"

      }
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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/24a8cf386d489707a8ef9695de4a5b1c8/annettegugel",         
         "tags" : [
            "PD","RF","Sensitivity","check","detection","power","transformers"
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