Academic literature on the topic 'Organic-inorganic hybrid hydrogels'

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Journal articles on the topic "Organic-inorganic hybrid hydrogels"

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Bakeeva, I. V., E. A. Egorova, N. S. Perov, I. V. Dementsova, E. V. Chernikova, and V. P. Zubov. "Magnetosensitive organic-inorganic hybrid hydrogels." Polymer Science Series B 56, no. 3 (2014): 384–92. http://dx.doi.org/10.1134/s1560090414030038.

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Hu, Lulin, Yi Yang, Weiyan Yu, and Lu Xu. "Hydrogels for Lubrication: Synthesis, Properties, Mechanism, and Challenges." Lubricants 12, no. 6 (2024): 186. http://dx.doi.org/10.3390/lubricants12060186.

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Hydrogels have received extensive attention as functional lubricants because of their excellent anti-friction and anti-wear properties, tunable tribological performances, and effectiveness in alleviating lubrication failures caused by the creeping or leakage of conventional liquid lubricants owing to their semi-solid nature. This review summarizes the current research advances in hydrogel lubricants fabricated with various organic and/or inorganic gelators, including organic polymeric or supramolecular hydrogels, inorganic particles-based hydrogels, and organic polymer-inorganic particle hybri
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Zubov, V. P., A. A. Ishchenko, P. A. Storozhenko, I. V. Bakeeva, Yu O. Kirilina, and G. V. Fetisov. "Organic-inorganic hybrid hydrogels containing nanocrystalline silicon." Doklady Chemistry 437, no. 2 (2011): 120–23. http://dx.doi.org/10.1134/s0012500811040148.

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Xia, Shan, Shixin Song, Xiuyan Ren, and Guanghui Gao. "Highly tough, anti-fatigue and rapidly self-recoverable hydrogels reinforced with core–shell inorganic–organic hybrid latex particles." Soft Matter 13, no. 36 (2017): 6059–67. http://dx.doi.org/10.1039/c7sm01253e.

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Schupp, David J., Xiaotong Zhang, Shengtong Sun, and Helmut Cölfen. "Mineral plastic hydrogels from the cross-linking of polyacrylic acid and alkaline earth or transition metal ions." Chemical Communications 55, no. 34 (2019): 4913–16. http://dx.doi.org/10.1039/c8cc08986h.

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Kim, Chan Woo, Sung Eun Kim, Yong Woo Kim, et al. "Fabrication of hybrid composites based on biomineralization of phosphorylated poly(ethylene glycol) hydrogels." Journal of Materials Research 24, no. 1 (2009): 50–57. http://dx.doi.org/10.1557/jmr.2009.0002.

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A novel route to organic-inorganic composites was described based on biomineralization of poly(ethylene glycol) (PEG)-based hydrogels. The 3-dimensional hydrogels were synthesized by radical crosslinking polymerization of poly(ethylene glycol fumarate) (PEGF) in the presence of ethylene glycol methacrylate phosphate (EGMP) as an apatite-nuclating monomer, acrylamide (AAm) as a composition-modulating comonomer, and potassium persulfate (PPS) as a radical initiator. We used the urea-mediated solution precipitation technique for biomineralization of hydrogels. The apatite grown on the surface and
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Loos, Wouter, Sam Verbrugghe, Eric J. Goethals, Filip E. Du Prez, Irena V. Bakeeva, and Vitali P. Zubov. "Thermo-Responsive Organic/Inorganic Hybrid Hydrogels based on Poly(N-vinylcaprolactam)." Macromolecular Chemistry and Physics 204, no. 1 (2003): 98–103. http://dx.doi.org/10.1002/macp.200290058.

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BHUNIA, TRIDIB, LUNA GOSWAMI, DIPANKAR CHATTOPADHYAY, and ABHIJIT BANDYOPADHYAY. "SWELLING DESWELLING STUDIES AFTER FREEZE–THAW TREATMENT OF NANOSILICA REINFORCED POLY (VINYL ALCOHOL)-BASED ORGANIC–INORGANIC HYBRID HYDROGEL." International Journal of Nanoscience 10, no. 04n05 (2011): 1087–90. http://dx.doi.org/10.1142/s0219581x11009465.

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Aqueous nanosilica sol (particle size range: 9–13 nm, pH: 9.0) was added at various low concentration range (0.5–2 wt.%) into aqueous poly (vinyl alcohol) (PVA) of different molecular weight (98% hydrolyzed, 20 wt.%) (pH: 5.0) at room temperature under constant stirring to synthesize organic-inorganic hybrid hydrogels in presence of sodium lauryl sulphate as a silica dispersant. Buffer tablets were added to arrest the pH at 9.0 (to prevent any silica aggregation due to change in pH). The resultant hybrids were cast on Teflon sheets and dried in an oven at 50°C to drive out all the unbound wate
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Cao, Mengjiao, Chengcheng Liu, Mengxin Li, et al. "Recent Research on Hybrid Hydrogels for Infection Treatment and Bone Repair." Gels 8, no. 5 (2022): 306. http://dx.doi.org/10.3390/gels8050306.

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The repair of infected bone defects (IBDs) is still a great challenge in clinic. A successful treatment for IBDs should simultaneously resolve both infection control and bone defect repair. Hydrogels are water-swollen hydrophilic materials that maintain a distinct three-dimensional structure, helping load various antibacterial drugs and biomolecules. Hybrid hydrogels may potentially possess antibacterial ability and osteogenic activity. This review summarizes the recent progress of different kinds of antibacterial agents (including inorganic, organic, and natural) encapsulated in hydrogels. Se
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Mañas-Torres, Mari C., Gloria B. Ramírez-Rodríguez, José I. García-Peiro, et al. "Organic/inorganic hydrogels by simultaneous self-assembly and mineralization of aromatic short-peptides." Inorganic Chemistry Frontiers 9, no. 4 (2022): 743–52. http://dx.doi.org/10.1039/d1qi01249e.

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Hybrid hydrogels with a tunable structure–function relationship were prepared by simultaneous self-assembly and mineralization of aromatic short-peptides. Sub-stoichiometric Ca concentrations resulted in nanoapatite oriented along the peptide fiber.
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Dissertations / Theses on the topic "Organic-inorganic hybrid hydrogels"

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Slisenko, O. V., I. M. Bei, and V. L. Budzinska. "Synthesis and characterization of Polyacrylamide / Siloxane Double Network Hydrogels." Thesis, Sumy State University, 2015. http://essuir.sumdu.edu.ua/handle/123456789/42515.

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A novel double-network (DN) hydrogels consisting of organic polyacrylamide (PAAm) network and inorganic siloxane network were synthesized by one-pot in situ polymerization. Spectral studies indicate a formation of DN structure of composite hydrogels obtained. Detailed study of the composites showed welldefined structurizing of hybrid hydrogels at molecular and nanolevel as well as intra- and intercomponent interactions via H-bonding. Nanostructurization possesses a great impact on final properties of the composite hydrogels. Prepared materials are characterized by improved thermal stability a
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Abedi, Khaledi Navid. "Chemical recognition and reactivity of zinc-oxide surfaces." Doctoral thesis, Humboldt-Universität zu Berlin, 2021. http://dx.doi.org/10.18452/21516.

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ZnO hat wegen seiner potenziellen Anwendung in elektronischen Geräten und als Katalysator viel Aufmerksamkeit erhalten. Die Struktur und Reaktivität von ZnO-Oberflächen haben eine direkte Bedeutung für die Leistung und Funktionalität dieser Geräte. Daher ist die Definition und das Verständnis der atomistischen Details von ZnO-Oberflächenstrukturen von besonderer Bedeutung. Die atomistischen Details von ZnO-Oberflächen hängen von den Präparationsverfahren ab. Nach der Kristallpräparation ist es notwendig, eine Oberflächencharakterisierung durchzuführen, um eine Verbesserung der Funktionalität
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El, Sayed Shehata Nasr Sameh. "Supramolecular Chemistry: New chemodosimeters and hybrid materials for the chromo-fluorogenic detection of anions and neutral molecules." Doctoral thesis, Universitat Politècnica de València, 2015. http://hdl.handle.net/10251/52598.

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[EN] Abstract The present PhD thesis entitled "Supramolecular Chemistry: New chemodosimeters and hybrid materials for the chromo-fluorogenic detection of anions and neutral molecules" is based on the application of supramolecular chemistry and material science principles for the development of optical chemosensors for anions and neutral molecules detection. The second chapter of this PhD thesis is devoted to the preparation of chemodosimeters for the chromo-fluorogenic detection of fluoride, diisopropyl fluorophosphates (DFP) and hydrogen sulfide. The optical detection of fluoride anion
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Maity, Mitasree. "Bile Acid based Supramolecular Gels, Soft Hybrid Materials and their Applications." Thesis, 2016. http://etd.iisc.ac.in/handle/2005/2928.

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Chapter 1. Supramolecular Gels and their Applications Supramolecular gels are viscoelastic materials composed of a solid like three dimensional fibrillary network that is embedded in a liquid. Supramolecular gels are derived from low molecular weight compounds (typically MW < 3000). In the 1990s, the investigations on gels were mainly focused on designing new gelator molecules. However, during the last decade, research focus shifted towards designing functional gels and their applications. As a result of extensive work in this area, gels have been found to have varied applications in the templ
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Maity, Mitasree. "Bile Acid based Supramolecular Gels, Soft Hybrid Materials and their Applications." Thesis, 2016. http://hdl.handle.net/2005/2928.

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Chapter 1. Supramolecular Gels and their Applications Supramolecular gels are viscoelastic materials composed of a solid like three dimensional fibrillary network that is embedded in a liquid. Supramolecular gels are derived from low molecular weight compounds (typically MW < 3000). In the 1990s, the investigations on gels were mainly focused on designing new gelator molecules. However, during the last decade, research focus shifted towards designing functional gels and their applications. As a result of extensive work in this area, gels have been found to have varied applications in the templ
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Pal, Asish. "Design And Synthesis Of Novel Soft Composites From Physical Gels And Nanomaterials." Thesis, 2008. https://etd.iisc.ac.in/handle/2005/704.

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The present thesis entitled “Design and Synthesis of Novel Soft Composites from Physical Gels and Nanomaterials” deals with soft materials derived from low molecular weight gels and nanomaterials. Chapter 1 gives a general introduction and overview of the low molecular weight gel (LMOG) which forms the basis of the work. It delves with the history of research in physical gel field, design of different types of gelator molecules, their interesting self-assembly patterns, potential applications of these gelator molecules as well as challenges to design new gelator molecules. It also encompass
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Pal, Asish. "Design And Synthesis Of Novel Soft Composites From Physical Gels And Nanomaterials." Thesis, 2008. http://hdl.handle.net/2005/704.

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The present thesis entitled “Design and Synthesis of Novel Soft Composites from Physical Gels and Nanomaterials” deals with soft materials derived from low molecular weight gels and nanomaterials. Chapter 1 gives a general introduction and overview of the low molecular weight gel (LMOG) which forms the basis of the work. It delves with the history of research in physical gel field, design of different types of gelator molecules, their interesting self-assembly patterns, potential applications of these gelator molecules as well as challenges to design new gelator molecules. It also encompasse
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Banerjee, S. L., Thomas Swift, Richard Hoskins, Stephen Rimmer, and N. K. Singha. "A muscle mimetic polyelectrolyte–nanoclay organic–inorganic hybrid hydrogel: its self-healing, shape-memory and actuation properties." 2019. http://hdl.handle.net/10454/16784.

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yes<br>Here in, we describe a non-covalent (ionic interlocking and hydrogen bonding) strategy of self-healing in a covalently crosslinked organic-inorganic hybrid 15 nanocomposite hydrogel, with special emphasize on it's improved mechanical stability. The hydrogel was prepared via in-situ free radical polymerization of sodium acrylate (SA) and successive crosslinking in the presence of poly(2-(methacryloyloxy)ethyl trimethyl ammonium chloride) (PMTAC) grafted cationically armed starch and organically modified montmorillonite (OMMT). This hydrogel shows stimuli triggered self-healing following
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Books on the topic "Organic-inorganic hybrid hydrogels"

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O, Sŏng-gŭn. Kobunja ka pʻyomyŏn e kyŏrhap toen tagongsŏng mugi ipcha rŭl iyong han suso chŏjang maegaechʻe kaebal =: Development of hydrogen-storage system using a porous organic/inorganic hybrid material. Sanŏp Chawŏnbu, 2008.

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O, Sŏng-gŭn. Kobunja ka pʻyomyŏn e kyŏrhap toen tagongsŏng mugi ipcha rŭl iyong han suso chŏjang maegaechʻe kaebal =: Development of hydrogen-storage system using a porous organic/inorganic hybrid material. Sanŏp Chawŏnbu, 2008.

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Book chapters on the topic "Organic-inorganic hybrid hydrogels"

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Chung, Hyun-Joong, Hemant Charaya, Li Liu, and Xinda Li. "Tough Hydrogels: Toughening Mechanisms and Their Utilization in Stretchable Electronics and in Regenerative Medicines." In Hybrid Organic-Inorganic Interfaces. Wiley-VCH Verlag GmbH & Co. KGaA, 2017. http://dx.doi.org/10.1002/9783527807130.ch12.

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Sakuhara, Iku, Eri Umebayashi, Kazuho Suguro, et al. "Preparation of Microporous, Thermosensitive Organic-Inorganic Hybrid Hydrogel with Simultaneous Control of Phase Separation and Sol-Gel Process." In Advances in Science and Technology. Trans Tech Publications Ltd., 2008. http://dx.doi.org/10.4028/3-908158-11-7.109.

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Pearce, Eli M., T. K. Kwei, and Shaoxiang Lu. "Hydrogen Bond Interactions and Self-Condensation of Silanol-Containing Polymers in Polymer Blends and Organic-Inorganic Polymeric Hybrids." In ACS Symposium Series. American Chemical Society, 2000. http://dx.doi.org/10.1021/bk-2000-0729.ch028.

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"Humidity Sensors Based on Hybrid Organic-Inorganic Nanostructured Films." In Polymer-Inorganic Nanostructured Composites Based on Amorphous Silica, Layered Silicates, and Polyionenes. IGI Global, 2023. http://dx.doi.org/10.4018/978-1-7998-9728-6.ch005.

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In this chapter, the authors present study of properties of inorganic and organic-inorganic proton-conducting materials' conductivity, where it is realized, due to protons that are formed of mobile hydrogen of phosphoric acid groups, which contains in structure of hybrid organic-inorganic nanocomposites and mobile protons of acid groups, which contain in its organic components. Such materials show high levels of conductivity (up to 10-2 Ohm-1•cm-1) in the temperatures range of 293-353 K. They are promising for use as materials for electrically active elements of sensor controls which are chara
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"Sensor nanostructures for the detection of toxic gases." In Book of Abstracts - RAD 2025 Conference. RAD Centre, Niš, Serbia, 2025. https://doi.org/10.21175/rad.abstr.book.2025.44.5.

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The development of portable detectors for the control of organic and explosive vapors by creating organic-inorganic nanosystems that can quickly respond to the action of gases by changing optical and electrical parameters is an important current problem [1]. The creation of sensor structures based on polymer-semiconductor hybrid nanosystems makes it possible to combine the sensitivity of semiconductors on the action of gases with the flexibility, lightness of organic (polymer) semiconductors, their high selectivity and reproducibility of properties, with the possibility of operation of the sen
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Mark, James E., Dale W. Schaefer, and Gui Lin. "Elastomeric Networks." In The Polysiloxanes. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780195181739.003.0009.

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Gelation is the cross-linking process that leads to the network structures required for rubberlike elasticity. In some cases, gelation can be reversible. There have been numerous studies involving theory and simulations exploring gelation and the mechanical properties of the resulting networks. Cross linking with free radicals is still quite common. Radiation has often been used to carry out the cross linking, as have new techniques known as “click” chemistry. Hydrosilylation is also popular. Networks have even been designed with movable cross links. Finally, reactive groups can be placed at t
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Conference papers on the topic "Organic-inorganic hybrid hydrogels"

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Unruh, Rachel, and Mike McShane. "Hybrid Inorganic-Organic Interpenetrating Network Hydrogels as Optical Biosensors." In 2016 32nd Southern Biomedical Engineering Conference (SBEC). IEEE, 2016. http://dx.doi.org/10.1109/sbec.2016.64.

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