Absstract of: WO2026198502A1
A population of core/shell delivery particles, where the shell is made, at least in part, of a polymeric material that is the reaction product of a plant-based flour material crosslinking a multifunctional acrylate monomer, oligomer, or prepolymer. Related methods of making and using such compositions, and articles made with such compositions are described.
Absstract of: WO2026197428A1
The present invention provides an aqueous microcapsule dispersion excellent in long-term dispersion stability at a high temperature (40°C). This aqueous microcapsule dispersion contains a component (A) and a component (B) defined below, where the mass ratio of the content of the component (B) to the content of the component (A) component (B) / component (A) is 0.01-4 inclusive. Component (A): Microcapsules having a shell containing an inorganic substance as a constituent component, and a core containing one or more organic compounds inside the shell. Component (B): One or more selected from the group consisting of polyoxyalkylene alkyl ethers, polyoxyalkylene alkenyl ethers, polyoxyalkylene aryl ethers, and polyoxyethylene polyoxypropylene glycols.
Absstract of: US20260286599A1
A fabric is provided. The fabric includes an exterior side and an interior side, wherein the exterior side and the interior side have a silver nanoparticle coating that selectively absorbs and transmits UV light.
Absstract of: JP2026148417A
【課題】高温安定性、及び冷水への溶解性に優れる、固形香料送達粒子の提供。【解決手段】下記成分(A)を含む粒子(I)の表面の一部又は全部が、下記成分(B)、及び下記成分(C)を含む第一層で被覆された、固形香料送達粒子であって、前記粒子(I)に含まれる成分(A)中、下記(a1)の含有量と下記(a2)の含有量の合計量が25質量%以下であり、前記固形香料送達粒子中の成分(C)の含有量が25質量%以下である、固形香料送達粒子。成分(A):マイクロカプセルに内包されていない香料であって、下記(a1)、及び下記(a2)から選ばれる1種以上の香料化合物を含む、香料(a1)CLogP値が2.9未満の香料化合物(a2)第一級水酸基を有する香料化合物(但し、(a1)を除く)成分(B):マイクロカプセルに内包された香料成分(C):ポリアルキレングリコール、ポリオキシアルキレンアルキルエーテル、及びポリオキシアルキレンフェニルエーテルから選ばれる1種以上の、25℃で固体の水溶性非イオン性ポリマー【選択図】なし
Absstract of: WO2025056650A1
A fragrance composition comprising water, and a plurality of microcapsules encapsulating a benefit agent dispersed therein, wherein the composition is free or substantially free of surfactant.
Absstract of: DE112024000281T5
Insbesondere betrifft die Erfindung eine verstärkte Kabelstruktur, die es ermöglicht, die Effizienz der Strom- und/oder Signalleitung zu erhöhen und Energieverluste zu vermeiden, ohne die Querschnittsfläche der Leitungsschicht des Kabels zu vergrößern, die mechanischen und thermischen Eigenschaften der Schutzschicht des Kabels zu verbessern, seine Beständigkeit gegen physikalische, ultraviolette Strahlung, Flüssigkeitsabsorption, Temperatur und Entflammbarkeit zu erhöhen, indem Graphenmaterial in Kabeln verwendet wird, die Strom- und/oder Signalleitung bereitstellen, und ein Verfahren zur Herstellung einer verstärkten Kabelstruktur, um diese Kabelstruktur zu erhalten.
Absstract of: CN117769456A
The present invention relates to (amino) glycosyl polyurea and/or polyurethane-based microcapsules containing at least one lipophilic active ingredient, compared to commercially available most advanced microcapsules based on total synthesis, these (amino) glycosyl polyurea and/or polyurethane-based microcapsules are well balanced in terms of improved biodegradability, stability of product formula and performance. In addition, a microcapsule slurry comprising a plurality of said core-shell microcapsules dispersed in an aqueous phase is disclosed. In addition, the present invention relates to methods of making microcapsule slurries and bio-based core-shell microcapsules contained therein. In another aspect, the invention described herein relates to the use of such microcapsules or microcapsule dispersions comprising these microcapsules according to the invention for the preparation of various consumer products. Finally, the invention also relates to consumer products comprising such microcapsules or microcapsule dispersions.
Absstract of: WO2025090151A1
In some embodiments, a dispensable suspension composition may include a liquid vehicle, silver (Ag) particles, silver chloride (AgCl) particles, and cellulose nanofibers. The dispensable suspension composition can be used to effectively manufacture electrodes via micro-dispensing. Such Ag/AgCl electrodes can be used as reference or indicator electrodes in electrochemical sensing systems. Thus, Ag/AgCl electrodes formed from the dispensable suspension, and sensors utilizing them are provided, as well as methods of manufacturing Ag/AgCl electrodes using the dispensable suspension. Other aspects including the dispensable Ag/AgCl suspension composition are disclosed.
Absstract of: US20260255694A1
There is provided an antistatic coating agent that is excellent in antistatic performance, hydrophilicity, and durability such as wear resistance and that makes it possible to form a coat layer having high visible light transmittance on a surface of a substrate made of glass easily at normal temperature, and an antistatic glass substrate using this antistatic coating agent. The antistatic coating agent is a normal-temperature-hardenable antistatic coating agent containing tin oxide (SnO2), silica (SiO2), tungsten oxide (WO3), a single-walled carbon nanotube, and a liquid medium. The antistatic glass substate includes a substrate made of glass and a coat layer being a hardened layer provided on a surface of the substrate, the hardened layer formed from the antistatic coating agent.
Absstract of: WO2022030106A1
This multilayer body (1) is provided with a base material (10) and an antistatic coating layer (11). The antistatic coating layer (11) is provided on the base material (10), and contains carbon nanotubes and a resin. The specific surface area per unit weight of the carbon nanotubes is 350 m2/g or more.
Absstract of: WO2026167667A1
The present invention discloses a graphene-alumina nanofluid-polymer matrix for coating material (100) for quick thermal dissipation and its method of preparation, wherein the hybrid material (100) comprises graphene-alumina nano-composite powder that is processed to form a nanofluid-polymer matrix coating material having functionalized graphene with alumina (Al2O3) for improved heat dissipation in X-Y-Z direction. The addition of the alumina layer (106) in the desire process of the present invention allows to create stronger bonding and interactions with the graphene layers (108), improving the interlayer phonon coupling and allowing heat to more efficiently transfer in the z-direction, perpendicular to the graphene plane.
Absstract of: US2022119743A1
Laundry care additive particles and a dryer sheet that include a water soluble carrier and capsules characterized by substantially inorganic shells, for example silica-based shells. The present disclosure further relates to methods of making and using such compositions.
Absstract of: WO2026164933A1
A device for sensing biomolecules, the device including a first layer having a first surface energy configured for binding with particular types of complexes of tethers, target biomolecules, and magnetic nanoparticles. A second layer is positioned on the first layer, the second layer having a second surface energy substantially inert to the tethers, target biomolecules, and magnetic nanoparticles of the complexes. One or more nanowells are formed within the second layer, each exposing a surface of the first layer, the nanowells configured to selectively bind the particular types of complexes with the exposed surfaces of the first layer. One or more magnetic sensors are arranged from beneath the exposed surface of each of the nanowells, the magnetic sensors configured to respectively detect the presence of the target biomolecules through detection of the magnetic nanoparticles within the complexes.
Absstract of: US2025113651A1
Provided herein are methods that involve the use of nanobubbles for fabrication of porous thin films that can be used to form articles such as electrodes, membranes, and photovoltaic cells. One such method includes combining nanobubbles with catalyst nanoparticles, a liquid carrier, and an ionomer to form a coating composition; applying the coating composition to a substrate to form a coated substrate; and removing the liquid carrier from the coated substrate to form an electrode including a porous thin film on the substrate.
Absstract of: EP3170872A1
The current invention presents the development of innovative nanocomposite fouling release paints resulting from the mixing of one type epoxy resin and one type suitably modified hardener. These modified hardeners comprise hydrophobic nanoparticles based on functionalized dendritic polymers with symmetrical or asymmetrical architecture or based on functionalized inorganic nanoparticles (metal or metal oxide nanoparticles or mixed metal oxide nanoparticles). Both the polymeric nahoparticles and the inorganic nanoparticles are functionalized with appropriate lipophilic groups. These nanocomposite paints presented in the current invention, exhibit micro slime layer control properties and can be effectively applied to objects submerged in sea water as fouling release coatings.
Absstract of: KR20260119099A
본 발명은 마이크로캡슐화 향료 기술을 적용한 다중 기능성 섬유 제조 방법에 관한 것이다.
Absstract of: DE202026000667U1
Tragbares Duftmodul, umfassend eine Trägermatrix aus porösem, flexiblem oder elastischem Material, in welcher eine Vielzahl von Mikro- oder Makrokapseln mit Duftstoff eingebettet ist, dadurch gekennzeichnet, dass die Kapseln durch wiederholte mechanische Einwirkung, insbesondere durch Druck, Reibung und/oder durch Wärmeeinwirkung, zumindest teilweise aktiviert werden, wobei bei jeder Aktivierung eine kontrollierte Teilmenge des Duftstoffes freigesetzt wird, sodass das Duftmodul mehrfach aktivierbar ist.
Absstract of: EP4779006A1
0001 A fragrance delivery particle for a textile product is provided. 0002 A fragrance delivery particle containing (A) a water-soluble solid hereinafter component (A) and (B) a fragrance hereinafter component (B), wherein component (B) includes (B1) a microencapsulated fragrance hereinafter component (B1) and (B2) a non-microencapsulated fragrance hereinafter component (B2), and a moisture content of the fragrance delivery particle according to the Karl Fischer gas-phase method (JIS K 0113) is 1 mass% or more and 35 mass% or less.
Absstract of: WO2019003095A1
A process for the production of a multiple-walled carbon nanotube (MWCNTs) suspension in a polymeric matrix is described, the suspension being obtained by the process, and different uses of the suspension, including use for impregnation of fabrics and pre-preg products and for formation of electrically conductive coatings or coatings which have vibration damping properties of mechanical parts to which they are applied.
Absstract of: US20260201175A1
0000 Metal nanoparticle agglomerates may render the surface of an article biocidal toward microorganisms. Articles having a biocidal surface may comprise a coating comprising metal nanoparticle agglomerates adhered via an adhesive to at least a portion of a surface of the article. A coating formulation comprising metal nanoparticle agglomerates may be applied to the surface of an article to accomplish the foregoing.
Absstract of: US20260201181A1
0000 Concentrated dispersions of silver nanowires are used to prepare qualitatively distinct silver structures with a range of properties. The concentrated dispersions can have a high weight percent of silver nanowires and can be formulated to be flowable liquids or non-flowing pastes. The concentrated dispersions can be stable with no visible settling over the course of a week, can have non-Newtonian rheology, and can be diluted to a desired weight percent of silver nanowires without detrimental effects on the uniformity of the dispersions. The concentrated dispersions can be formulated with or without polymers or pre-polymer components. The concentrated dispersions can be formulated with silver salts to adjust dispersion of the silver nanowires and to improve electrical conductivity of cured silver structures formed from the dispersions. Methods for forming the concentrated dispersions are described as are methods to form silver structures from the dispersions.
Absstract of: CN120037846A
The invention belongs to the technical field of temperature-regulating and sweat-discharging materials, and particularly relates to a temperature-regulating and sweat-discharging material and application thereof in fibers and flocculus. The preparation method of the temperature-regulating and sweat-discharging material comprises the steps of surface modification of inorganic nanoparticles, preparation of a shell material solution, preparation of a core material solution and preparation of the temperature-regulating and sweat-discharging material. Finally, the phase-change microcapsule, namely the temperature-regulating and sweat-discharging material, which takes the phase-change material as a core and takes the composite material of the cross-linked polyvinylpyrrolidone/2-acrylic acid-2-(butylamino)-carbonyl oxo ethyl ester copolymer doped with the inorganic nanoparticles as a shell is obtained. The temperature-regulating and sweat-discharging material is high in thermal conductivity and good in washable effect, can be added into a fiber matrix before spinning, can be used for preparing filling flocculus, and can be prepared into coating liquid to form a coating on the surface of a fabric in forms of hot rolling, spraying and the like; the fabric has potential application value in multiple fields such as work clothes, firefighter uniform, warmth retention articles, bedding articles, sportswear, shoes and hats and the like.
Nº publicación: JP2026109464A 01/07/2026
Applicant:
ライオン株式会社
Absstract of: JP2026109464A
【課題】カプセル化香料の分散安定化に優れた液体物性を有し、且つ経時での粘度変化が少なく、凍結復元性が良好な液体柔軟剤組成物の提供。【解決手段】(A)成分:長鎖3級アミン及びその塩、又は長鎖4級アンモニウム塩からなるカチオン性柔軟基材、(B)成分:カチオン性高分子、(C)成分:非イオン界面活性剤と、を含み、液体柔軟剤組成物の総質量に対する(A)成分の質量が3~12質量%未満であり、液体柔軟剤組成物の総質量に対する(C)成分の質量が1.3~5質量%である液体柔軟剤組成物。下記の(A)~(C)成文を含有してなる液体柔軟剤組成物。【選択図】なし