Resumen de: US2025066623A1
The present invention relates to an inverted perovskite prepared by providing a surface-modified metal oxide nanoparticle as a coating agent for forming an electron transporting layer (or electron transport layer), and using the surface-modified metal oxide nanoparticle as a coating agent prepared in a dispersion type.
Resumen de: AU2023319138A1
A coating applied to an article which includes a pigment or a dispersion. The coating comprising an upper side and a lower side. The coating being applied to at least one surface of the article; and wherein the coating is formed from a monomer and a nanoparticle which have passed through a plasma such that a plasma polymerised coating have been formed.
Resumen de: WO2025029197A1
Disclosed herein are a method of conducting in-situ frontal polymerisation of one or both of a thermoplastic resin precursor and a thermoset resin precursor, and a thermoplastic polymeric composite material comprising a solid thermoplastic polymeric material, and Curie nanoparticles having a Curie temperature of from 90 to 400 ºC homogeneously distributed throughout the solid thermoplastic polymeric material. Also disclosed herein are methods of forming the thermoplastic polymeric composite material, laminating two or more sheets of a thermal insulating foam together, delaminating two or more sheets of a thermal insulating foam so as to separate the two or more sheets, consolidating a plurality of thermoplastic sheets together, and consolidating a plurality of thermoplastic semipreg sheets together.
Resumen de: US2025032177A1
An end effector for a cardiac mapping catheter including a flexible circuit including a plurality of electrodes each electrode of the plurality of electrodes including a contact surface. The flexible circuit can be disposed on an insulative material. The insulative material can be contiguous to the contact surfaces so that only the contact surfaces of at least a portion of the plurality of electrodes are exposed to the ambient environment.
Resumen de: JP2025009920A
【課題】組成物中におけるマイクロカプセルの分散性が高いマイクロカプセル含有アニオン性界面活性剤組成物の製造方法を提供する。更に、本発明によれば、繊維製品に対して、マイクロカプセルの吸着率が良好で、マイクロカプセルの凝集による白残りを抑制することができる、マイクロカプセル含有アニオン性界面活性剤組成物の製造方法を提供する。【解決手段】下記(A)成分、(B)成分、及び(C)成分を含有するマイクロカプセル含有アニオン性界面活性剤組成物の製造方法であって、(A)成分:アニオン性界面活性剤(B)成分:負電荷を帯びたマイクロカプセル(C)成分:カチオン性ポリマー上記(A)成分、(B)成分、及び(C)成分を、下記(I)又は(II)の方法で混合する、マイクロカプセル含有アニオン性界面活性剤組成物の製造方法。(I)(A)成分を含有する分散液を攪拌しながら、(B)成分を添加した後、(C)成分を添加する(II)(A)成分を含有する分散液を攪拌しながら、(C)成分を添加した後、(B)成分を添加する【選択図】なし
Resumen de: JP2025008166A
【課題】簡易な手段で害獣や害虫の侵入を抑制可能とする。【解決手段】不織布1に、カプサイシノイド21が封入されたマイクロカプセル2が、アクリル樹脂3に混ぜられた状態で含浸されている。マイクロカプセル2の平均粒子径は、15μm以上、25μm以下であり、カプサイシノイド21の含有割合が3.0質量%以上、6.0質量%以下となるように含浸されていることが好ましい。また、不織布1は、ポリエステル繊維を含むスパンボンド不織布であり、A4サイズであることが好ましい。【選択図】図2
Resumen de: US2021324573A1
Provided are a self-cleaning coating, a self-cleaning fiber, a self-cleaning carpet and uses thereof. The self-cleaning coating is provided with a porous structure where pores communicate with one another; the volume of the pores comprised in the coating makes up 20%-98% of the total volume of the coating; and the pore diameter of the pores in the porous structure is between 0.5 nm-50 nm. The self-cleaning coating is mainly prepared from host materials; the host materials are one or more of titanium oxide, zirconia, titanium nitride, silicon oxide, tungsten oxide, g-C3N4 semiconducting polymer, perovskite semiconductor, silver, iron, gold, aluminum, copper, zinc, tin and platinum.
Resumen de: JP3249829U
【課題】高い熱伝導率を実現し、放熱効果を向上させることで調温性能において優位性を持たせることが可能な繊維製品を提供する。【解決手段】繊維製品100は、オクタデカンを含む蓄熱材と、蓄熱材を内包するポリウレア樹脂からなる外皮シェルとを有するマイクロカプセル3が繊維体2に分散されて固着されている。【選択図】図1
Resumen de: WO2025011560A1
An antioxidant fiber material and a preparation method therefor, an atomization core and an electronic cigarette. The antioxidant fiber material comprises an organic fiber substrate, microcapsules and a coupling agent. Each microcapsule comprises an antioxidant and a polymer coating the antioxidant. The polymer has a structure as shown in general formula (I), wherein group R is a polyethylene glycol segment. The antioxidant fiber material can show excellent antioxidant activity for a long time, and is beneficial to improving various properties of the fiber material such as wrinkle resistance, flame retardance and insulating property.
Resumen de: MX2019004613A
A process involves the continuous surface treatment of stainless steel coils with aqueous suspensions of rare earth oxide nano or micro particles or aqueous rare earth nitrate solutions of nano or micro particles. The surface treatment can be applied by roll coating, spraying or other conventional application techniques. The treated material in coil form is then heated in an annealing box using an open coil process whereby a wire is placed between coil laps to promote uniform atmosphere exposure. The atmosphere can be reducing or oxidizing and the times can vary from 1 hr to 100 hr. The atmosphere can also be wet (high dew point) or dry (low dew point). The surface treatment promotes a more uniform color to the subsequently developed oxide formed during anneal-type heat treatment. It also improves corrosion resistance of the processed stainless steel material. Materials treated in this manner are suitable for a variety of applications in the building systems, automotive and appliance markets.
Resumen de: JP2024179018A
【課題】有益成分を含有する有益剤組成物を内包したマイクロカプセルを含有する繊維製品処理剤組成物を繊維製品に接触させて該繊維製品に有益成分を吸着させる方法を提供する。【解決手段】有益成分を含有する有益剤組成物を内包したマイクロカプセル[(A)成分]を含有する繊維製品処理剤組成物を繊維製品に接触させて該繊維製品に有益成分を吸着させる方法において、ケイ酸及び/又はケイ酸塩、もしくは水中でケイ酸及び/又はケイ酸塩を生成する化合物[(B)成分]を加え、30℃でのpHが2以上8未満の繊維製品処理剤組成物として用いる。【選択図】なし。
Resumen de: WO2024262246A1
Problem The present invention addresses the problem of providing a method for producing a silver nanowire-containing conductive laminate which has a smaller rate of change in resistance value under high temperature and high humidity conditions as compared with a conventional method. Solution The present invention provides a method for producing a conductive laminate which has a substrate and a silver nanowire-containing conductive layer, and specifically provides a method for producing a silver nanowire-containing conductive laminate, the method being characterized by comprising: a step for applying a silver nanowire dispersion liquid to form a silver nanowire-containing conductive layer; a step for subsequently applying a specific weather resistance imparting composition; and a step for subjecting the thus-obtained conductive laminate to a heat treatment under specific conditions.
Resumen de: MX2021006871A
The present invention relates to a new process for the preparation of polyamide microcapsules. Polyamide microcapsules are also an object of the invention. Perfuming compositions and consumer products comprising said capsules, in particular perfumed consumer products in the form of home care or personal care products, are also part of the invention.
Resumen de: WO2024257121A1
The present disclosure provides a nanocomposite comprising: a. a plurality of nanoparticles having band gap in a range of 5 to 8 eV; and b. an emissive polymer, wherein the nanoparticle and the polymer are in a weight ratio in a range of 1:1 to 6:1; and the plurality of nanoparticles are dispersed in the emissive polymer. The present disclosure also provides a process of preparing the nanocomposite. The present disclosure further provides a coating composition and an article thereof.
Resumen de: TW202449088A
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.
Resumen de: WO2024249709A2
A composition and methods for depositing a monomolecular layer of alkanethiol on a metallic surface are provided. The monomolecular layer of alkanethiol is applied using economical and reliable methods, such as by burnishing or ultrasonic bathing. The composition removes extra layers of alkanethiol to allow a single, even self-assembled monomolecular layer to form on the metallic surface, which enhances the tarnish-resistance of the surface and lubricates the surface.
Resumen de: KR20240169970A
본 발명은 논슬립 표면을 갖는 향기 발산형의 김서림방지 생분해 크리너로서, 기존 비분해성 원단에 의한 폐기물 및 환경오염 문제에 대응하고자 100% 분해되는 생분해성 원단을 사용하고, 김서림방지층 이면에 논슬립 층을 갖춰 사용상의 이질감을 줄임과 함께 향기캡슐 내 방향성 입자에 의해 사용자의 심리적 안정감 및 스트레스 해소, 피로회복 등 일반적인 김서림 방지제에 부가적인 기능성을 부여한 다기능성 생분해 크리너의 제조방법을 제공한다. 본 발명은, 생분해 향기 캡슐이 담지된 다층형 크리너로서, 생분해 소재를 이용하여 부직포 원단 또는 부직포와 직물이 합지된 복합 원단으로 구성된 제1생분해 원단 및 제2생분해 원단을 제조하는 생분해 원단 제조 단계; 상기 제1생분해 원단 상단에 미끄럼방지 가공을 통해 막형성 고분자를 형성하는 논슬립 코팅층을 제조하는 제1기능성 원단 제조 단계; 상기 제2생분해 원단 상단에 나노섬유 부직포를 적층하여 향기 원단을 제조하는 향기 원단 제조 단계; 상기 제2생분해 원단 하단을 김서림방지제로 코팅하여 김서림방지 코팅층을 제조하는 제2기능성 원단 제조 단계; 상기 제1기능성 원단과 제2기능성 원단을 합지하는 다층형 크리너 제조 단계;를 포함하는 것을 특징으로
Resumen de: JP2024165781A
【課題】使用時のベタつきが抑制された涼感体を提供する。【解決手段】本開示に係る涼感体の製造方法は、涼感対象物に接触させて使用される涼感体の製造方法であって、第1混合物準備工程と、吸熱部形成工程とを含む。第1混合物準備工程では、涼感対象物の温度よりも低い温度域において固相から液相に相変化する複数の吸熱材と、複数の吸熱材を保持するための樹脂と、ガラスビーズ又は加熱によって発泡する発泡材とが混合された第1混合物が準備される。吸熱部形成工程では、第1混合物を基材の表面に配置することにより、第1混合物を有する吸熱部が基材の表面上に形成される。【選択図】図1
Resumen de: MX2024006598A
A low-water composition comprising a solid dissolvable composition domain having a crystallizing agent and a PEGC domain.
Resumen de: MX2024006604A
This disclosure relates to an aqueous fabric conditioner composition containing: (i) a fragrance component present in an amount of ( 1 wt% relative to the total weight of the composition, wherein the fragrance component comprises at least one, at least two, at least three, at least four, at least five, at least six, at least seven, at least eight, at least nine or at least ten High Performance fragrance ingredients selected from the group consisting of Ultra High-Impact fragrance ingredients and High-Impact fragrance ingredients; and (ii) a fabric conditioner active. The composition exhibits parity and/ or improved visco-stability and/or perceived intensity, perceived longevity and/or perceived fidelity of a fragrance profile, particularly fresh and clean characters. This disclosure also relates to use of the aqueous fabric conditioner composition for imparting or enhancing the perception of the fragrance profile on fabrics.
Resumen de: MX2024006596A
A low-water composition comprising a solid dissolvable composition domain having a crystallizing agent and a PEGC domain.
Resumen de: WO2024235985A1
The invention relates to a component (13) with a carrier material (14) and a coating (17) applied to the carrier material (14) for influencing a heat signature (12) of the component (13), wherein the coating (17) comprises an adhesion promoter (18), wherein the coating (17) comprises nanotubes (19, 20, 22), wherein a first set of nanotubes (19) is embedded partially in the adhesion promoter (18), wherein a second set of nanotubes (22) is arranged entirely outside the adhesion promoter (18), and wherein nanotubes (22) of the second set of nanotubes (22) are connected to nanotubes (19) of the first set of nanotubes (19, 20).
Nº publicación: JP2024543599A 21/11/2024
Solicitante:
ザプロクターアンドギャンブルカンパニー
Resumen de: MX2024006600A
A low-water composition comprising a solid dissolvable composition domain having a crystallizing agent and a PEGC domain.