A method for manufacturing a wave energy transfer medium and a functional product having wave energy emission capabilities manufactured using this method.

JP7922976B1Active Publication Date: 2026-09-17JATECX
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Patent Information

Application Number
JP2025113883
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2025-07-04
Publication Date
2026-09-17
Estimated Expiration
2045-07-04

AI Technical Summary

Benefits of technology

【0007】 本発明の製造方法によれば、ナノプラチナコロイド溶液に、テラヘルツ波を照射することで、ナノプラチナコロイド溶液内分散質であるナノメートルオーダーの超微粒子のプラチナが波動エネルギー放射体に変質され、ナノプラチナコロイド溶液、それ自体を波動エネルギー転写媒体にする。この波動エネルギー転写媒体は、ナノプラチナコロイド溶液、それ自体なので、商品や商品の基材に対して、浸漬、噴霧、練り込みなどの簡単な加工処理を行うだけで、ナノプラチナ商品や商品の基材に満遍なく分散して固定化される。 本発明の製造方法によって製造される機能性商品は、このようにして商品、商品の基材にテラヘルツ波の転写されたナノプラチナの超微粒子が固定化されているので、金属のナノプラチナ超微粒子としての効果だけでなくテラヘルツ波放射体としての効果を持つことになる。 したがって、触媒である金属のナノプラチナが持つ本来の効果、抗菌性、消臭、抗ウイルスなどの効果を持続でき、同時に、プラチナ微粒子がテラヘルツ波の放射体として安定して機能するので、テラヘルツ波による効果も得られる。

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Abstract

A method for manufacturing a transfer medium for transforming a normal product that has not had wave energy transferred into a functional product that emits wave energy, and a functional product that has been transformed into a product having the function of emitting wave energy using the transfer medium. [Solution] The wave energy transfer medium is manufactured by pre-transferring wave energy of a specific frequency band into a nanoplatinum colloid solution. Functional products are transformed into wave energy emitters by fixing the wave energy transfer medium to the product or its base material through methods such as immersion, spraying, or kneading.
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Description

Technical Field

[0001] The present invention relates to a method for producing a wave energy transfer medium used for transforming an ordinary product to which wave energy has not been transferred into a functional product to which wave energy has been transferred, and to a novel functional product imparted with a function of radiating wave energy using the transfer medium.

Background Art

[0002] Recently, nano-platinum colloid solutions have been developed, making it possible to process metallic platinum into nano-level ultrafine particles. Metallic platinum has been conventionally used as a catalyst and widely used in the fields of antibiosis and deodorization. In recent years, by forming nano-ordered ultrafine particles, it has been used in various fields due to its unique optical, physical and chemical properties. As application fields, it is used in a wide range including nanocatalysts in materials science, fuel cells in electrochemistry, high-throughput screening tests in biomedical technology, bioimaging and beauty products, and matrices for surface-enhanced Raman spectroscopy (SERS) in the field of analytical testing.

[0003] On the other hand, technologies applying terahertz waves have also been introduced, and various product developments have been carried out. For example, products made from ores that emit terahertz waves as base materials and commercialized as accessories such as necklaces and bracelets worn by people are known. Recently, technologies for transferring terahertz waves have also been developed. Even if the product itself does not contain terahertz-emitting ore or the like, irradiating the product with terahertz waves transforms it into a terahertz radiator.

[0004] The inventors of this invention discovered that by simply applying a nanoplatinum colloid solution to a product or its substrate using simple processing methods such as immersion or spraying, the product can retain the antibacterial and deodorizing functions of nanoplatinum particles for a long period of time. Furthermore, in the process of researching terahertz waves, they found that substances containing hydrogen bonds such as water and proteins, metal materials with many free electrons, metallic silica, glass, and organic glass, which have unstable molecular bonding structures, resonate and transform into substances that emit terahertz waves when irradiated with terahertz waves. Based on these findings, they arrived at the present invention. [Overview of the project] [Problems that the invention aims to solve]

[0005] Based on the above findings, the present invention was proposed, and the nanoplatinum colloid solution is Terahertz waves By transferring the information, the nanoplatinum colloid solution is transformed into a medium for transferring wave energy. And, It is fixed to the product or the base material of the product. Terahertz waves Novel functional products that emit Method of manufacturing This provides... [Means for solving the problem]

[0006] Therefore, to achieve this objective, it is proposed that Method for manufacturing a functional product equipped with the wave energy radiation function of the present invention The summary is as follows: In other words, The first invention Platinum ultrafine particles in a nanoplatinum colloidal solution, which contains nanometer-order platinum ultrafine particles as the dispersed phase. to By irradiating with terahertz waves, Nanoplatinum colloid solution of alter Manufactured by the manufacturing method , a medium for transferring wave energy This method involves immersing or spraying the product or its base material with the substance to fix it in place, thereby transforming the product or its base material into a wave energy radiator. . Furthermore, the second aspect of this invention relates to platinum ultrafine particles in a nanoplatinum colloidal solution in which nanometer-order platinum ultrafine particles are dispersed. to By irradiating with terahertz waves, Nanoplatinum colloid solution Manufactured using a manufacturing method that alters the quality , a medium for transferring wave energy of, Product or base material of product to kneaded By fixing it in place, the product or the base material of the product can be fixed. of Transformed into a wave energy emitting material to do of Characterize . Furthermore, the third invention teeth Platinum ultrafine particles in a nanoplatinum colloidal solution, which contains nanometer-order platinum ultrafine particles as the dispersed phase. to Manufactured by a method that alters the nanoplatinum colloid solution by irradiating it with terahertz waves. done 、 A medium for transferring wave energy, a product or the base material of a product. Used dyes or pigments kneaded immobilization do This means that the product or the base material of the product of Transformed into a wave energy emitting material Characterized by . [Effects of the Invention]

[0007] According to the manufacturing method of the present invention, by irradiating a nanoplatinum colloid solution with terahertz waves, the nanoplatinum colloid solution contains of dispersion The quality is on the nanometer order. Ultrafine platinum particles are transformed into wave energy emitters, making the nanoplatinum colloidal solution itself a wave energy transfer medium. Since this wave energy transfer medium is the nanoplatinum colloidal solution itself, it can be evenly dispersed and fixed onto products or product substrates simply by performing processing such as immersion, spraying, or kneading. This invention Functionality produced by the manufacturing method The product is made in this way, the product and the base material of the product Transcribed terahertz waves Since the nano-platinum ultrafine particles are immobilized, the effect of the metal as nano-platinum ultrafine particles is but also , Terahertz waves It will have the effect of a radiator. Therefore, the inherent effects of the catalyst metal nanoplatinum, such as antibacterial, deodorizing, and antiviral properties, can be sustained, and at the same time, the platinum nanoparticles Terahertz waves Because it functions stably as a radiator, Terahertz waves It can also be effective. [Brief explanation of the drawing]

[0008] [Figure 1a] This is an explanatory diagram illustrating the classification of terahertz waves by frequency, which are used as wave transfer energy. [Figure 1b] This is an explanatory diagram illustrating the classification of terahertz waves by wavelength. [Figure 2] Fig. 1 is an explanatory diagram of a typical functional product group in which the transfer medium of the present invention is used. [Figure 3] It is a micrograph of cloth (silk) serving as a base material for a functional product. MODE FOR CARRYING OUT THE INVENTION

[0009] Figs. 1a and 1b describe terahertz waves that are suitably used as wave energy. Here, Fig. 1a is an explanatory diagram of classification by frequency, and Fig. 1b is an explanatory diagram of classification by wavelength. As shown in these figures, a terahertz wave is defined as having a frequency of 0.1 THz to 100 THz and a wavelength of 3 µm to 300 µm. Here, 1 THz is a frequency band that vibrates one trillion times per second. Such a terahertz wave is an energy wave that has the straightness characteristic of light and the transmission characteristic of radio waves. NASA in the United States has announced in a study on "conditions for human survival in spacecraft" that far-infrared rays with a frequency of 25 THz to 50 THz and a wavelength of 6 µm to 12 µm in solar energy are indispensable for the survival of living organisms. This is also called growth light or life light.

[0010] Fig. 2 shows the Manufacturing method to Therefore, manufacturing of the present invention illustrates a group of functional products. The present invention is suitably applied to products based on cloth, paper, non-woven fabric, synthetic fiber, plastic, pottery, clay, soil and the like. The first group is products worn by people in daily life, and is constituted using cloth, paper, non-woven fabric, synthetic fiber or the like as a base material. Typical examples include clothes, trousers, shirts, suits, skirts, sweaters, inners, tights, pants, underwear, neck warmers, mufflers, socks, shoes, hats, glasses, eyeglass frames, accessories, and includes products having the same or similar functions as these. The second group is products used in people's living environment. Typical examples include bedding, futons, pillows, pillowcases, cushions, carpets, and rugs, but the term also includes items with the same or similar functions. The third group consists of products used in people's diets. Typical examples include plates, bowls, glasses, and cups, but the term also includes items with the same or similar functions. The fourth group consists of products that people use for beauty, health promotion, hygiene, and medical assistance. This includes toothbrushes, sanitary masks, showerheads, and other items with the same or similar functions. The fifth group consists of products used for raising animals other than humans and for growing plants. This includes items such as bird feeders, flower pots, and vases, as well as items with the same or similar functions. The above shows a classification of functional products by application, but the present invention applies to any material that can be processed with Venato, and as can be seen, the scope of application of this invention is extremely broad.

[0011] Used in the present invention The transfer medium for wave energy is the nanoplatinum colloid solution itself. By immersing a product or its substrate in this solution, or by spraying or kneading it into the product or its substrate, the ultrafine platinum particles, along with the water molecules of the platinum colloid solution, penetrate into the countless pores and gaps on the surface of the product or its substrate that are far larger than the platinum particles themselves. Even after the water molecules have penetrated and flowed away or evaporated, the particles remain, so even if dirt is wiped off the surface of the product or substrate or washed away with detergent, they remain almost permanently fixed. Furthermore, when dyes or pigments are used in products or product substrates, these can be mixed with a nanoplatinum colloid solution and used as dyes or pigments. In particular, when the substrate is plastic, a resin product can be made by manufacturing pellets kneaded with pigment and then mixing and molding them together with virgin pellets. The nanoplatinum colloid solution used in this invention is prepared by ultra-fine particles of metallic platinum reduced to nanoscale and dispersed in a medium. It is manufactured using a special method.

[0012] Figure 3 shows microscopic images of cloth and silk. When observed microscopically, the fabrics, paper, nonwoven fabrics, wood, plastics, clays, etc. that serve as the base materials for the functional products of the present invention have structures that are full of gaps and pores. For example, in the case of cloth, as shown in Figure 3, countless cellulose fibers are intertwined, and countless gaps exist between them. Furthermore, the cellulose fibers themselves have numerous bumps and pores. Substrates such as paper, wood, plastic, and clay also have countless pores. The ultrafine particles of platinum dispersed in the medium of the nanoplatinum colloid solution are remarkably small compared to these gaps and pores. For example, if the cellulose in the base material is measured in microns, then the ultrafine particles of platinum are measured in nanometers, which is 1 / 1000th or 1 / 10,000th of that size. Therefore, when the aforementioned processing is applied to substrates such as cloth, paper, wood, and plastic, the platinum ultrafine particles, together with the water molecules that are the medium of the colloidal solution, penetrate into gaps and pores or become entangled on the surface of the cellulose. In this way, platinum ultrafine particles that have entered the product or its substrate along with water molecules in the platinum colloid solution remain fixed by clinging to the surface of the cellulose or penetrating into pores and gaps, even if the water molecules subsequently flow out or evaporate as water vapor. Furthermore, the platinum ultrafine particles act as a catalyst and do not chemically react with ordinary detergents or chemicals, so they are not removed even when the substrate is washed with detergent. Due to this principle, products and their substrates that have undergone the aforementioned processing using a nanoplatinum colloid solution will have countless ultrafine platinum particles immobilized and supported, allowing the antibacterial and deodorizing effects of metallic platinum to be sustained for a long time. Furthermore, in the functional product of the present invention, wave energy of a specific frequency band is irradiated onto nanoplastic particles and transferred, becoming a wave energy radiator. Since it is evenly dispersed and fixed inside the product or substrate, it functions as a stable wave energy radiator.

[0013] The following effects of terahertz waves on people and the living environment have already been proven, and the functional product of this invention also becomes a terahertz radiator based on the above principle, and will sustain the following effects for a long time. 1) Separate hydrogen bonds When this invention is applied to containers for drinking water, alcoholic beverages such as whiskey, shochu, and sake, as well as coffee, tea, and other beverages, the hydrogen bonds in the water are broken by terahertz waves. As a result, the water molecule clusters become finer, resulting in a smoother texture and bringing out the original taste, aroma, and flavor of the ingredients. Furthermore, the finely clustered water molecules bind to proteins and minerals, penetrating deep into cells, thus activating them and providing a rejuvenating effect. Furthermore, when hydrogen bonds are broken by terahertz wave radiation, negative ions and electrons are released, which helps to slightly alkalize an oxidized body and adjust the ion balance to a healthy state. Therefore, it separates and purifies the rouleaux state of red blood cells, normalizes the red blood cells, and efficiently delivers oxygen and nutrients to cells, thereby activating them. Furthermore, because the water molecule clusters are broken down into smaller particles, harmful substances trapped within the water molecule clusters can be expelled from the cells, resulting in a detoxifying effect. 2) Detoxification of reactive oxygen species When terahertz waves are emitted, negative ions and electrons are generated in the air, which has the effect of neutralizing reactive oxygen species that are produced when cells generate energy, thus rendering reactive oxygen species, which are said to be the cause of all diseases, harmless. 3) Adjust the balance of the autonomic nervous system and enhance the body's natural healing power. Terahertz wave radiation generates electrons, which reduce and repair oxidized cells, thus enhancing the body's natural healing abilities and rejuvenating cells. It also mitigates electromagnetic radiation damage that weakens the immune system. Furthermore, terahertz waves correct brainwaves, smooth the propagation of the autonomic nervous system, especially the parasympathetic nervous system, and adjust the balance of the autonomic nervous system. At the same time, it has the effect of increasing lymphocytes and boosting immunity. 4) Improve skin metabolism Terahertz waves have superior penetration and internal absorption compared to far-infrared rays, penetrating deep into the body. The electrons generated by terahertz wave radiation are taken up by cells, normalizing them and promoting cell turnover. This improves skin metabolism and has cosmetic effects that alleviate blemishes, wrinkles, atopic dermatitis, and rough skin.

Claims

1. A wave energy transfer medium manufactured by a manufacturing method that alters a nanoplatinum colloidal solution in which nanometer-order platinum ultrafine particles are dispersed, by irradiating the nanoplatinum colloidal solution with terahertz waves. A method for manufacturing a functional product equipped with wave energy emission capabilities, characterized by transforming the product or its base material into a wave energy emitter by immersing or spraying it to fix it in place.

2. A wave energy transfer medium manufactured by a manufacturing method that alters a nanoplatinum colloidal solution in which nanometer-order platinum ultrafine particles are dispersed, by irradiating the nanoplatinum colloidal solution with terahertz waves. A method for manufacturing a functional product equipped with wave energy emission capabilities, characterized by transforming the product or its base material into a wave energy emitter by kneading and fixing the product or its base material into it.

3. A wave energy transfer medium is manufactured by a method that alters a nanoplatinum colloid solution containing nanometer-order platinum ultrafine particles as a dispersed phase by irradiating the nanoplatinum ultrafine particles with terahertz waves. A method for manufacturing a functional product equipped with wave energy emission capabilities, characterized by transforming the product or its base material into a wave energy emitter by kneading and fixing dyes or pigments used in the product or its base material.

Citation Information

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