摘要:
A sensor sheath for a catheter. The sensor sheath includes a substrate having at least one sensor associated therewith and an electronics unit in communication with the at least one sensor, wherein the substrate is configured to attach to a catheter.
摘要:
A low viscosity polysulfide sealant composition. The composition comprises a curable polysulfide polymer; a crosslinking agent; and a plurality of core-shell particles. The core-shell particles comprise: a core comprising a ferromagnetic material; and a shell comprising silica treated with an organic sulfur containing compound. The shell is capable of bonding with the polysulfide polymer.
摘要:
The present invention relates to a method for preparing highly active silica magnetic nanoparticles, highly active silica magnetic nanoparticles prepared by the method, and a method of isolating nucleic acid using the highly active silica magnetic nanoparticles. The highly active silica magnetic nanoparticles prepared according to the present invention contain magnetic nanoparticles completely coated with silica, can be used as a reagent for isolating biomaterials, particularly, nucleic acids, and can isolate and purify nucleic acid in a high yield.
摘要:
[Object] The structure of a ferromagnetic metal complex is clarified and a magnetic substance capable of reliably exhibiting a ferromagnetic property by having that structure is provided. [Solution] The present invention is a magnetic substance containing a metal complex compound composed of a plurality of metal complex molecules in which a heterocycle is bonded to metal, wherein the metal of the metal complex molecule is bonded to the metal of another metal complex molecule via an electron donor and a metal - electron donor - metal bond angle is from 130° to 160°.
摘要:
The present invention relates to a method for producing a suspension of agglomerates of magnetic alkoxysilane-coated metal nanoparticles, wherein an aqueous suspension of magnetic metal nanoparticles is incubated with alkoxysilane, wherein the incubation is carried out essentially in the absence of an organic solvent. The present invention further relates to suspension of agglomerates of magnetic alkoxysilane-coated metal containing nanoparticles obtainable by the method of the present invention and to a composition comprising agglomerates of magnetic alkoxysilane-coated metal nanoparticles, wherein the agglomerates have an average size of 30 to 450 nm, preferably of 50 to 350 nm and especially of 70 to 300 nm as determined by light scattering.
摘要:
The invention relates to nanoparticles (N), comprising an elongated core (10), which extends from a first end to a second end along a longitudinal axis (z) and which is formed by means of at least one first, magnetizable and/or magnetized material; wherein a first cover (20a) is formed on the core (10) at the first end and a second cover (20b) is formed on the core at the second end, the first cover and the second cover having a second, magnetocrystalline anisotropic material, wherein the core (10) is not covered by the first cover or the second cover along the longitudinal axis having a distance (d) greater than zero between the first cover (20a) and the second cover (20b). In this way, second material can be spared in relation to the generated coercive force. Accordingly, cost-saving solutions for permanent magnets are possible.
摘要:
Since the magnetic film of the present invention has a much thinner thickness compared to a corresponding conventional magnetic layer and radiator coil material assembly and has no adhesive layer or air layer between the magnetic layer and the radiator, permeability required at the time of charging can be improved, a loss rate can be reduced and high charging efficiency can be obtained, Furthermore, since a band width and a gain rate can be improved, the magnetic film can be very usefully applied to wireless charging products which pursue slimming in design.
摘要:
Provided is a thin sheet-shaped magnetic body holding on a resin film with an adhesive layer sandwiched between the thin sheet-shaped magnetic body and the resin film, wherein the thin sheet-shaped magnetic body is made from an Fe-based metal magnetic material, has a thickness of 15 µm to 35 µm and has an AC relative magnetic permeability µr of 220 or more and 770 or less at a frequency of 500 kHz.
摘要:
The present invention shows extremely small iron oxide nanoparticles, 2 nm core size, 68 Ga core-doped through a microwave driven synthesis that provides an expedited protocol with radiolabelling efficiency yield of around 90%, optimal for short half-lived isotopes. In vivo hot spot MRI (T 1 weighted contrast) and PET imaging are demonstrated with unprecedented quality for iron oxide-based dual modality probes. The results incorporated herein show, for the first time, a new concept for dual-modality nanoparticle production and effective probe production with single core integration of both sources of contrast that will surely boost a large number of cardiovascular applications.