TRANSPARENT POROUS SUSTAINED-RELEASE BODY AND METHOD FOR PRODUCING THE SAME, AND KIT OF SUSTAINED-RELEASE BODY, SUSTAINED-RELEASE APPARATUS, AND SUSTAINED-RELEASE METHOD

    公开(公告)号:US20190008134A1

    公开(公告)日:2019-01-10

    申请号:US15748983

    申请日:2016-08-05

    Applicant: SnG INC.

    Abstract: The present invention provides a porous sustained-release body in which transparency of a porous carrier changes. The porous sustained-release body includes an inorganic monolithic porous body 1 including a skeleton body 2 of an inorganic compound and air gaps 3,4 having a three-dimensional continuous network structure formed in the skeleton body 2, and a sustained-release liquid absorbed into air gaps 2, 3, wherein the inorganic monolithic porous body 1 is opaque at an initial state, which is a state before absorption of the sustained-release liquid in which air exists in the air gaps, and refractive index of the sustained-release liquid and refractive index of the skeleton body are the same within an error range within which a portion in which the sustained-release liquid is absorbed into the air gaps changes to transparent or semitransparent.

    Method for producing monolithic porous body comprising titania

    公开(公告)号:US10435305B2

    公开(公告)日:2019-10-08

    申请号:US15551887

    申请日:2016-02-24

    Applicant: SnG INC.

    Inventor: Riichi Miyamoto

    Abstract: Provided is a producing method that makes it possible to stably manufacture a homogeneous titania monolithic porous body by a sol-gel method using various titanium alkoxides as a titanium precursor. The method comprises the steps of; preparing a titanium precursor solution by mixing a titanium alkoxide other than titanium methoxide, which is a titanium precursor, and a first anion source in an organic solvent; preparing a sol by adding water or an aqueous solution containing a second anion source to the titanium precursor solution; forming a co-continuous structure of a titania hydrogel phase and a solvent phase by subjecting the sol to sol-gel transition and phase separation in parallel; and removing the solvent phase from the co-continuous structure, in which a temperature lower than the boiling point of the compound having the lowest boiling point present in the titanium precursor solution is maintained in the first three steps, and in which a blending amount of the first anion source or that of the first and the second anion sources is set such that a molar ratio of the first anion source or a molar ratio of the first and the second anion sources in total to the titanium precursor is equal to or higher than 1.05.

    METHOD FOR PRODUCING MONOLITHIC POROUS BODY COMPRISING TITANIA

    公开(公告)号:US20180037468A1

    公开(公告)日:2018-02-08

    申请号:US15551887

    申请日:2016-02-24

    Applicant: SnG INC.

    Inventor: RIICHI MIYAMOTO

    Abstract: Provided is a producing method that makes it possible to stably manufacture a homogeneous titania monolithic porous body by a sol-gel method using various titanium alkoxides as a titanium precursor. The method comprises the steps of; preparing a titanium precursor solution by mixing a titanium alkoxide other than titanium methoxide, which is a titanium precursor, and a first anion source in an organic solvent; preparing a sol by adding water or an aqueous solution containing a second anion source to the titanium precursor solution; forming a co-continuous structure of a titania hydrogel phase and a solvent phase by subjecting the sol to sol-gel transition and phase separation in parallel; and removing the solvent phase from the co-continuous structure, in which a temperature lower than the boiling point of the compound having the lowest boiling point present in the titanium precursor solution is maintained in the first three steps, and in which a blending amount of the first anion source or that of the first and the second anion sources is set such that a molar ratio of the first anion source or a molar ratio of the first and the second anion sources in total to the titanium precursor is equal to or higher than 1.05.

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