C07F3/06

Zinc indicators for cellular imaging

The present disclosure provides compounds of the formula: ##STR00001##
wherein the variables are defined herein. The present disclosure also provides methods of imaging Zn.sup.2+ within granules in cells, such as pancreatic α-, β-, and δ-cells. The present disclosure also provides methods of sorting cells comprising the use of the compounds of the present disclosure.

Hypergolic metal organic frameworks

A hypergolic metal organic framework material for producing a hypergol when combined with an oxidizer, comprising a general structure M1-L-M2, wherein L is an aromatic organic linker comprising one or more unsaturated substituents, and wherein M1 and M2 are same or different metal cations.

Hypergolic metal organic frameworks

A hypergolic metal organic framework material for producing a hypergol when combined with an oxidizer, comprising a general structure M1-L-M2, wherein L is an aromatic organic linker comprising one or more unsaturated substituents, and wherein M1 and M2 are same or different metal cations.

METAL COMPLEX COMPOUND, AND METAL NANOSTRUCTURE AND CATALYST COMPOSITION COMPRISING THE SAME
20170368543 · 2017-12-28 ·

The present invention relates to a metal complex compound which are prepared in the form of a metal nanostructure having various stereo structures and thus can be used as a catalyst or the like having an excellent activity in preparing a polyalkylene carbonate resin and the like, and a metal nanostructure and a catalyst composition comprising the same. The metal complex compound comprises a plurality of linear inorganic coordination polymer chains having a form in which an oxalic acid is coordinated and linked to a transition metal and the plurality of polymer chains are linked to each other via a predetermined neutral ligand.

METAL COMPLEX COMPOUND, AND METAL NANOSTRUCTURE AND CATALYST COMPOSITION COMPRISING THE SAME
20170368543 · 2017-12-28 ·

The present invention relates to a metal complex compound which are prepared in the form of a metal nanostructure having various stereo structures and thus can be used as a catalyst or the like having an excellent activity in preparing a polyalkylene carbonate resin and the like, and a metal nanostructure and a catalyst composition comprising the same. The metal complex compound comprises a plurality of linear inorganic coordination polymer chains having a form in which an oxalic acid is coordinated and linked to a transition metal and the plurality of polymer chains are linked to each other via a predetermined neutral ligand.

EXPLOSIVE MICROPOROUS COORDINATION POLYMERS
20170369387 · 2017-12-28 ·

Employing non-energetic MCPs as hosts (fuel) for the adsorption of oxidant molecules enables the intimate and molecular scale mixing of fuel and oxidizer on a level that is not commonly achievable in traditional energetic mixtures. The adsorption of the oxidants into MOF-5 resulted in increased heat released upon decomposition, which shows potential for utilization of this method as a platform to develop high-performance primary energetic materials.

EXPLOSIVE MICROPOROUS COORDINATION POLYMERS
20170369387 · 2017-12-28 ·

Employing non-energetic MCPs as hosts (fuel) for the adsorption of oxidant molecules enables the intimate and molecular scale mixing of fuel and oxidizer on a level that is not commonly achievable in traditional energetic mixtures. The adsorption of the oxidants into MOF-5 resulted in increased heat released upon decomposition, which shows potential for utilization of this method as a platform to develop high-performance primary energetic materials.

METHODS AND DEVICES FOR THE PREPARATION OF NANOMATERIALS
20170361299 · 2017-12-21 ·

Disclosed herein are methods for preparing nanomaterials, such as nanoparticles. The methods can involve jet-mixing two or more precursor solutions to form the nanomaterials. By rapidly mixing the precursor solutions, nanomaterials of improved quality and uniformity can be prepared in high yield (e.g., in yields of at least 85%). The methods are also scalable, and allow for the continuous production of nanomaterials. Also provided are jet-mixing reactors that can be used to prepare nanomaterials using the methods described herein.

METAL HYDROXIDE COMPLEX COMPRISING MODIFIED MULTILAYER HYDROXIDE STRUCTURE COMPRISING ACTIVE INGREDIENT AND METHOD OF MANUFACTURING SAME
20230192726 · 2023-06-22 ·

The present invention relates to a metal by complex including the multilayer hydroxide structure of Chemical Formula 1, including a base layer, a surface layer and an active ingredient, a metal hydroxide complex manufactured by subjecting an active ingredient and a metal hydroxide structure precursor to coprecipitation through a precipitation reaction using an alcohol and water, and a method of manufacturing the same.

METAL HYDROXIDE COMPLEX COMPRISING MODIFIED MULTILAYER HYDROXIDE STRUCTURE COMPRISING ACTIVE INGREDIENT AND METHOD OF MANUFACTURING SAME
20230192726 · 2023-06-22 ·

The present invention relates to a metal by complex including the multilayer hydroxide structure of Chemical Formula 1, including a base layer, a surface layer and an active ingredient, a metal hydroxide complex manufactured by subjecting an active ingredient and a metal hydroxide structure precursor to coprecipitation through a precipitation reaction using an alcohol and water, and a method of manufacturing the same.