Patent classifications
C07C245/08
GREEN LIGHT SACRIFICIAL LAYER AND METHOD OF MANUFACTURING TOUCH DISPLAY DEVICE
A green light sacrificial layer and a method for manufacturing a touch display panel are disclosed. The green light sacrificial layer is made of a green light sacrificial layer material. A material of the green light sacrificial layer comprises an azobenzene derivative. The green light sacrificial layer is applied to the preparation of the touch display panel, thereby preventing the touch display panel from being damaged during a manufacturing process and enhancing the performance of the touch display panel.
GREEN LIGHT SACRIFICIAL LAYER AND METHOD OF MANUFACTURING TOUCH DISPLAY DEVICE
A green light sacrificial layer and a method for manufacturing a touch display panel are disclosed. The green light sacrificial layer is made of a green light sacrificial layer material. A material of the green light sacrificial layer comprises an azobenzene derivative. The green light sacrificial layer is applied to the preparation of the touch display panel, thereby preventing the touch display panel from being damaged during a manufacturing process and enhancing the performance of the touch display panel.
Photoisomeric compounds and device comprising the same
Disclosed are a series of photoisomeric compounds, preparation method therefor and device comprising the compounds, wherein a photoisomeric compound-graphene molecular junction device is formed by linking the photoisomeric compound to a gap of two-dimensional monolayer graphene having a nano-gap array via an amide covalent bond. When a single photoisomeric compound is bridged to the gap of the two-dimensional monolayer graphene having a nano-gap array, the devices have a reversible light-controlled switching function and a reversible electrically-controlled switching function. A molecular switch device prepared by the method can achieve a high reversibility and a good reproducibility. The number of light-controlled switching cycles can exceed 10.sup.4, and the number of electrically-controlled switching cycles can reach about 10.sup.5 or greater. Moreover, the above-mentioned reversible molecular switch device remains stable within a period of more than one year. In addition, flexible non-losable organic memory transistor devices and light-responsive organic transistor devices can be constructed using the above-mentioned series of photoisomeric compounds.
A CONTINUOUS PROCESS FOR THE SYNTHESIS OF AZO DYES INVOLVING IN-SITU GENERATION OF DIAZONIUM SALTS
The present disclosure provides a continuous process for the synthesis coupled compounds of diazonium salts including azo dyes involving in-situ generation of diazonium salts. It further discloses a set up to carry out the process for the synthesis of coupled compounds of diazonium salts.
Photoswitchable HDAC inhibitors
This invention relates to photoswitchable inhibitors of histone deacetylases and methods of using the same.
Photoswitchable HDAC inhibitors
This invention relates to photoswitchable inhibitors of histone deacetylases and methods of using the same.
POLYMERIZABLE COMPOUND AND OPTICALLY ANISOTROPIC OBJECT
The present invention aims to provide a polymerizable compound that has high storage stability without causing crystal precipitation when added to a polymerizable composition and to provide a polymerizable composition containing the polymerizable compound. A polymer film produced by polymerization of the polymerizable composition has a low haze, high thickness uniformity, low occurrence of nonuniform orientation, high surface hardness, high adhesiveness, and good appearances and fewer orientation defects even after ultraviolet irradiation. The present invention also aims to provide a polymer produced by polymerization of the polymerizable composition and an optically anisotropic body produced from the polymer.
COMPOUND FOR USES IN OPTICAL AND ELECTROOPTICAL DEVICES
A compound having the following formula:
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which can also be embedded into a conjugated oligomeric of polymeric backbone, is proposed for optical and electro optical applications.
METHOD FOR PRODUCING BIPHENYLAMINES FROM AZOBENZENES BY RUTHENIUM CATALYSIS
The present invention relates to a novel method for preparing substituted biphenylamines
METHOD FOR PRODUCING BIPHENYLAMINES FROM AZOBENZENES BY RUTHENIUM CATALYSIS
The present invention relates to a novel method for preparing substituted biphenylamines