C07D321/06

Salt, acid generator, resist composition and method for producing resist pattern

A salt represented by formula (I), a generator and a resist composition: ##STR00001##
wherein R.sup.1 and R.sup.2 each independently represent an iodine atom, a fluorine atom or an alkyl fluoride group having 1 to 6 carbon atoms; R.sup.4, R.sup.5, R.sup.7 and R.sup.8 each independently represent a halogen atom, a hydroxy group, a haloalkyl group having 1 to 12 carbon atoms or an alkyl group having 1 to 12 carbon atoms, —CH.sub.2— included in the haloalkyl group and the alkyl group may be replaced by —O—, —CO—, —S— or —SO.sub.2—; X.sup.1 and X.sup.2 each independently represent an oxygen atom or a sulfur atom; m1 represents 1 to 5, m2 and m8 represent 0 to 5, and m4, m5 and m7 represent an integer of 0 to 4, in which 1≤m1+m7≤5, 0≤m2+m8≤5; and AI.sup.− represents an organic anion.

COMPOUND, COMPOSITION, CURED PRODUCT, OPTICALLY ANISOTROPIC BODY, AND REFLECTIVE FILM
20210198230 · 2021-07-01 · ·

The present invention provides a compound having an excellent rate of change in HTP due to exposure. The present invention further provides a composition formed of the compound, a cured product, an optically anisotropic body, and a reflective film.

The compound of the present invention is a compound represented by General Formula (1).

##STR00001##

SULFONIUM COMPOUND, CHEMICALLY AMPLIFIED RESIST COMPOSITION, AND PATTERNING PROCESS

A novel sulfonium compound of formula (A) and a chemically amplified resist composition comprising the same as a PAG are provided. When processed by photolithography using KrF or ArF excimer laser, EB or EUV, the resist composition has a high sensitivity and reduced acid diffusion and is improved in lithography properties.

##STR00001##

SULFONIUM COMPOUND, CHEMICALLY AMPLIFIED RESIST COMPOSITION, AND PATTERNING PROCESS

A novel sulfonium compound of formula (A) and a chemically amplified resist composition comprising the same as a PAG are provided. When processed by photolithography using KrF or ArF excimer laser, EB or EUV, the resist composition has a high sensitivity and reduced acid diffusion and is improved in lithography properties.

##STR00001##

Acetals of 1-(3,3-dimethylcyclohex-1-enyl) ethanone, method for the production thereof and use of same in perfumery
10723971 · 2020-07-28 · ·

The present invention concerns new fragrant compounds exhibiting animal or amber notes, without any woody aspect. More particularly, new acetal derivatives of 1-(3,3-dimethylcyclohex-1-enyl)ethanone are disclosed, which correspond to the following general formula I: ##STR00001##
as well as a method of synthesising said compounds, and their use in perfumery.

Acetals of 1-(3,3-dimethylcyclohex-1-enyl) ethanone, method for the production thereof and use of same in perfumery
10723971 · 2020-07-28 · ·

The present invention concerns new fragrant compounds exhibiting animal or amber notes, without any woody aspect. More particularly, new acetal derivatives of 1-(3,3-dimethylcyclohex-1-enyl)ethanone are disclosed, which correspond to the following general formula I: ##STR00001##
as well as a method of synthesising said compounds, and their use in perfumery.

Compound, composition, cured product, optically anisotropic body, and reflective film

The present invention provides a compound having an excellent rate of change in HTP due to exposure. The present invention further provides a composition formed of the compound, a cured product, an optically anisotropic body, and a reflective film. The compound of the present invention is a compound represented by General Formula (1). ##STR00001##

Electrolytic solution for lithium-ion secondary battery, and lithium-ion secondary battery

A lithium-ion secondary battery includes a positive electrode, a negative electrode, and an electrolytic solution. The electrolytic solution includes a solvent, an electrolyte salt, and at least one of a first dioxane compound or a second dioxane compound.

Electrolytic solution for lithium-ion secondary battery, and lithium-ion secondary battery

A lithium-ion secondary battery includes a positive electrode, a negative electrode, and an electrolytic solution. The electrolytic solution includes a solvent, an electrolyte salt, and at least one of a first dioxane compound or a second dioxane compound.

CROSSLINKING COMONOMERS FOR HIGH PERFORMANCE DEGRADABLE THERMOSETS

The present disclosure provides compounds of the formula (I): The present disclosure also provides copolymers prepared by polymerizing a first monomer (e.g., dicyclopentadiene) and the compounds. The copolymers may show increased degradability and increased or maintained glass-transition temperature, as compared to homopolymers of the first monomer.

##STR00001##