Abstract:
본 발명은 영장류 뇌 정위 장치에 관한 것으로, 영장류 동물의 뇌 좌표 기준점을 표시할 수 있는 시뮬레이터를 이용하여 뇌 정위 장치에 뇌 좌표 기준점을 표시하고, 이를 이용하여 뇌 좌표 기준점에 대응되는 영점 위치에 초기 세팅할 수 있도록 하고, 이에 따라 영장류 동물의 뇌 좌표를 확인하기 위한 MRI 장비와 같은 고가의 장비 없이도 편리하고 정확하게 뇌 좌표 기준점을 확인할 수 있고, 이를 통해 뇌에 대한 타겟팅 시술을 가능하게 하는 영장류 뇌 정위 장치를 제공한다.
Abstract:
본발명은 a) C1~C14의알킬기를갖는 (메타)아크릴레이트계단량체; 히드록시기를갖는 (메타)아크릴레이트계단량체, 카복실기를갖는 (메타)아크릴레이트계단량체또는이들의혼합물;을중합하는단계; 및 b) 상기중합체에 C8~C12의알킬글리시딜에테르를투입하여그라프트(부가반응)하여중합하는단계;를포함하는점착제조성물의제조방법및 이의제조방법으로부터제조된점착제조성물에관한것이다.본발명에따른점착제조성물은젖음성및 재박리성이우수하다.
Abstract:
본 발명은 a) C1~C14의 알킬기를 갖는 (메타)아크릴레이트계 단량체; 히드록시기, 카르복실기 또는 글리시딜기를 갖는 (메타)아크릴레이트계 단량체 또는 이들의 혼합물; 및 개시제를 혼합하여 중합하는 단계; 및 b) 상기 중합체의 측쇄에 탄소-탄소 이중결합을 갖는 광경화 단량체, 촉매 및 중합금지제를 투입하여 부가중합하는 단계 를 포함하는 점착제 조성물의 제조방법 및 이의 제조방법으로 제조된 점착제 조성물에 관한 것이다. 본 발명에 따른 점착제 조성물은 젖음성이 우수하고 자외선 조사후 박리력이 낮으며 경시안정성이 우수하며 피착제에 잔유물을 남기지 않는다.
Abstract:
본 발명은 a) C1~C14의 알킬기를 갖는 (메타)아크릴레이트계 단량체; 히드록시기 또는 카복실기를 갖는 (메타)아크릴레이트계 단량체 또는 이들의 혼합물; 및 개시제를 혼합하여 중합하는 단계; 및 b) 상기 중합체에 C8~C12의 알킬글리시딜에테르 및 촉매를 투입하여 부가중합하는 단계; 를 포함하는 점착제 조성물의 제조방법 및 이의 제조방법으로부터 제조된 점착제 조성물에 관한 것으로, 본 발명에 따른 점착제 조성물은 젖음성 및 재박리성이 우수하다.
Abstract:
PURPOSE: An adhesive composition is provided to have excellent wettability, thereby constantly maintaining initial adhesion, without bubbles or residue remaining on an adherend as time passes, and to have excelled adhesion and re-detaching ability. CONSTITUTION: An adhesive composition comprises a step of polymerizing a (meth)acrylate based monomer having a C1-C14 alkyl group, a (meth)acrylate based monomer having a hydroxy group, and a (meth)acrylate based monomer having carboxy group; and a step of graft-polymerization by putting a C8-12 alkyl glycidyl ether into the polymer. The polymer comprises 70-90 weight% of a (meth)acrylate based monomer having a C1-14 alkyl group.
Abstract:
PURPOSE: A manufacturing method of an adhesive composition is provided to provide to have simple manufacturing process, to provide adhesive composition having excellent wettability, low releasing force after ultraviolet irradiation, and excellent curing stability, and not remaining residues to an object. CONSTITUTION: A manufacturing method of an adhesive composition comprises: a step of polymerization by mixing a (meth)acrylate based monomer containing a C1-14 alkyl group, a (meth)acrylate based monomer containing a hydroxy group, a carboxy group, or a glycidiyl group, or a mixture thereof, and an initiator; and a step of addition polymerization by putting a photocurable monomer with carbon-carbon double bond having a carbon-carbon double bond, a catalyst, and polymerization inhibitor into the side chain of the polymer.
Abstract:
PURPOSE: A manufacturing method of addition reaction type adhesive composition is provided to have excellent wettability thereby maintaining initial adhesion constantly, and not to have excellent adhesion and releasing force even as time passed without remaining bubbles or residues in an object. CONSTITUTION: A manufacturing method of addition reaction type adhesive composition comprises: a step of polymerizing a C1-14 alkyl group (meth)acrylate-based monomer containing a C1-14 alkyl group, a (meth)acrylate-based monomer containing a hydroxy group, or a carboxy group, and an initiator; and a step of addition polymerization by putting C8-12 alkyl glycidyl ether and a catalyst into the polymer. The catalyst is one or more selected from an imidazole compound, triphenylphosphine, para-toluenesulfonic acid, and tertiary amine.
Abstract:
The present invention provides an organic-inorganic nanocomposite including a titanium dioxide-carbon material composite for decomposing organic pollutants, wherein the titanium dioxide-carbon material composite is dispersed in a polymeric material and the titanium-carbon material composite includes, as a carbon material, a graphene-carbon nanotube mixture, which is the mixture of graphene and carbon nanotubes, and titanium dioxide fixed to the surface of the graphene-carbon nanotube mixture.
Abstract:
The present invention relates to a graphene manufacturing method from graphite by instantaneous expansion, by immersing the graphite in a solvent, allowing the solvent to spread to the inside of the graphite layer, and instantaneously releasing pressure in a high-temperature pressurization condition thereby vaporizing the solvent. More specifically, the present invention is to provide a manufacturing method of graphene which comprises: a step of adding graphite in a solvent and immersing; a step of allowing the solvent to spread between layers of the immersed graphite; a step of instantaneously releasing pressure under high temperature and high pressure conditions or high pressure conditions and expanding.
Abstract:
The present invention provides electric field sensitive hydrogel in which carbon materials are dispersed in polymer hydrogel in an IPN form, a drug carrier using the same, and a manufacturing method thereof. The electric field sensitive hydrogel of the present invention has high compression strength for preventing the damage when the hydrogel is produced into a patch, and has high electric field sensitivity under high voltage.