다음 MAP메이트™는 통합될 수 없습니다: -다른 분석 완충용액이 필요한 MAP메이트™. -인산 특이성 및 총 MAP메이트™ 조합, 예: 총 GSK3β 및 GSK3β(Ser 9). -PanTyr 및 자리 특이성 MAP메이트™, 예: Phospho-EGF 수용체 및 phospho-STAT1(Tyr701). -단일 표적(Akt, STAT3)를 위한 1개 이상의 1 phospho-MAP메이트™. - GAPDH 및 β-Tubulin은 panTyr를 포함하는 키트 또는 MAP메이트™와 통합될 수 없습니다.
Custom Premix Selecting "Custom Premix" option means that all of the beads you have chosen will be premixed in manufacturing before the kit is sent to you.
Catalogue Number
Ordering Description
Qty/Pack
List
이 제품은 즐겨찾기에 저장되었습니다.
종
패널 유형
선택하신 키트
수량
카탈로그 번호
주문 설명
포장 단위
기재 가격
96-Well Plate
수량
카탈로그 번호
주문 설명
포장 단위
기재 가격
다른 시약 추가 (MAP메이트 사용을 위해 완충용액과 검출 키트가 필요함)
수량
카탈로그 번호
주문 설명
포장 단위
기재 가격
48-602MAG
Buffer Detection Kit for Magnetic Beads
1 Kit
공간 절약 옵션 다수의 키트를 구매하시는 고객은 고용량 저장을 위해 키트 포장을 제거하고 비닐백에 담긴 멀티플레스 분석 구성품을 받아 저장 공간을 절약하도록 선택할 수 있습니다.
이 제품은 즐겨찾기에 저장되었습니다.
해당 제품은 고객님의 카트에 추가되었습니다.
이제 다른 키트를 사용자 지정하거나, 사전 혼합된 키트를 선택하거나, 결재하거나 또는 주문 도구를 종료할 수 있습니다.
Ion chromatography is used for the analysis of common anions (such as chloride, nitrite, nitrate, sulfate, etc.) and common cations (such as sodium, ammonium, potassium, etc.) in aqueous samples. It is also commonly used for larger charged molecules such as amino acids and proteins, as well as for carbohydrates.
While there are some alternatives to ion chromatography for the analysis of cations (such as Atomic Absorption Spectroscopy, ICP-MS, etc.), ion chromatography is required for the analysis of anions for which there are no other rapid analytical methods. It is only technique that can provide quantitative analysis of anions at the ppb level.
Ion chromatography is used in the environmental field, the power industry, the chemical industry, the pharmaceutical industry, the food and beverage industry, etc. Ultra-trace ion chromatography is used in fields such as the semiconductor industry.
Principle Ion chromatography is based on the ionic (Coulombic) interaction of analyte ions with a stationary phase displaying oppositely charged functional groups. The retention of the analyte is related to its affinity to the ion exchanger inside the column.
Ion chromatography includes several methods of separation: ion exchange (the method most commonly referred to), ion exclusion and ion pairing.
Columns Ion chromatography columns are usually made of functionalized grafted copolymer beads (polystyrene divinylbenzene, ethylvinylbenzene divinylbenzene, etc.) or grafted silica beads.
For anion analysis, the functional group is usually a strong quarternary ammonium group or weaker anion exchangers based on tertiary amine groups. For cation analysis, there is a wide variety of cation exchangers available, such as carboxylates, sulfonates, phosphonates, crown ethers, etc.
Mobile Phases The mobile phases used in ion chromatography are usually aqueous (typically: dilute acids, alkalis or salt solutions). Eluents for anions include carboxylic acids (aromatic or aliphatic), sulfonic acids and potassium hydroxide. Eluents for cations include inorganic acids (nitric acid…)
Small amounts of water-miscible organic solvents may sometimes be used as eluent modifiers.
Detection Methods Conductivity detection is the detection method most commonly used in ion chromatography. Other detection methods include spectroscopic detection (UV or fluorescence), potentiometric detection, and electrochemical detection (voltametry, amperometry, coulometry).
Ion Suppression Suppressors are often used in order to reduce the background conductivity due to the ions present in the mobile phase (eluent), and to improve the conductivity of the ions being tested. This improves the sensitivity of the analytical method, and the linearity of the calibration curves.
Sample Preparation Aqueous solutions, which may require filtration, dilution, and/or cleaning to remove interferences, are required for analysis. Solid samples are extracted with water to remove ions from the sample surface. Organic liquids may also be extracted with water to obtain an aqueous solution of ions for analysis.
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