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DKSH는 소재과학, 생명과학, 화학 분석 분야의 전문성을 바탕으로 다양한 분석 기술을 제공합니다. 폭넓은 분석 경험과 다양한 시료 이해도를 기반으로 고객의 분석 요구를 파악하고 신뢰할 수 있는 결과를 도출합니다. DKSH의 실험실은 최신 분석 장비를 갖추고 있으며, 각 분야에서 숙련된 전문가가 테스트를 수행합니다. 고객 맞춤형 분석법 개발 및 검증, 분석 결과 해석까지 전반적인 서비스를 제공합니다.
Widely used technique in drug discovery, genomics, immunoprofiling for expression of surface protein and intracellular molecules, sorting cell populations, proliferation, cyto toxicity and cell death.
Particle size analysis in the range 0.01-3500 microns. For nanoparticle analysis see dedicated section.
Morphological analysis of particles in the range 0.5-10000 microns (size, shape, and transparency of particles). Integrated Raman chemical analysis with MDRS (Morphologically Directed Raman Spectroscopy).
Size, concentration, and zeta potential anlysis of nano-systems using light scattering techniques such as DLS, ELS and NTA techniques.
Viscosity measurement and visco-elastic properties characterization of liquid dispersions, complex fluids, and semi-solid materials.
Rapid and objective quantification of concentrated dispersion real stability using Multiple Light Scattering.
High pressure homogenizing technique to produce stable nanoemulsions, reduce particle size or molecular weight of polysaccharides, nanoencapsulation, de-agglomeration, etc.
Multiparametric characterization of exosomes and EVs including Sizing, Concentration per size range, Count, Phenotyping, Cargo, Integrity, Purity, etc.
Biomolecular interactions of proteins, antibodies, nucleic acids, lipids, and other biomolecules using ITC Microcalorimetry or BioLayer Interferometry BLI techniques.
SEC is the standard method for protein aggregate analysis. The choice of pore size is related to the size of the molecule to be separated.
Gel permeation chromatography (GPC) that separates analytes on the basis of size, typically in organic solvents. The technique is often used for the analysis of polymers.
XRF provides both qualitative and quantitative information on a wide variety of sample types. It can quantify elements from beryllium (Be) up to americium (Am) in concentrations from 100% down to sub-ppm level.
Phase identification is the most important application of X-ray diffraction (XRD). It is not only applied on powder samples but also on polycrystalline solids, suspensions, and thin films.
장비의 안정성과 인증 기준 준수를 위해 DKSH 전문가의 실험실 장비 지원 서비스를 이용해 보세요.
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