HORIBA
Search English
Brazil
  • Produtos
    • Automotivo
    • Energy and Environment
    • Processos e Meio Ambiente
    • Life Science
    • Healthcare
    • Materials
    • Semicondutor
    • Científico
    • Água & Líquidos
    • Todos produtos HORIBA de A a Z
  • Aplicações
    • Arte, entretenimento e recreação
      • Art Conservation
      • Museums, Historical Sites and Similar Institutions
    • Biopharma and Pharma
    • Biotechnology and Biomedical
    • Cosmetics
    • Educação, P&D e Instituições Governamentais
      • Universities
      • Research and Testing Laboratories
    • Energia e Meio Ambiente
      • Why HORIBA
      • Hydrogen Energy
        • Global Initiatives
        • Global Trends and Strategies toward Carbon Neutrality
        • Fuel Cell Evaluation
        • FCEV / FCV Evaluation
        • Stationary Fuel Cells
        • Sintering and Reduction Test Station
        • Evaluation of Hydrogen and Ammonia Engine / Gas Turbine for Power Generation
        • Hydrogen Station Evaluation
        • Water Electrolysis Evaluation
        • Hydrogen Production Evaluation
      • Energy Usage Optimization
        • Energy Management System
        • Environmental Impact Assessment (LCA and GHG Protocol)
        • Battery Manufacturing/Recycling
      • CO2 Capture and Carbon Resource Circulation
        • Reduce
        • Direct Carbon Capture
        • Carbon Resource Circulation
      • Coal and Consumable Fuels
      • Electric Utilities
      • Energy Fuel Oil
      • Environmental Countermeasures
      • Petroleum and Coal Products Manufacturing
        • Petrochemicals
      • Photovoltaics
      • Oil and Gas
      • RoHS and ELV
    • Alimentos e Bebidas
      • Agriculture & Crop Science
      • Beverages
      • Food
      • Food & Beverage Manufacturing
    • Saúde
    • Indústria
      • Battery
      • Commercial and Professional Services
        • Gas mass flow control and measurement for reference value of PM2.5 measurement
      • Construction & Engineering
      • Electrical Equipment
      • Machinery
    • Tecnologia da Informação
      • Semiconductors
        • 2D Materials
        • Graphene
        • Photovoltaics
        • Display Technologies
        • Data Storage
        • Nanomaterials
      • Semiconductor Manufacturing Process
      • Technology Hardware and Equipment
    • Materiais
      • Carbon
      • Polymers and Composites
      • Raw Materials for Semiconductors
      • Metals
      • Minerals
      • Corrosion
      • Ceramics
      • Glass
      • Chemicals
      • Chemical Manufacturing
      • Construction Materials
      • Containers and Packaging
      • Paper, Forest Products and Manufacturing
      • Material Research
      • Photovoltaics
      • Forensic Science
    • Mobilidade e Transporte
      • Automotive Manufacturing
      • Engine, Turbine and Power Transmission Equipment Manufacturing
      • Real Driving Emissions
      • Intelligent Lab
      • Marine
    • Gestão de Resíduos
      • Solid Waste Management and Remediation Services
      • Water Waste Management and Remediation Services
        • Waste Water and Soil Analysis
        • Waste Water Treatment and Disposal
      • Plastic Waste
    • Água
      • Drinking Water Utilities
      • Water Reuse
        • Water Testing
  • Tecnologia
    • Análise Elemental
      • Energy Dispersive X-ray Fluorescence (ED-XRF)
        • What is X-ray Fluorescence (XRF)
        • What is X-ray Fluorescence Spectroscopy (micro-XRF)?
        • XRF Key Components
        • XRF Analysis
        • XRF Articles
        • HORIBA XRF Analyzers
      • Glow Discharge Optical Emission Spectroscopy
        • What is Glow Discharge Optical Emission Spectroscopy GDOES?
        • Sample Measurement with GDOES
        • Sample Test and Analysis
        • Comparison with Other Techniques: Surface Analysis
        • Comparison with Other Techniques: Bulk Analysis
        • Instrument Introduction
        • Benefits and Features of Pulsed RF GDOES
        • Join the GD Community
        • Bibliography
      • Inductively Coupled Plasma - Optical Emission Spectroscopy (ICP-OES)
        • Inductively Coupled Plasma - Optical Emission Spectroscopy (ICP-OES)
        • Scientific ICP Spectrometers
        • Applications for ICP-OES
        • ICP-OES and other techniques
        • Principles and Theory
        • Instrumentation
        • Excitation Source
        • Dispersive System
        • Detection Systems Used with ICP-OES
        • Performances in ICP-OES
      • Carbon/Sulfur & Oxygen/Nitrogen/Hydrogen Analysis
    • Cuidados para Saúde
      • Multi Distribution Sampling System (MDSS)
      • Reticulocytes Analysis
      • CBC + CRP
      • Slide Production
      • Automatic Rerun
      • Absorbance
      • Fluorescence
      • Flow cytometry
      • Impedance / Resistivity
      • Sedimentation
      • Spectrophotometry
      • Potentiometry
      • INR screening
      • Clotting
      • Turbidimetric
      • Chromogenic
    • Dispersão de luz
      • Dynamic Light Scattering (DLS) Particle Size Distribution Analysis
      • Molecular Weight
      • Nanoparticle Tracking Analysis
      • Static Light Scattering (SLS) / Laser Diffraction Particle Size Distribution Analysis
      • Zeta Potential
      • Centrifugal Sedimentation
    • Controle de fluídos
      • Vaporization of Critical Process Chemistries
      • Coriolis Flowmetry
      • Thermal Mass Flowmetry
    • Espectrometria de massa
      • Quadrupole Mass Spectrometry
    • Microscopia e Imagem
      • AFM-Raman
        • AFM-Raman
        • What is Tip Enhanced Raman Spectroscopy?
        • What information does TERS provide?
        • How does enhancement of the Raman signal occur in TERS?
        • What are the TERS instrumental configurations?
        • What are the TERS tips materials and morphology?
        • What kind of substrates can be probed with TERS?
        • What is the SPM feedback used for TERS?
        • What is the spatial resolution of TERS?
        • What is the definition of TERS Enhancement factor?
        • What is nonlinear TERS?
        • What are the degradation issues and artifacts in TERS?
        • What are the main TERS applications in Materials Sciences?
        • What are the main Life Sciences TERS applications?
        • References
        • Products
      • Atomic Force Microscopy [AFM]
      • Cathodoluminescence
      • Image Analysis of Particles
      • Micro X-ray Fluorescence
      • Raman Microscopy
    • Fisissorção
      • Surface Area
    • Espectroscopia
      • Cathodoluminescence Spectroscopy
        • Cathodoluminescence Spectroscopy
        • Electron Microscope
        • SEM, ESEM, SEM-FIB, (S)TEM
        • EM Add-on detector
        • SEM-Cathodoluminescence (SEM-CL)
      • AFM-Raman
      • Detectors
        • Introduction to the detectors techniques
        • What is a CCD Detector?
        • What is an EMCCD Detector?
        • Selecting a CCD Camera for Spectroscopic Applications
        • The Relationship Between Wavelength and Pixel Position on an Array
        • Spectroscopy Detector Products
        • Scientific CCD Camera Products
      • 50 years of Diffraction Gratings
      • Diffraction Gratings Ruled and Holographic
      • Fluorescence Spectroscopy
        • Fluorescence Spectroscopy
        • Principles and Theory of Fluorescence Spectroscopy
        • What is the Jablonski Diagram?
        • What is a Fluorescence Measurement?
        • Steady State Fluorescence Techniques
        • What is Fluorescence Anisotropy or Fluorescence Polarization?
        • What are Luminescence Quantum Yields?
        • What is Ratiometric Fluorescence?
        • What is an Excitation Emission Matrix (EEM)?
        • What is A-TEEM spectroscopy?
        • What is Singlet Oxygen?
        • How to Calculate Signal to Noise Ratio
        • Fluorescence Lifetime Techniques
        • Products Using Fluorescence Spectroscopy
      • Quantum Cascade Laser (QCL) Spectroscopy
        • Optical Hardware
        • Concentration Calculation Algorithm
        • Application Fields
      • Raman Imaging and Spectroscopy
        • Raman Spectroscopy
        • History of Raman Spectroscopy
        • Application field
        • Comparison with other techniques
        • Raman analysis
        • Recording spectral images and profiles
        • Description: Combined/hybrid/hyphenated Raman system
        • Confocal Raman microscopy
        • Raman Spectrometer Presentation
        • How the technique is used
        • Raman Image Gallery
        • Related Products
      • Spectrometers and Monochromators
        • Monochromator System Optics
        • Bandpass and Resolution
        • Order, Resolution, and Dispersion
        • Choosing a Monochromator/ Spectrograph
        • Spectrometer Throughput and Etendue
        • Optical Signal to Noise Ratio and Stray Light
        • Entrance Optics
        • Spectrometer, Spectrograph and Monochromator Products
      • Spectroscopic Ellipsometry
        • Spectroscopic Ellipsometry
        • Advantages
        • Instrumentation
        • Measurement Techniques
        • Data Analysis
        • Cauchy dispersion module
        • Products
      • Vacuum Ultra Violet Spectroscopy
        • Vacuum Ultra Violet Spectroscopy
        • VUV technology
        • High Vacuum (HV), Ultra High Vacuum (UHV), gas purge
        • Light sources in VUV
        • VUV system: Detector
        • Aberration
        • References - Articles
      • X-ray Fluorescence
    • Ressonância plasmônica de superfície
      • Surface Plasmon Resonance imaging
        • Surface Plasmon Resonance Imaging (SPRi)
        • Brief History of the Technique
        • SPR Measurements, Application Field and Comparison with Other Techniques
        • The Basics of Label-free Biomolecular Interactions
        • Instrument Presentation
        • How SPRi is Used
        • Key Accessories. Sensorchips. Surface Chemistry
        • How are the Molecules Immobilized on the biochip?
        • Conclusion & Bibliography
  • Serviço
    • Serviços de Análises
      • Analysis Centers and Services
      • EMC Analysis Service
    • Calibração e Certificação
    • Suporte ao Cliente
      • HORIBA Medical Documentation Database
      • Medical Customer Support
      • On-Site Support
      • Software Support
    • Peças e Consumíveis
    • Testes e Consultoria
      • Automotive Testing Centers
    • Treinamento
      • Product Training
        • Scientific Product Training
        • Automotive Product Training
        • Medical Product Training
      • Technology Training
  • Institucional
    • Sobre a HORIBA
      • Home
      • Mensagem
      • Perfil da Empresa
      • Filosofia Corporativa
      • Code of Ethics
      • Nosso Futuro (Visão, Missão, Valores)
      • Corporate Governance
      • Conselho Administrativo
      • Cultura Corporativa
      • História
        • 1945–1960s
        • 1970s
        • 1980s
        • 1990s
        • 2000s
        • 2010s
        • 2020s
      • Group Companies
      • HORIBA Talk
    • Eventos
    • Carreira
    • Relações com Investidores
      • Home
      • Investor Relations News
      • IR Library
        • Financial Statements
        • Presentation Materials
        • HORIBA Report
      • Message from the CEO
      • Mid-Long Term Management Plan
      • Stock Information
      • Shareholders Meeting
      • Other IR Information
        • Investor Relations Calendar
      • Investor Relations Contact
    • Notícias
    • Responsabilidade Social
      • Sustainability
      • Topics
      • Message
      • Sustainable Management
        • Policy and Promotion System
        • Integrated Management System
        • Health and Productivity
        • UN Global Compact
      • HORIBARIANs
        • HORIBARIANs
        • Human Rights and Labor Management
        • Development of HORIBARIANs
        • Empowerment of Diverse HORIBARIANs
        • Occupational safety and health
      • Environment
        • Environment
        • Environmental Management
        • Climate Action
        • Reduction of Environmental Impact
        • Actions for RoHS Directive, REACH Regulation and GHS Regulations
        • Eco-Friendly Products
      • Social
        • Quality
        • Material Procurement
        • Social Activities
      • Governance
        • Governance
        • Corporate Governance
        • Internal Controls
        • Compliance Promotion Systems
        • Code of Ethics
        • Risk Management
      • HORIBA and the SDGs
      • HR and ESG related Data
      • HORIBA Report
      • Editing Policy
  • Contato
    • Fale conosco
    • Onde estamos

Molecular Weight open open
  • Molecular Weight
    HORIBA » Tecnologia » Dispersão de luz » Molecular Weight 

Back to Particle Characterization Products Overview
Back to Particle Webinar List
Back to Particle Applications

Molecular Weight Technology

The SZ-100V2 Nanoparticle Analyzer can be used in to measure the molecular weight of proteins, starches, polymers, and dendrimers. This data can be obtained by two different methods, dynamic light scattering and static light scattering. These methods are discussed below.

Dynamic Light Scattering

There is a well-known empirical correlation between the diffusion coefficient of a macromolecule and its molecular weight known as the Mark-Houwink-Sakurada equation.

where:

  • Dt is diffusion coefficient
  • k is an empirical constant
  • M is molecular weight
  • α is an empirical constant  

The values for k and α are found empirically for polymer/solvent pairs. That is, they must be specified for the polymer, solvent, and temperature. These values can be found in the literature. 

The disadvantage of this technique is that it relies on empirical constants and the nature of the average molecular weight. The advantages of this technique are that polymer concentration need not be well known and it is very fast.

Static Light Scattering

The SZ-100V2 can also be used in a static light scattering mode to measure the molecular weight of proteins, small particles, and polymers. These results are generated using a Debye plot created by measuring the scattered light at a single angle (90 °) at multiple sample concentrations. The intercept of the Debye plot is used to determine the molecular weight and the slope is used to calculate the second virial coefficient.

Molecular weight from static light scattering experiments uses the Rayleigh equation given below:

where:

  • K is the Debye constant
  • c is the sample concentration
  • Rθ is the Rayleigh ratio
  • Mw is the weight average molecular weight
  • A2 is the second virial coefficient  

The Debye constant is given by K=4π2n2(dn/dc)2/(λ4NA) where n is the refractive index of the liquid, (dn/dc) is the refractive index increment, λ is the wavelength of light in vacuum, and NA is Avagadro’s number. In most cases, all of these values are independent of molecular weight.

The limit give in the Rayleigh equation above deserves special attention. The equation only works at the limit of zero angle. One practice required for larger macromolecules is to use a multi-angle scattering instrument and extrapolate the result to zero angle. For smaller molecules (Rg < 20 nm), this is not necessary and data at a single angle can be used. However, this does introduce a systematic error that increases with angle used. That is, measurement results using back angle have about twice the systematic error compared to results obtained using scattering at right angle (90º). For this reason, the SZ-100V2 collects static light scattering data at 90º.

The disadvantages of this technique are that it requires careful sample preparation and is a time consuming measurement. The advantages of this technique are that the results are well-defined and do not rely on empirical correlations.

An example of Debye plots for several samples is shown in the figure below.

Debye plots to measure molecular weight

Pedido de Informação

Você tem alguma dúvida ou solicitação? Utilize este formulário para entrar em contato com nossos especialistas.

* Esses campos são obrigatórios.

Browse Products

nanoPartica SZ-100V2 Series
nanoPartica SZ-100V2 Series

Nanoparticle Analyzer

  • Products
    • All Products (A-Z)
    • Mobility
    • Energy and Environment
    • Life Science
    • Healthcare
    • Materials
    • Semiconductor
  • Applications
    • Drinking Water Utilities
    • Automotive Manufacturing
    • Semiconductor Manufacturing Process
    • Research and Testing Laboratories
  • Technology
    • Glow Discharge Spectroscopy
    • Pressure-based Flowmetry
    • Quadrupole Mass Spectrometry
    • Raman Spectroscopy
  • Service
    • On-Site Support
    • Spare Parts and Consumables
  • Company
    • News
    • Events
    • Career
    • History
    • Corporate Culture
  • Contact
    • Career Contact
    • Contact Form
    • Worldwide Locations
    • Investor Relations Contact

Terms and Conditions Política de Privacidade HORIBA Group Social Media