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Atomic Force Microscopy Market to Reach USD 813.05 Million by 2031, Exclusive Report by SNS Insider

The SNS Insider report indicates that the Atomic Force Microscopy Market Size was valued at USD 533.82 million in 2023 and is expected to reach USD 813.05 million by 2031, growing at a CAGR of 5.4% over the forecast period 2024-2031.

Market Report Scope

Atomic Force Microscopy (AFM) finds extensive use in materials science and biological sciences. AFM excels in imaging the topography of soft biological materials in their native environments, while also measuring and localizing various forces such as magnetic, mechanical, and adhesion strength. The three primary operational modes of AFM are contact mode, non-contact mode, and tapping mode, each catering to specific imaging needs and sample properties. AFMs play a vital role in imaging friction, elasticity, capacitance, surface potential, conductivity, magnetic forces, and liquid viscosity. These capabilities make AFMs indispensable in research, manufacturing, and healthcare sectors for precise characterization and analysis at the atomic and molecular levels.

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Top Companies Featured in Atomic Force Microscopy Market Report:

  • Bruker
  • Oxford Instruments
  • NanoMagnetics Instruments
  • AFM Workshop
  • Concept Scientific Instruments
  • Park Systems
  • Hitachi High-Tech
  • Nanonics Imaging
  • Semilab
  • Nano Scan Technologies

Market Analysis

In recent times, the demand for high-speed diagnostics has surged across healthcare, manufacturing, and research sectors. This trend is driven by the need for rapid and accurate diagnosis, crucial for timely medical interventions and treatment decisions, especially in critical conditions like infectious diseases and cancer. High-speed diagnostics also enhance quality control and process optimization in manufacturing, while expediting data collection and experimentation in research and development, thus fostering innovation.

Atomic Force Microscopy Industry Segmentation as Follows:


  • Research Grade AFM
  • Industrial Grade AFM


  • Probes
  • Atomic Force Microscopes
  • Software


  • Material Science
  • Life Sciences
  • Academics
  • Semiconductors and Electronics
  • Others

The semiconductor and electronics segment dominates the Atomic Force Microscopy market, primarily due to its crucial role in characterizing semiconductor materials and devices at the nanometer scale, alongside providing feedback for various analyses vital for quality control assessments.

Factors Driving Growth of Atomic Force Microscopy Market

  • Continuous innovation in AFM technology, including improvements in resolution, speed, and automation, is a significant growth driver. Advancements such as the development of autonomous AFM systems, like the Park FX40, streamline imaging processes, enhance efficiency, and expand application possibilities, driving market growth.
  • The expanding application of AFM across diverse sectors such as materials science, life sciences, semiconductors, electronics, and academia is fueling market growth. In materials science, AFM enables precise characterization of material properties at the nanoscale, essential for research and development in various industries. In life sciences, AFM facilitates imaging and analysis of biological samples with unprecedented detail, contributing to advancements in areas such as drug discovery and cellular biology.
  • In manufacturing and industrial settings, AFM plays a vital role in quality control, process optimization, and failure analysis. Its ability to provide detailed surface topography and mechanical property information allows manufacturers to ensure product quality, optimize manufacturing processes, and troubleshoot issues efficiently, driving market growth in these sectors.

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Impact of Russia-Ukraine War

The ongoing crisis has introduced complexities in global markets, including the AFM market. However, technological advancements and increasing adoption across sectors have sustained the AFM market’s growth trajectory. Projections indicate significant growth in the Asia-Pacific region, fueled by heightened investment in research and development and the availability of nanomaterials.

Impact of Economic Slowdown

While specific details regarding the impact of the global economic downturn on the AFM market are not outlined, the market’s anticipated growth and active competitive landscape suggest resilience. Factors such as governmental support for nanotechnology research, rising demand in key sectors, and increasing applications in life sciences are expected to mitigate economic challenges.

Atomic Force Microscopy Market
Atomic Force Microscopy Market Size and Share Report

Key Regional Development

North America leads the global Atomic Force Microscopy (AFM) market due to its advanced technological infrastructure, robust research and development ecosystem, and strategic partnerships. In contrast, the Asia Pacific region anticipates the fastest Compound Annual Growth Rate (CAGR) fueled by rapid industrialization, rising research and development investments, and an expanding nanotechnology market.

Similarly, Latin America, the Middle East, and Africa are poised for moderate growth, by emerging opportunities in research and industry, government support for technological advancement, and increasing awareness and education initiatives. Collectively, these regional dynamics underscore the global AFM market’s resilience and potential for expansion across diverse sectors.

Key Takeaways

  • AFM market poised for significant growth driven by technological advancements and increasing applications across sectors.
  • Semiconductors and electronics segment leads market growth due to nanoscale characterization needs.
  • Asia-Pacific emerges as a key growth region, fueled by investments in research and development.

Recent Developments

In June 2021: Park Systems introduced the Park FX40, an autonomous AFM capable of executing all upfront setup and scanning processes independently, marking a milestone in nanoscale imaging technology.

Major Key Points from Table of Content

1. Introduction
2. Research Methodology
3. Market Dynamics
4. Impact Analysis
5. Value Chain Analysis
6. Porter’s 5 forces model
7. PEST Analysis
8. Atomic Force Microscopy Market Segmentation, By Type
9. Atomic Force Microscopy Market Segmentation, By Offering
10. Atomic Force Microscopy Market Segmentation, By Application
11. Regional Analysis
12. Company Profile
13. Competitive Landscape
14. USE Cases and Best Practices
15. Conclusion


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