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Report ID: SEM0011
Pages: 183
Base Year: 2024
Format: PDF
Historical Date: 2019-2023
MARKET SCOPE:
The global Core Shell Quantum market is projected to grow significantly, registering a CAGR of 26.7% during the forecast period (2024 – 2032).
Core-shell quantum dots are nanoscale semiconductor particles with a unique structure consisting of a central core material surrounded by an outer shell. The core is typically made of a semiconductor material, and the shell is another semiconductor material with a different composition. This design imparts specific optical and electronic properties to the quantum dots, making them valuable for a range of applications. The size and composition of both the core and shell can be precisely controlled, allowing for tunable optical and electronic properties. This tunability is essential for tailoring the quantum dots to meet specific application requirements. The demand for high-quality displays with vibrant and accurate colors has driven the adoption of core-shell quantum dots in display technologies. Quantum dot-enhanced displays, such as QLEDs, are sought after for their improved color reproduction and energy efficiency. In biotechnology and medical imaging, there is a growing demand for advanced imaging agents. Core-shell quantum dots, with their fluorescence properties, are used as labeling agents in imaging techniques, contributing to the development of innovative diagnostic tools. The demand for energy-efficient and high-performance LED lighting solutions has led to the incorporation of core-shell quantum dots in LED technology. Quantum dot LEDs (QLEDs) offer enhanced color quality and efficiency compared to traditional LEDs.
MARKET OVERVIEW:
Driver: Increasing demand for LEDs is driving the market growth
The growing demand for LEDs (light-emitting diodes) has driven the adoption of quantum dots, including core-shell structures, in the development of quantum dot LEDs (QLEDs). QLEDs have gained popularity as energy-efficient and high-performance lighting solutions. QLEDs leverage core-shell quantum dots to achieve improved color quality in lighting applications. The tunable properties of quantum dots enable precise color control, resulting in vibrant and accurate colors in illumination. Core-shell quantum dots enable QLEDs to achieve a high level of color reproduction, making them suitable for applications where accurate and consistent color rendering is essential. This is particularly important in areas such as displays, signage, and architectural lighting. QLEDs, using core-shell quantum dots, are known for their energy efficiency. The quantum dots assist in converting blue light emitted by the LED into specific colors, improving the overall efficiency of the lighting system. This characteristic contributes to energy savings and environmental sustainability. QLEDs are employed in displays, TVs, and monitors to enhance color performance. The use of core-shell quantum dots allows for a wider color gamut, providing a more extensive range of colors and improving the visual experience for consumers.
Opportunities: Growing consumer needs for biomedical imaging and diagnostics is anticipated for the market growth in the upcoming years.
Core-shell quantum dots are employed as fluorescent labels in various biomedical imaging techniques. Their ability to emit bright and stable fluorescence allows for the visualization and tracking of specific biomolecules, cells, or tissues. The tunable nature of core-shell quantum dots enables the creation of particles with different emission wavelengths. This feature allows researchers to perform multicolor imaging, facilitating the simultaneous tracking of multiple biological targets within a single sample. In cellular imaging, core-shell quantum dots are used to label and study individual cells. Their high brightness and photostability make them ideal for capturing detailed images of cellular structures and processes in real-time. Core-shell quantum dots have shown promise for in vivo imaging, allowing researchers and clinicians to observe biological processes within living organisms. Their fluorescence properties enable non-invasive imaging, providing insights into organ function, disease progression, and treatment efficacy.
COVID IMPACT:
The pandemic has led to disruptions in global supply chains across various industries. If the production of core-shell quantum dots relies on the availability of specific raw materials or components, manufacturers may face challenges in maintaining a consistent supply. Many research laboratories and facilities were temporarily closed or operated at reduced capacities to adhere to social distancing measures. This may have led to delays in research and development activities related to core-shell quantum dots. The pandemic prompted shifts in funding priorities, with increased focus on healthcare-related research and urgent needs. Funding that might have been allocated to certain nanotechnology projects, including core-shell quantum dots, could have been redirected to COVID-19-related research. Collaboration among researchers and participation in scientific conferences play a crucial role in advancing nanotechnology. Restrictions on travel and gatherings might have limited collaborative efforts and the exchange of knowledge, potentially affecting the progression of research in the field. Economic uncertainties resulting from the pandemic may have led to budget constraints and funding challenges for research and development projects. This could impact both academic and industrial research involving core-shell quantum dots.
SEGMENTATION ANALYSIS:
The displays segment is anticipated to grow significantly during the forecast period
Core-shell quantum dots are utilized in quantum dot displays, which are a type of display technology used in televisions and monitors. The core-shell structure allows precise tuning of the quantum dots’ properties, leading to enhanced color accuracy and efficiency. Quantum dots, including core-shell quantum dots, are known for their ability to emit specific colors when stimulated. This property enables displays to achieve a wider color gamut, providing more vibrant and accurate colors compared to traditional display technologies. Quantum dot displays, employing core-shell quantum dots, often exhibit improved energy efficiency. This is achieved by optimizing the conversion of blue light to other colors, resulting in displays that are both bright and energy-efficient.
The Medical Devices segment is anticipated to grow significantly during the forecast period
Core-shell quantum dots can be engineered to emit specific wavelengths of light based on their size and composition. This property makes them suitable for medical imaging applications, including fluorescence imaging. Quantum dots could be incorporated into imaging devices to enhance contrast and provide real-time visualization of biological structures during medical procedures. Quantum dots’ ability to emit specific wavelengths can be harnessed for diagnostic purposes. They may be integrated into diagnostic tools for detecting and labeling specific biomolecules, aiding in the identification of diseases or conditions at the molecular level. The unique optical properties of core-shell quantum dots make them promising candidates for biosensor applications. They can be used to develop highly sensitive and specific biosensors for detecting biomarkers associated with various diseases. Quantum dots in biosensors could contribute to early disease detection and monitoring.
REGIONAL ANALYSIS:
The Asia Pacific region is set to witness significant growth during the forecast period
The Asia Pacific region is a significant player in both the production and consumption of nanotechnology-based materials, including core-shell quantum dots. Countries in the Asia Pacific, such as China, South Korea, Japan, and others, have been actively involved in research, development, and commercialization of nanomaterials. The Asia Pacific region hosts numerous research and development centers focusing on nanotechnology. These centers contribute to advancements in the synthesis and application of core-shell quantum dots. Countries like China are known for being manufacturing hubs for nanomaterials. The production of core-shell quantum dots may take place in facilities across the Asia Pacific region, driven by both domestic demand and global exports. Core-shell quantum dots find applications in the electronics industry, particularly in display technologies. The Asia Pacific region is a major player in the global electronics industry, with significant contributions from countries like South Korea and Japan.
COMPETITIVE ANALYSIS
The global Core Shell Quantum market is reasonably competitive with mergers, acquisitions, and Type launches. See some of the major key players in the market.
SCOPE OF THE REPORT
KEY REASONS TO PURCHASE THIS REPORT
** In – depth qualitative analysis will be provided in the final report subject to market
Primary and Secondary Research
In order to understand the market in detail we conduct primary and secondary research. We collect as much information as we can from the market experts through primary research. We contact the experts from both demand and supply side and conduct interviews to understand the actual market scenario. In secondary research, we study and gather the data from various secondary sources such as company annual reports, press releases, whitepapers, paid databases, journals, and many other online sources. With the help of the primary interviews, we validate the data collected from secondary sources and get a deep understanding on the subject matter. Post this our team uses statistical tools to analyses the data to arrive at a conclusion and draft it in presentable manner.
Market Size Estimations
Understanding and presenting the data collected is a crucial task. Market sizing is a critical part of the data analysis and this task is performed by using Top-down and bottom-up approaches. In this process, we place different data points, market information and industry trends at a suitable space. This placement helps us presume the estimated & forecast values for coming few years. We use several mathematical and statistical models to estimate the market sizes of different countries and segments. Each of this is further added up to outline the total market. These approaches are individually done on regional/country and segment level.
Data Triangulation
As we arrive at the total market sizes, the market is again broken down into segments and subsegments. This process is called as data triangulation and is implementable wherever applicable. This step not only helps us conclude the overall market engineering process, but also gives an assurance on accuracy of the data generated. The data is triangulated based on studying the market trends, various growth factors, and aspects of both demand and supply side.