A Staggering Growth +6.3% of Worldwide Molecular Spectroscopy Market Size And Top Venders Are Bruker, Thermofisher Scientific and Agilent Technologies During 2024

“\”Global Molecular Spectroscopy Market\” is predictable to reach USD 6,443.5 million by 2024″
The Global Molecular Spectroscopy Market is highly fragmented and the major players have used various strategies such as new product launches, expansions, agreements, joint ventures, partnerships, acquisitions, and others to increase their footprints in this market. The report includes market shares of nutritional beverages market for global, Europe, North America, Asia Pacific and South America.

Key Companies Analysis:

In 2016, Bruker dominates the market with 27.3% market share followed by Thermofisher Scientific, Inc. and, Agilent Technologies. Some of the major players operating in the global molecular spectroscopy market are ABB, Avantes, Block Engineering, Carl Zeiss Spectroscopy GmbH, Cobalt Light Systems Ltd, Galaxy Scientific, Gasera, Ibsen Photonics, Industrial Test Systems, Inc., Kaiser Optical Systems, Inc., Keit Spectrometers, Magritek, EMD Millipore Corporation, PerkinElmer Inc., Raptor Photonics PLC, Shimadzu Corporation, Spectral Evolution, Viavi Solutions, WITec GmbH, B&W Tek, StellarNet, Si-WareSystems, Foss, Jasco, Inc. and, Jeol Ltd. among others.

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Data Bridge Market Research added new report “Global Molecular Spectroscopy Market” is predictable to reach USD 6,443.5 million by 2024, from USD 3,959.8 million in 2016, growing at a CAGR of 6.3% in the forecast period. This report contains 345 Pages, 295 Tables and 30 Figures.

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Company Analysis

Bruker:

Bruker Corporation was incorporated in 1960 and is headquartered in Billerica, U.S. The company manufactures scientific instruments to focus on the needs of customers in the life science, pharmaceutical, biotechnology, clinical and molecular diagnostics research, as well as in materials and chemical analysis in various industries and government applications. The company’s technology platforms include magnetic resonance technologies, mass spectrometry technologies, gas chromatography technologies, X-ray technologies, spark optical emission spectroscopy, atomic force microscopy, stylus and optical metrology technology, and infrared and Raman molecular spectroscopy technologies.

Recent developments:

  • In May 2016, Bruker launched the EMX nanosystem at the 56th annual Experimental Nuclear Magnetic Resonance Conference(ENC). EMXnano is the first high-performance benchtop EPR (electron para magnetic resonance) instrument, making research-grade EPR capabilities accessible to a broader range of scientists.
  • In April 2015, Bruker launched the compact research grade Raman microscope SENTERRA II replacing the successful former model SENTERRA. The SENTERRA II defines a new level of performance and user friendliness inits class of compact Raman microscopes.

In March 2015, Bruker launched the first next generation, hand-held Raman spectrometer with patented fluorescence mitigation SSE (Sequentially Shifted Excitation) Bravo. This device now enables measurements of a wider range of raw materials, compared to first-generation systems. Specifically designed for the pharmaceutical industry, BRAVO’s intuitive user interface and touchscreen provide a superior guided workflow.

The NMR spectroscopy is further segmented into fourier transform (FT-NMR), continuous wave, and solid state spectroscopy. UV visible spectroscopy is further segmented into single beam, double beam, array based and handheld spectroscopy. The handheld IR spectroscopy segment is expected to grow at the highest CAGR among the UV-visible spectroscopy segments in the forecast period 2017 to 2024.

NEW INTERNATIONAL GMP & GDP CERTIFICATION FOR PHARMACEUTICAL EXCIPIENTS (NORTH AMERICA & EUROPE) EXCIPACT:

Pharmaceutical excipients transport a drug to a site in the body where the drug is intended to act; they assist in product identification, and enhance the overall safety or function of a product during storage or use. Since these substances are an integral part of drugs, they require stringent quality management. However, there is no dedicated regulatory quality control body to check the major components of dosage forms.

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GLOBAL ALLIANCES AMONGST LEADING RESEARCH INSTITUTES TO BOOST DRUG DISCOVERY:

The alliance aims to strengthen drug development research activities among the international academic and not-for-profit research institutes. With strengthening of research activities, the scope for commercialization of drugs is increasing and more activities are taking place in the drug discovery and development arena. Molecular spectroscopy techniques are extensively used in such research activities as well as in the drug discovery and development process. Thus, such initiatives are expected to drive the market for molecular spectroscopy.

GROWING FOOD SAFETY CONCERNS:

Molecular spectroscopy is used by food testing laboratories, to identify and quantify foreign substances in food. For instance, an NMR spectroscopy technique is being developed by the Institute of Food Research (IFR) (U.K.) to analyze the fatty acid composition of food samples. This initiative is being implemented in response to the 2013 horse meat scandal in the U.K. Thus, the increasing use of molecular spectroscopy instruments in maintaining high quality of food is propelling the market growth.

INCREASING LIFE SCIENCE R&D SPENDING:

Global pharmaceutical companies are adopting cost cutting strategies such as alliances and acquisitions to jointly conduct R&D activities and to focus on the development of niche products such as ‘orphan drugs’. Spectroscopy has numerous applications in protein analysis and purification, and quality control of raw materials and APIs. Thus, the growth in R&D spending is likely to increase the application horizon of molecular spectroscopy instruments.

TABLE OF CONTENTS

1. INTRODUCTION

1.1. OVERVIEW OF GLOBAL MOLECULAR SPECTROSCOPY MARKET
1.2. CURRENCY AND PRICING
1.3. LIMITATION
1.4. MARKETS COVERED

2. MARKET SEGMENTATION

2.1. MARKETS COVERED
2.2. GEOGRAPHIC SCOPE
2.3. YEARS CONSIDERED FOR THE STUDY
2.4. CURRENCY AND PRICING
2.5. RESEARCH METHODOLOGY
2.6. PRIMARY INTERVIEWS WITH KEY OPINION LEADERS
2.7. SECONDARY SOURCES
2.8. ASSUMPTIONS

3. MARKET OVERVIEW

3.1. DRIVERS
3.2. RESTRAINTS
3.3. OPPURTUNITIES

4. EXECUTIVE LANDSCAPE

5. PREMIUM INSIGHTS

6. GLOBAL MOLECULAR SPECTROSCOPY MARKET, BY TYPE

6.1. OVERVIEW
6.2. GLOBAL NMR SPECTROSCOPY MARKET, BY PRODUCT TYPE
6.3. GLOBAL UV-VISIBLE SPECTROSCOPY MARKET, BY PRODUCT TYPE
6.4. GLOBAL INFRARED (IR) SPECTROSCOPY MARKET, BY PRODUCT TYPE
6.5. GLOBAL INFRARED (IR) SPECTROSCOPY MARKET, BY SPECTRUM
6.6. GLOBAL NEAR INFRARED (NIR) SPECTROSCOPY MARKET, BY PRODUCT TYPE
6.7. GLOBAL RAMAN SPECTROSCOPY MARKET, BY PRODUCT TYPE
6.8. GLOBAL RAMAN SPECTROSCOPY MARKET, BY SAMPLING TECHNOLOGY

7. GLOBAL MOLECULAR SPECTROSCOPY MARKET, BY APPLICATION

7.1. OVERVIEW
7.2. GLOBAL MOLECULAR SPECTROSCOPY MARKET, IN PHARMACEUTICALS
7.3. GLOBAL MOLECULAR SPECTROSCOPY MARKET, IN ACADEMY AND RESEARCH
7.4. GLOBAL MOLECULAR SPECTROSCOPY MARKET, IN BIOTECHNOLOGY
7.5. GLOBAL MOLECULAR SPECTROSCOPY MARKET, IN FOOD AND BEVERAGES
7.6. GLOBAL MOLECULAR SPECTROSCOPY MARKET, IN ENVIRONMENTAL TESTING

8. GLOBAL MOLECULAR SPECTROSCOPY MARKET, BY GEOGRAPHY

8.1. OVERVIEW

8.2. NORTH AMERICA MOLECULAR SPECTROSCOPY MARKET

8.2.1. U.S. MOLECULAR SPECTROSCOPY MARKET
8.2.2. CANADA MOLECULAR SPECTROSCOPY MARKET
8.2.3. MEXICO MOLECULAR SPECTROSCOPY MARKET

8.3. EUROPE MOLECULAR SPECTROSCOPY MARKET

8.3.1. GERMANY MOLECULAR SPECTROSCOPY MARKET
8.3.2. FRANCE MOLECULAR SPECTROSCOPY MARKET
8.3.3. U.K. MOLECULAR SPECTROSCOPY MARKET
8.3.4. ITALY MOLECULAR SPECTROSCOPY MARKET
8.3.5. SWITZERLAND MOLECULAR SPECTROSCOPY MARKET
8.3.6. NETHERLANDS MOLECULAR SPECTROSCOPY MARKET
8.3.7. SPAIN MOLECULAR SPECTROSCOPY MARKET
8.3.8. TURKEY MOLECULAR SPECTROSCOPY MARKET
8.3.9. BELGIUM MOLECULAR SPECTROSCOPY MARKET
8.3.10. RUSSIA MOLECULAR SPECTROSCOPY MARKET
8.3.11. REST OF EUROPE MOLECULAR SPECTROSCOPY MARKET

8.4. ASIA-PACIFIC MOLECULAR SPECTROSCOPY MARKET

8.4.1. JAPAN MOLECULAR SPECTROSCOPY MARKET
8.4.2. CHINA MOLECULAR SPECTROSCOPY MARKET
8.4.3. INDIA MOLECULAR SPECTROSCOPY MARKET
8.4.4. SOUTH KOREA MOLECULAR SPECTROSCOPY MARKET

8.5. AUSTRALIA MOLECULAR SPECTROSCOPY MARKET

8.5.1. THAILAND MOLECULAR SPECTROSCOPY MARKET
8.5.2. MALAYSIA MOLECULAR SPECTROSCOPY MARKET
8.5.3. SINGAPORE MOLECULAR SPECTROSCOPY MARKET
8.5.4. PHILLIPINES MOLECULAR SPECTROSCOPY MARKET
8.5.5. INDONESIA MOLECULAR SPECTROSCOPY MARKET
8.5.6. REST OF APAC MOLECULAR SPECTROSCOPY MARKET

8.6. SOUTH AMERICA MOLECULAR SPECTROSCOPY MARKET

8.6.1. BRAZIL MOLECULAR SPECTROSCOPY MARKET
8.6.2. REST OF SOUTH AMERICA MOLECULAR SPECTROSCOPY MARKET
8.7. MIDDLE EAST AND AFRICA MOLECULAR SPECTROSCOPY MARKET
8.7.1. SOUTH AFRICA MOLECULAR SPECTROSCOPY MARKET
8.8. REST OF MEA MOLECULAR SPECTROSCOPY MARKET
8.9. REST OF THE WORLD MOLECULAR SPECTROSCOPY MARKET

9. MOLECULAR SPECTROSCOPY MARKET, COMPANY SHARE ANALYSIS

9.1. OVERVIEW
9.2. COMPANY SHARE ANALYSIS

10. COMPANY PROFILES

10.1. AGILENT TECHNOLOGIES, INC.

10.1.1. COMPANY OVERVIEW

10.1.2. SWOT ANALYSIS

10.1.2.1. STRENGTHS:-
10.1.2.2. WEAKNESS:-
10.1.2.3. OPPORTUNITY:-
10.1.2.4. THREATS:-

10.1.3. REVENUE ANALYSIS

10.1.4. PRODUCT PORTFOLIO

10.1.5. RECENT DEVELOPMENTS

10.1.6. DATA BRIDGE ANALYSIS

10.2. AVANTES

10.2.1. COMPANY OVERVIEW
10.2.2. REVENUE ANALYSIS
10.2.3. PRODUCT PORTFOLIO
10.2.4. RECENT DEVELOPMENTS

10.3. THE ABB GROUP

10.3.1. COMPANY OVERVIEW

10.3.2. SWOT ANALYSIS

10.3.2.1. STRENGTHS:-
10.3.2.2. WEAKNESS:-
10.3.2.3. OPPORTUNITY:-
10.3.2.4. THREATS:-

10.3.3. REVENUE ANALYSIS

10.3.4. PRODUCT PORTFOLIO

10.3.5. RECENT DEVELOPMENTS

10.4. THE BRUKER CORPORATION

10.4.1. COMPANY OVERVIEW

10.4.2. SWOT ANALYSIS

10.4.2.1. STRENGTHS:-
10.4.2.2. WEAKNESS:-
10.4.2.3. OPPORTUNITY:-
10.4.2.4. THREATS:-

10.4.3. REVENUE ANALYSIS

10.4.4. PRODUCT PORTFOLIO

10.4.5. RECENT DEVELOPMENTS

10.4.6. DATA BRIDGE ANALYSIS

10.5. FOSS

10.5.1. COMPANY OVERVIEW

10.5.2. REVENUE ANALYSIS

10.5.3. PRODUCT PORTFOLIO

10.5.4. RECENT DEVELOPMENTS

10.6. JASCO, INC.

10.6.1. COMPANY OVERVIEW

10.6.2. REVENUE ANALYSIS

10.6.3. PRODUCT PORTFOLIO

10.6.4. RECENT DEVELOPMENTS

10.7. CARL ZEISS AG

10.7.1. COMPANY OVERVIEW

10.7.2. SWOT ANALYSIS

10.7.2.1. STRENGTHS:-
10.7.2.2. WEAKNESS:-
10.7.2.3. OPPORTUNITY:-
10.7.2.4. THREATS:-

10.7.3. REVENUE ANALYSIS

10.7.4. PRODUCT PORTFOLIO

10.7.5. RECENT DEVELOPMENTS

10.8. SHIMADZU CORPORATION

10.8.1. COMPANY OVERVIEW

10.8.2. REVENUE ANALYSIS

10.8.3. PRODUCT PORTFOLIO

10.8.4. RECENT DEVELOPMENTS

10.9. EMD MILLIPORE

10.9.1. COMPANY OVERVIEW

10.9.2. SWOT ANALYSIS

10.9.2.1. STRENGTHS:-
10.9.2.2. WEAKNESS:-
10.9.2.3. OPPORTUNITY:-

10.9.3. REVENUE ANALYSIS

10.9.4. PRODUCT PORTFOLIO

10.10. THERMO FISHER SCIENTIFIC, INC.

10.10.1. COMPANY OVERVIEW

10.10.2. SWOT ANALYSIS

10.10.2.1. STRENGTHS:-
10.10.2.2. WEAKNESS:-
10.10.2.3. OPPORTUNITY:-
10.10.2.4. THREATS:-

10.10.3. REVENUE ANALYSIS

10.10.4. PRODUCT PORTFOLIO

10.10.5. RECENT DEVELOPMENTS

10.10.6. DATA BRIDGE ANALYSIS

11. OTHER REPORTS

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