Critical Materials in Global Nanotechnology Markets

Critical Materials in Global Nanotechnology Markets

Report Code: AVM103A

Publish Date: Jan 2014

Publisher: BCC Publishing

Category: Advanced Materials

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Report Highlights

The market for existing nanotechnology applications of critical materials was worth nearly $6.5 billion in 2012. This market is expected to reach nearly $6.9 billion in 2013 and nearly $9.4 billion in 2018, with a compound annual growth rate (CAGR) of 6.5% for the five-year period, 2013 to 2018.

Report Includes

  • A market overview of the critical materials used in global nanotechnology industries.
  • Analyses of global market trends, with data from 2012, estimates for 2013, and projections of CAGRs for the period 2013 and 2018.
  • Coverage of those critical materials whose shortages can be alleviated or avoided through the application of various nanotechnologies.
  • Quantification of the potential reductions in critical materials consumption and the net economic cost to achieve them.
  • Comprehensive company profiles of major players in the industries covered.

Report Scope

“Critical materials” is a relative term. The list of critical materials varies among countries and industries, depending on their specific circumstances. In selecting the materials to be covered in this report, BCC Research drew from a number of sources, including reports published by the U.S. Department of Energy, the European Union, the British Geological Survey and the German Institut für Zukunftstudien und Technologie-bewertung.

Not all of the critical materials identified in these reports have implications for the nanotechnology market. This study focuses on those critical materials that have potential nanotechnology applications or for which nanotechnology-based substitutes exist:

  • Antimony.
  • Barium.
  • Gallium.
  • Indium.
  • Magnesium.
  • Niobium
  • Platinum group metals (PGMs).
  • Rare earths (e.g., yttrium, dysprosium, erbium, terbium, thulium, scandium).
  • Rhenium.
  • Tantalum.
  • Tellurium.
  • Tungsten.

For each of these materials, the report contains an assessment of:

  • Critical material supply/demand situation, price trends and risk of disruption.
  • Applications in which nanotechnology can contribute to reducing/avoiding consumption of critical materials.
  • Technology assessment/market leaders. 
  • Impact on the market for various nanotechnologies.
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Analyst Credentials

Andrew McWilliams spent more than 25 years as a consultant with Ernst & Young, McKinsey & Company and A.T. Kearny focused on manufacturing before segueing into research analysis. He has been covering myriad technology categories for BCC Research for more than 15 years. McWilliams has a BA from Princeton University and an MA from Harvard University. He has worked in more than 40 countries and he resides in the greater Boston area.

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Table of Contents

All reports provided in PDF format. For shared licensing options (5+ Users), please call a representative at (+1) 781-489-7301 or contact us at info@bccresearch.com
Title/Chapter NamePagesMember Price
Full Report: Critical Materials in Global Nanotechnology Markets143Free
Chapter- 1: INTRODUCTION5Free
Chapter- 2: EXECUTIVE SUMMARY2Free
Chapter- 3: OVERVIEW16Free
Chapter- 4: ANTIMONY15Free
Chapter- 5: BARIUM6Free
Chapter- 6: GALLIUM10Free
Chapter- 7: INDIUM 8Free
Chapter- 8: MAGNESIUM6Free
Chapter- 9: NIOBIUM7Free
Chapter- 10: PLATINUM GROUP METALS15Free
Chapter- 11: RARE EARTHS13Free
Chapter- 12: RHENIUM4Free
Chapter- 13: TANTALUM8Free
Chapter- 14: TELLURIUM4Free
Chapter- 15: TUNGSTEN5Free
Chapter- 16: C. CRAMER & CO. GMBH19Free

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This is an Excel-only version of the report.

Report Includes

    Total Number of Tables in this Report: 53

  • Summary Table: CRITICAL MATERIALS WITH THE GREATEST IMPACT ON EXISTING NANOTECHNOLOGY MARKETS, THROUGH 2018
  • Table 1: SUMMARY OF MATERIALS IDENTIFIED AS BEING AT RISK OF SUPPLY DISRUPTIONS
  • Table 2: MAJOR CATEGORIES OF NANOMATERIALS
  • Table 3: CRITICAL MATERIALS, THEIR IMPACTS AND OPPORTUNITIES FOR THE NANOTECHNOLOGY INDUSTRY
  • Table 4: CONSUMPTION OF CRITICAL MATERIALS IN EXISTING NANOTECHNOLOGY APPLICATIONS,THROUGH 2018
  • Table 5: MARKET FOR NANOTECHNOLOGY APPLICATIONS THAT REPLACE OR REDUCE CONSUMPTION OF CRITICAL MATERIALS, THROUGH 2018
  • Table 6: NANOSCALE ANTIMONY TIN OXIDE PRODUCERS
  • Table 7: GLOBAL CONSUMPTION OF NANOSCALE ANTIMONY USED IN THIN FILM COATINGS, THROUGH 2018
  • Table 8: GLOBAL MARKET FOR NANOTECHNOLOGY-BASED SUBSTITUTES FOR ANTIMONY, THROUGH 2018
  • Table 9: GLOBAL CONSUMPTION OF NANOCOMPOSITE FIRE RETARDANT MATERIALS, THROUGH 2018
  • Table 10: GLOBAL CONSUMPTION OF NANOPARTICLES USED IN RECHARGEABLE LITHIUM ION BATTERIES, THROUGH 2018
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Critical Materials in Global Nanotechnology Markets
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