Dye Sensitized Cell Markets - 2013
The
recent announcement of dye sensitized cells (DSCs) based on perovskite material
that provide a 15 percent efficiency shows that DSCs could be about to hit the
PV mainstream. With such new developments in mind, this new report
forecasts and analyzes the market for DSCs over the next eight years.
NanoMarkets has been covering the ups and downs of the DSC sector for the
past five years and we believe that DSC is entering into a new era. DSC
technology will soon be able to provide efficiencies close to those of
commercial thin-film solar panels. And, for the first time for years, DSC
will be competing in a stable market environment for solar panels.
To check out the complete table of
contents, visit: http://www.marketresearchreports.biz/analysis-details/dye-sensitized-cell-markets-2013
In
the report, we examine how the leading players in the DSC space plan to
generate revenues in this new business environment and how their addressable
markets will grow in the next decade. Our analysis covers all the
product/market areas that are being seriously suggested for DSC and shows how
these markets are likely to evolve.
Because
of its huge revenue potential we are especially interested in the
building-integrated photovoltaics (BIPV) sector and we also take a serious look
at the opportunity for selling DSC products into the developing world; a market
that several DSC firms have specifically targeted. This report also appraises
the commercial significance of recent technical developments in the DSC space,
especially the development of improved electrolytes both solid-state and liquid.
As
always with NanoMarkets reports, this report also contains granular, eight-year
forecasts of DSC panel and materials shipments in volume and value terms,
broken down by application wherever possible. Materials covered include
the critical components of the cells and modules; host, dye, and electrolyte
materials; transparent and nontransparent electrode materials; and
encapsulation materials.
TABLE
OF CONTENTS
Executive
Summary
E.1
Opportunities for DSC Panel Makers
E.2
Opportunities for Materials Suppliers
E.3
Eight Firms to Watch in the DSC Space
E.4
Eight-Year Forecast Summary for DSC Markets
Chapter
One Introduction
1.1
Background to this Report
1.2
Objective and Scope of this Report
1.3
Methodology of this Report
1.3.1
Forecasting Methodology
1.3.2
Data Sources
1.3.3
Alternative Scenarios
1.4
Plan of this Report
Chapter
Two Important Recent Technical Trends in Dye Sensitized Cells
2.1
Electrolytes
2.1.1
Liquid
2.1.2
Solid-State: Beyond Iodine
2.2
Electrode Materials
2.2.1
Better Dopants for TiO2
2.3
Future Use of Quantum Dots in DSCs
2.4
Encapsulation and Substrates
2.5
Eight-Year Projections of DSC Efficiencies
2.5.1
Comparison to Other Thin-Film and Organic PV
2.6
Key Points Made in this Chapter
Chapter
Three Dye Sensitized Cells Markets and Forecasts
3.1
Indoor Applications
3.1.1
Solar Chargers
3.1.2
Wireless Keyboards
3.1.3
Apparel
3.1.4
Eight-Year Forecast of Indoor DSC Applications
3.2
Building-Integrated Photovoltaics
3.2.1
BIPV Glass
3.2.2
Solar Roofs
3.2.3
Eight-Year Forecast of DSC in BIPV
3.3
Retail Applications
3.3.1
Outdoor and Indoor Advertising
3.3.2
Point-of-Purchase Displays
3.3.3
Solar Awnings and Umbrellas
3.3.4
Eight-Year Forecast of DSC in Retail Applications
3.4
Sensor Networks
3.4.1
Eight-Year Forecast of DSC for Sensor Networks
3.5
Emergency Power and Military Applications
3.5.1
Eight-Year Forecast of DSC for Sensor Networks
3.6
Automotive Applications
3.5.1
Eight-Year Forecast of DSC for Sensor Networks
3.6
Opportunities for DSC Products in Developing Nations
3.7
Summary of Eight-Year Forecasts
3.7.1
Eight-Year Forecast by Type of Product and Application
3.7.2
Eight-Year Forecast by Type of Material
3.8
Key Points Made in this Chapter
Chapter
Four DSC Suppliers and Strategies
4.2.1
3G Solar
(Israel)
4.2.2
Dyesol (Australia)
4.2.3
Fujikura (Japan)
4.3.4
G24 Innovations (UK)
4.3.5
Nissha Printing
(Japan)
4.2.5
NLAB Solar (Sweden)
4.2.6
Oxford Photovoltaics (UK)
4.2.7
Peccell (Japan)
4.2.8
Samsung SDI
(Korea)
4.2.9
Sharp (Japan)
4.2.10
Solaronix (Switzerland)
4.2.11
SolarPrint (Ireland)
4.2.12
Sony (Japan)
4.2.14
SolarPrint (Ireland)
4.3.
Large Specialty Chemical Company Strategies in the DSC Space
4.3.1
BASF (Germany)
4.3.2
Everlight Chemical (Taiwan)
4.3.3
Merck (Germany)
4.3.4
Umicore (Belgium)
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Printed
and thin film transistor circuits will become a $180 million market in 10
years, from just $3 million in 2013. They will drive lighting, displays,
signage, electronic products, medical disposables, smart packaging, smart
labels and much more besides. The chemical, plastics, printing, electronics and
other industries are cooperating to make it happen. Already, over 500
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being sold commercially in 2009.
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growth over the longer timescale, from 2013-2033, will be very similar to the
early growth of the silicon chip market in the same interval. In other words,
the twenty years from 1978 to 1998 saw a similar starting and finishing value
of sales of silicon chips. History is repeating itself with the printed
equivalent over the next twenty years, though not by taking much market share
from silicon chips in the first fifteen years. Do not follow the herd into the
well aired aspects of this subject. Gain advantage by understanding all the
important aspects and opportunities.
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This
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first time, they will see the big picture of what is happening and about to
happen across the whole world in this subject. This includes the profiles,
activities and intentions of 150 leading organizations in this field. We
analyze and compare what is happening in 16 countries. Such information is not gathered
in any other document. The report also gives the rapidly evolving choices of
materials, device designs, chemistry and manufacturing processes for these
devices - again a unique analysis. However, this report will also be useful for
those with only a rudimentary understanding of science and engineering who seek
to understand how the printed electronics revolution will greatly benefit
society while creating billion dollar businesses and when and where this will
happen.
We
start with some descriptions appropriate for the beginner, opening up the
subject with as little complexity and jargon as possible.
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