市場調査レポート

次世代 OPV (有機太陽電池) 技術の動向・市場予測

Next Generation OPV Technology Trend and Market Forecast

発行 SNE Research 商品コード 329742
出版日 ページ情報 英文 240 Pages
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次世代 OPV (有機太陽電池) 技術の動向・市場予測 Next Generation OPV Technology Trend and Market Forecast
出版日: 2015年05月11日 ページ情報: 英文 240 Pages
担当者のコメント
2020年までのOPVの生産量や成長率データ等が記載されおります。また主要国別・企業別のシェアも記載されております。
概要

有機太陽電池の本格的な大量生産は2017年に開始され、容量は76MWが見込まれており、2018年に124MW、2020年に194MWへ急増すると予測されています。

当レポートでは、世界のOPV (有機太陽電池) 市場における包括的な概要を、技術開発動向、特許動向、市場予測を含めて、提供しています。

第1章 OPVの特許、R&D および市場動向

  • OPVの概要
  • 特許動向の分析
  • R & Dの動向
  • 市場分析・予測

第2章 OPV技術開発動向:要素別

  • 技術開発動向
  • 材料開発動向
  • デバイス・モジュレーション技術
  • プリンティングプロセス技術・開発動向
目次

As the PV industry is faced with growing demand for cost reduction, the low manufacturing costs of thin-film solar cells make them increasingly attractive compared with silicon solar cells, leading to aggressive R&D efforts. Currently, thin-film solar cells are in their infancy but they only require low energy during the manufacturing process, which allows reduction in material costs and helps shorten payback period. In addition to economic feasibility, the ease of scaling-up enables further cost reduction. In this sense, they are expected to become comparable to silicon solar cells up to a certain point in the near future.

Especially, organic solar cells have made remarkable progress for the last several years and are considered to be one of the most promising candidates with the great growth potential in the future PV industry. The organic solar cell market remains quite modest compared with the current PV market but is expected to show steady growth and such applications as BIPVs or tents and clothing will boost the growth.

Japan's Mitsubishi Chemical, which takes the lead in organic solar cell technology, began commercialization this year. Although large-area modules using flexible substrates show relatively low efficiency, but there are growing expectations for commercialization with rapid progress in the continuous printing technology and efficiency of large-area flexible modules.

Major companies conducting research on organic solar cells are currently operating pilot lines, aiming at mass-production by 2017-2018. Organic solar cells are expected to begin full-fledged mass-production in 2017 with estimated capacity of 76MW, which is expected to increase rapidly to 124MW in 2018 and 194MW in 2020.

Fig. Projected OPV production and growth rate (2015~2020)

                               (Source: ‘Next Generation OPV Technology Trend and Market Forecast', SNE Research)

Now that organic solar cells open up possibilities for cost reduction and efficiency of solar cell modules, backed by constant R&D efforts, SNE Research has recently published a new report titled ‘OPV Technology Development and Patenting Trend by Company’.

This report provides a comprehensive overview of the global OPV domain, including technology development and patenting trends as well as market forecasts.

Table of Contents

Part 1. OPV Patenting, R&D and Market Trends

  • 1. OPV Overview
  • 2. Patent Trend Analysis
  • 3. R&D Trend
  • 4. Market Analysis and Forecast

Part 2. OPV Technology Development Trend by Element

  • 1. Technology Development Trend
  • 2. Material Development Trend
  • 3. Device and Modularization Technology
  • 4. Printing Process Technology and Development Trend
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