Los Angeles, United State, December 2019,– – QYResearch recently published a comprehensive research report, which is an intelligent study covering all key segments of Lithium-Metal-Polymer (LMP) Battery Market. This research report provides insights on market-related factors such as Lithium-Metal-Polymer (LMP) Battery Market size, latest & future trends, competition, forecasts and more. It offers decisive specks of the market such as major leading players, market size over the forecast period of six years, market share, segmentation analysis, current market trends, movements and major geographical regions involved. Drivers and restraints are studied with respect to external factors influencing the growth of the market. Similarly, this will help the customer understand and depends on a normal chart to settle for the correct choice.
Company Coverage (Sales Revenue, Price, Gross Margin, Main Products, etc.): Bollore, Toyota, Panasonic, Jiawei, Bosch, Quantum Scape, BMW, Hyundai, Dyson, Apple, CATL, Ilika, Excellatron Solid State, Cymbet, Solid Power, Mitsui Kinzoku, Samsung, ProLogium, Front Edge Technology
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This study focuses on the production side and consumption side of Lithium-Metal-Polymer (LMP) Battery, presents the global Lithium-Metal-Polymer (LMP) Battery market size by manufacturers, regions, type and application, history breakdown data from 2014 to 2019, and forecast to 2025.
In terms of production side, this report researches the Lithium-Metal-Polymer (LMP) Battery capacity, production, value, ex-factory price, growth rate, market share for major manufacturers, regions (or countries) and product type.
In terms of consumption side, this report focuses on the consumption of Lithium-Metal-Polymer (LMP) Battery by regions and application. The key regions like North America, Europe, Asia-Pacific, Central & South America, Middle East and Africa etc.
A solid state battery is composed mainly of cathode, anode, and solid electrolyte, as developed during the latter half of the 20th century. Lithium Solid-State Battery have a simpler structure than the traditional LiBs, and the simplified structure with a solid electrolyte enables higher energy density. Solid electrolytes not only conduct Li+ ions but also serve as the separator, as shown in Figure below. In Lithium Solid-State Battery, no organic liquid electrolyte, electrolyte salt, separator, or binder is required, which dramatically simplifies the assembly process. The operational principle of Lithium Solid-State Battery is no different from the traditional LiBs. In the charge process, lithium ions deintercalate from the cathode material and transport to the anode through the electrolyte, while electrons drift to the anode by the external circuit. Lithium ions combine with electrons to form more complete lithium atoms. The discharge process is just the reverse.
Although Lithium Solid-State Battery based on inorganic solid electrolytes have clearly demonstrated their great possibilities for electric vehicles and large-scale energy storage systems, further development is still required to improve their energy density, rate capability, and cycling stability, while ensuring excellent safety. Actually, they are still far from being commercialized for industrial applications, which require systematical studies and will be a complicated process.
Making Lithium Solid-State Battery usable outside the laboratory involves multiple factors such as solid electrolytes, electrodes, interface properties, and construction design. The high cost and very small production scale of solid state electrolytes with high ionic conductivity hinder the application of Lithium Solid-State Battery. Meanwhile, Lithium Solid-State Battery still suffer from inferior power density and poor cycle life, due to the high transfer resistance of lithium ions between the electrodes and solid electrolytes. Thus, at this stage, the direction for research exploring Lithium Solid-State Battery for commercial applications is to develop new cathodes based on the conversion reaction mechanism with low or even zero strain and energy levels well matched with the electrolytes. All of these together are expected to yield new material systems with high capacity. In addition, the use of lithium metal in anodes will be another thrust of Lithium Solid-State Battery development. Another is the design of novel SEs with high lithium-ion conductivity at room temperature and wide electrochemical window. Meanwhile, future SEs should show excellent chemical stability in the presence of metallic lithium. Also, new methods should be proposed to reduce the interfacial resistance between the electrode and electrolyte. Finally, the optimal combination of different fabrication processes and equipment automation as well as device design are necessary for the realization of Lithium Solid-State Battery with high capacity, low cost, and high yield.
The Lithium-Metal-Polymer (LMP) Battery market was valued at xx Million US$ in 2018 and is projected to reach xx Million US$ by 2025, at a CAGR of xx% during the forecast period. In this study, 2018 has been considered as the base year and 2019 to 2025 as the forecast period to estimate the market size for Lithium-Metal-Polymer (LMP) Battery.
This report includes the following manufacturers; we can also add the other companies as you want.
Excellatron Solid State
Front Edge Technology
Market Segment by Product Type
Polymer-Based Lithium Solid-State Battery
Lithium Solid-State Battery with Inorganic Solid Electrolytes
Market Segment by Application
The study objectives are:
To analyze and research the global Lithium-Metal-Polymer (LMP) Battery status and future forecast, involving capacity, production, value, consumption, growth rate (CAGR), market share, historical and forecast.
To present the key Lithium-Metal-Polymer (LMP) Battery manufacturers, capacity, production, revenue, market share, and recent development.
To split the breakdown data by regions, type, manufacturers and applications.
To analyze the global and key regions market potential and advantage, opportunity and challenge, restraints and risks.
To identify significant trends, drivers, influence factors in global and regions.
To analyze competitive developments such as expansions, agreements, new product launches, and acquisitions in the market.
In this study, the years considered to estimate the market size of Lithium-Metal-Polymer (LMP) Battery are as follows:
History Year: 2014-2018 | Base Year: 2018 | Estimated Year: 2019 | Forecast Year 2019 to 2025
The Key Offering By This Report:
1. Business description – A detailed description of the company’s operations and business divisions.
2. Corporate strategy – Analyst’s summarization of the company’s business strategy.
3. SWOT Analysis – A detailed analysis of the company’s strengths, weaknesses, opportunities, and threats.
4. Company history – Progression of key events associated with the company.
5. Major products and services – A list of major products, services, and brands of the company.
6. Key competitors – A list of key competitors to the company.
7. Important locations and subsidiaries – A list and contact details of key locations and subsidiaries of the company.
8. Detailed financial ratios for the past five years – The latest financial ratios derived from the annual financial statements published by the company with 6 years history.
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Table of Contents
Study Coverage: It includes years covered, study objectives, highlights of segmentation by product and application, and key manufacturers covered.
Executive Summary: This section of the report details macroscopic indicators, market drivers, trends, and issues, analysis of competitive landscape, market growth rate, pricing and marketing trends, and capacity, production, and revenue for the review period 2013-2025.
Market Size by Manufacturers: It includes production, revenue, and price analysis by manufacturer. In addition, it explores expansion plans and mergers and acquisitions.
Production Forecast: It includes forecast of the production of key producers in different regions and countries. Furthermore, it provides production and revenue forecasts by type of product.
Upstream, Industry Chain, and Downstream Customers Analysis: It includes analysis of upstream market, customers, distributors, marketing and distribution, and industrial chain.
QY Research established in 2007, focus on custom research, management consulting, IPO consulting, industry chain research, data base and seminar services. The company owned a large basic data base (such as National Bureau of statistics database, Customs import and export database, Industry Association Database etc), expert’s resources (included energy automotive chemical medical ICT consumer goods etc.