锂离子电池安全趋势及对材料的影响
市场调查报告书
商品编码
1408128

锂离子电池安全趋势及对材料的影响

Li-ion Battery Safety Trends and Impacts on Materials

出版日期: | 出版商: Frost & Sullivan | 英文 33 Pages | 商品交期: 最快1-2个工作天内

价格
简介目录

激发成长、促进创新并为新机会铺平道路

锂离子(Li-ion)电池市场的持续成长取决于强有力的安全措施的实施。锂离子电池製造商严格遵守行业法规,以减少热失控、火灾和爆炸等严重事故的可能性。电池安全正在塑造锂离子电池材料产业的未来,进而影响业务策略、技术开发和监管合规工作。除了严格的品管流程和广泛的测试协议之外,Frost & Sullivan 预计业界将看到重大技术进步,以提高锂离子电池的安全性。

正极、负极、集电器、电解和电解质等电池组件的进步不仅使锂离子电池更加安全,而且还提高了能量密度等性能。此外,电池机壳材料和设计的进步提供了对外部因素的更好保护,使电池更加安全。本报告深入研究了热失控的各种驱动因素​​,并确定了整个价值链参与企业的成长机会。讨论可用于提高锂离子电池安全性的各种方法和材料开发。

目录

战略衝动

  • 为什么成长如此困难?
  • The Strategic Imperative 8(TM)
  • 战略要求对锂离子电池安全产业的影响
  • 成长机会推动Growth Pipeline Engine(TM)

成长机会分析

  • 简介:锂离子电池安全
  • 电池保护
  • 电池安全:范围
  • 来自外部的危险
  • 行动策略:固体电解质
  • 行动策略:外壳材质
  • 过度充电和放电
  • 行为策略:防过充添加剂
  • 材料劣化
  • 热失控
  • 热失控:依材料分类
  • 热失控:每种材料的预防方法
  • 不安全化学品
  • 温度控管:其他方法

成长机会宇宙

  • 成长机会一:透过各级合作伙伴共同创造价值
  • 成长机会2:试办新的安全技术
  • 成长机会 3:随时了解资讯
  • 免责声明
简介目录
Product Code: PF86-92

Igniting Growth, Fueling Innovation, and Paving the Way for New Opportunities

The continued growth of the lithium-ion (Li-ion) battery market hinges on the implementation of robust safety measures. Li-ion battery manufacturers, in strict compliance with industry regulations, are trying to mitigate the potential for critical incidents such as thermal runaway, fires, or explosions. Battery safety is shaping the future of the Li-ion battery materials industry, and in turn influencing business strategies, technological developments, and regulatory compliance efforts. Frost & Sullivan expects the industry to witness significant technological advancements to improve Li-ion battery safety along with rigorous quality control processes and extensive testing protocols.

Advancements in battery components, including cathodes, anodes, current collectors, separators, and electrolytes, not only enhance Li-ion battery safety but also bolster characteristics such as energy density. Moreover, progress in battery enclosure materials and design provides added protection against external factors, further safeguarding the batteries. This report delves into various factors causing thermal runaway and identifies growth opportunities for participants across the value chain. The study discusses various methods and developments in materials that can be incorporated to increase the safety of Li-ion batteries.

Table of Contents

Strategic Imperatives

  • Why is it Increasingly Difficult to Grow?
  • The Strategic Imperative 8™
  • The Impact of the Top 3 Strategic Imperatives on the Li-ion Battery Safety Industry
  • Growth Opportunities Fuel the Growth Pipeline Engine™

Growth Opportunity Analysis

  • Introduction: Li-ion Battery Safety in Context
  • Safeguarding Batteries
  • Battery Safety: Scope
  • External Hazards
  • Strategies in Action: Solid Electrolytes
  • Strategies in Action: Casing Materials
  • Over-charging and Discharging
  • Strategies in Action: Anti-overcharging Additives
  • Material Degradation
  • Thermal Runaway
  • Thermal Runaway: Materials Specific
  • Thermal Runaway: Material-specific Prevention Methods
  • Unsafe Chemicals
  • Thermal Management: Other Methods

Growth Opportunity Universe

  • Growth Opportunity 1: Co-Create Value through Partnerships at Different Tiers
  • Growth Opportunity 2: Pilot New Safety Technologies
  • Growth Opportunity 3: Stay Abreast of Regulatory Updates
  • Legal Disclaimer