신흥 전자, 전기, 냉각용 바나듐 화합물(Vanadium Compounds) : 시장 및 기술(2024-2044년)
Vanadium Compounds in Emerging Electronics, Electrics, Cooling: Markets, Technologies 2024-2044
상품코드 : 1462398
리서치사 : Zhar Research
발행일 : 2024년 04월
페이지 정보 : 영문 423 Pages
 라이선스 & 가격 (부가세 별도)
US $ 4,900 ₩ 7,074,000
PDF (Single User License) help
PDF 보고서를 1명만 이용할 수 있는 라이선스입니다. 인쇄 가능하며 인쇄물의 이용 범위는 PDF 이용 범위와 동일합니다.
US $ 14,700 ₩ 21,223,000
PDF (Site License) help
PDF 보고서를 동일 사업장의 모든 분이 이용할 수 있는 라이선스입니다. 인쇄 가능하며 인쇄물의 이용 범위는 PDF 이용 범위와 동일합니다.
US $ 19,600 ₩ 28,298,000
PDF (Enterprise License) help
PDF 보고서를 동일 기업의 모든 분이 이용할 수 있는 라이선스입니다. 인쇄 가능하며 인쇄물의 이용 범위는 PDF 이용 범위와 동일합니다.


한글목차

보고서 통계
바나듐 관련 연구 논문 조사(2024년, 2023년) : 460
새로운 인포그램, 그래프, 표 : 157
조사 대상 기업 85
2024-2044년 예측 라인 67
SWOT 등급 : 15
장 구성 8

시장의 급성장 :

이 보고서는 이 분야에서 바나듐 화합물(Vanadium Compounds)의 시장 가치가 놀랍게도 8배나 증가했다고 계산합니다. 오늘날의 성공은 강력한 성장 시장인 레독스 흐름 배터리의 액체 바나듐 황산염 양극과 음극입니다. 그럼에도 불구하고 이러한 화합물의 임박한 시장 성장은 가치를 더하는 정교한 형태의 바나듐 고체에 의해 실질적으로 주도될 것입니다. 이러한 화합물은 2D 화합물, MXenes, 그래핀 복합체, 바나데이트, 중공 나노구, 인터칼라 음극, 전기 변색 윈도우 등에 이르기까지 다양할 것입니다.

캡션

전자, 전기, 냉각용 바나듐 화합물(Vanadium Compounds) : 선도적 연구가 성공하면 2024-2044년 시장 규모는 10억 달러가 될 전망(출처 조사 보고서 2024-2044 )

캡션

바나듐 화합물과 테라헤르츠 갭(출처 조사 보고서 : Vanadium compounds in emerging electronics, electrics, cooling : markets, technologies 2024-2044 )

신흥 전자, 전기, 냉각용 바나듐 화합물(Vanadium Compounds) 시장 및 기술을 조사해 현재 이용되고 있는 바나듐 화합물의 구조·형태·형식과 향후 가장 유망한 구조·형태·형식, 통신·커패시터·전지 등 주요 용도에 있어서 연구 파이프라인의 동향과 성장 기회 등을 정리했습니다.

목차

제1장 주요 요약·총론

제2장 전자, 전기, 냉각용 바나듐 화합물의 구조·형태·형식

제3장 미래의 6G 통신, 테라헤르츠 일렉트로닉스, 메타물질, 메타서피스, 메타디바이스에 있어서 바나듐 화합물

제4장 미래의 슈퍼커패시터, 슈도 커패시터, 리튬 이온 커패시터 및 기타 배터리 슈퍼커패시터 하이브리드(BSH)의 바나듐 화합물

제5장 미래의 일반 및 하이브리드 레독스 흐름 배터리에 사용되는 바나듐 화합물

제6장 미래의 알루미늄 이온, 암모늄 이온, 칼슘 이온, 철 이온 리튬 이온, 마그네슘 이온, 칼륨 이온, 나트륨 이온 및 아연 이온 배터리의 바나듐 화합물

제7장 미래의 고체 냉각, 열 방지, 스마트 윈도우에 있어서 바나듐 화합물

제8장 전자, 전기용 바나듐 화합물 : 기타 용도

LYJ
영문 목차

영문목차

REPORT STATISTICS
vanadium-related research papers examined- 2024 and 2023 emphasis:460
New infograms, graphs, comparison tables:157
Companies examined:85
Forecast lines 2024-2044:67
SWOT appraisals:15
Chapters:8

The new commercially-oriented Zhar Research report, "Vanadium compounds in emerging electronics, electrics, cooling: markets, technologies 2024-2044" is designed to assist added value materials and device companies to maximise their opportunities. It will also assist investors, researchers and other interested parties.

Rapid market growth explained

The report calculates a startling eight-fold increase in market value for vanadium compounds in this sector. Today's success is the liquid vanadium sulfate anolytes and catholytes in redox flow batteries, a strong growth market. Nonetheless, the imminent market growth for such compounds will substantially be driven by vanadium solids in sophisticated forms that add value. They will vary from 2D compounds, MXenes, graphene composites, vanadates, hollow nanospheres to intercalated cathodes, electrochromic windows and much more.

Commercially-oriented analysis

The 42-page Executive Summary and Conclusions makes easy reading for those with limited time because it has key conclusions and bar charts, tables and SWOT appraisal. See the most promising vanadium formulations and morphologies by future application then 58 forecast lines as graphs and tables.

Morphologies and formats being targeted

Next, the 17 pages of Chapter 2. "Vanadium compound formulations morphologies and formats becoming important in electronic, electric and thermal applications" clarifies the structures ahead and reasons why. Understand liquid vanadium compounds in different oxidation states and the most promising solid vanadium compound structures including as vanadium oxides, chalcogenides, perovskites, 2D compounds. Additionally, there are other examples of the phases, morphologies and formats being brought to market, with manufacturing approaches and many 2024 research references.

Major opportunity emerging in various forms of energy storage

The rest of the report has chapters on each of the sectors found to be important in driving that huge increase in sales, with latest company and research inputs and Zhar Research PhD level analysis. See drill down reports available from the company for your further reading on specifics. The first three chapters are concerned with the major vanadium opportunity emerging in various forms of energy storage.

Chapter 4. "Vanadium compounds in future supercapacitors, pseudocapacitors, Li-ion capacitors and other battery supercapacitor hybrids BSH" needs 77 pages to cover the massive progress here, with research and company activity sharply increasing in 2024. Learn the formulations and formats winning in supercapacitors, pseudocapacitors and battery-supercapacitor hybrids (lithium-ion capacitors but also others), the benefits and challenges remaining.

Chapter 5. "Vanadium compounds in future regular and hybrid redox flow batteries" is the longest because this is the only existing major commercial success for vanadium compounds in these sectors. See why it has great potential ahead. Although the typical vanadium sulfate electrolytes are mature technology with little further research, the large number of companies marketing these devices need to be covered including where they are headed next. There is also coverage of the research and commercial activity on hybrid RFB that employ vanadium compounds and the potential for that lesser opportunity for such compounds.

Logically, that is followed by Chapter 6. Vanadium compounds in future aluminium-ion. ammonium-ion, calcium-ion, iron-ion, lithium-ion, magnesium-ion, potassium-ion, sodium-ion and zinc ion batteries. Why are most of them suffering a trickle or research and little interest in commercialisation when it comes to vanadium-based options? In sharp contrast, which one has a rising flood of research and intense commercial interest in the vanadium-based approach? What is in-between and why?

Solid-state cooling, heat prevention, and smart windows

Then we move away from energy storage to the 42 pages of Chapter 7. "Vanadium compounds in future solid-state cooling, heat prevention, and smart windows".

Again there is a lucid introduction to the subject followed by specifics from a commercial point of view with deep information from the research pipeline distilled to provide conclusions. With global warming and many new industrial, medical and transport processes needing cooling, this is the focus, not heating. See how it is now a many- faceted opportunity, from electrochromics and Passive Daylight Radiative Cooling PDRC to smart windows. Which are the best opportunities for vanadium compounds and why? What is the competition? Clarity is provided by many new infograms, eight SWOT appraisals and assessment of latest company and research activity. A modest share of what will become a very large market awaits.

And much more ahead

The report closes with a catch-all on the rest, notably in electrics and electronics including vanadium compounds for solar panels, memory, memristors, transistors, actuators, MEMS and a considerable rollout of vanadium-based sensors. What types, why, where, what else? Chapter 8. "Other applications of vanadium compounds in electronics and electrics" takes 35 pages to provide the answers and, again, a profusion of further reading, including 2024 research.

CAPTION

Vanadium compounds for electrics, electronics, cooling: market $ billion 2024-2044 if leading research is successful. Source: Zhar Research report, "Vanadium compounds in emerging electronics, electrics, cooling: markets, technologies 2024-2044"

CAPTION

Vanadium compounds and the Terahertz Gap. Source, Zhar Research report, "Vanadium compounds in emerging electronics, electrics, cooling: markets, technologies 2024-2044" .

Table of Contents

1. Executive summary and conclusions

2. Vanadium compound formulations morphologies and formats becoming important in electronic, electric and thermal applications

3. Vanadium compounds in future 6G Communications, terahertz electronics, metamaterials, metsurfaces. metadevices

4. Vanadium compounds in future supercapacitors, pseudocapacitors, Li-ion capacitors and other battery supercapacitor hybrids BSH

5. Vanadium compounds in future regular and hybrid redox flow batteries

6. Vanadium compounds in future aluminium-ion. ammonium-ion, calcium-ion, iron-ion lithium-ion, magnesium-ion, potassium-ion, sodium-ion and zinc ion batteries

7. Vanadium compounds in future solid-state cooling, heat prevention, and smart windows

8. Other applications of vanadium compounds in electronics and electrics

(주)글로벌인포메이션 02-2025-2992 kr-info@giikorea.co.kr
ⓒ Copyright Global Information, Inc. All rights reserved.
PC버전 보기