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Battery Energy Storage Industry

Battery & Energy Storage

VUP supports energy storage innovation with TEMPO compounds for ORBs and redox flow batteries, focusing on sustainability and efficiency.

Key Applications

Organic Radical Batteries Challenge

Organic Radical Batteries (ORBs)

Developing high-performance, metal-free, and potentially safer battery systems for applications ranging from portable electronics to grid storage.

Redox Flow Batteries Challenge

Aqueous Redox Flow Batteries

Improving the energy density, efficiency, and cost-effectiveness of aqueous redox flow batteries for grid-scale energy storage.

Material Development Challenge

Material Development & Optimization

Optimizing the performance of TEMPO-based batteries requires understanding structure-property relationships and potentially synthesizing novel derivatives with enhanced stability, solubility, or redox potential. Performance optimization regarding energy density and charge/discharge efficiency is a key focus.

Industry Challenges

Discover the unique challenges faced by Battery & Energy Storage and how VUP Solutions can help overcome them.

Organic Radical Batteries (ORBs)

Challenge:

Developing high-performance, metal-free, and potentially safer battery systems for applications ranging from portable electronics to grid storage.

VUP Solutions:

TEMPO and its derivatives exhibit remarkable electrochemical performance, acting as highly efficient and reversible charge carriers. Their potential use as redox-active materials in ORB electrodes offers advantages like potentially high power density and fast charge/discharge rates. VUP produces high-purity TEMPO suitable for electrochemical research and development in this field.

Organic Radical Batteries Challenge

Relevant Products

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TEMPO Structure
Product
CAS: 2564-83-2

TEMPO (2,2,6,6-Tetramethylpiperidin-1-oxyl)

A highly versatile and stable nitroxyl radical, renowned for its utility as a catalyst in selective organic oxidations and as a mediator in controlled radical polymerization (NMP). VUP produces high-purity TEMPO at pilot scale.

Key Properties

Highly Selective Oxidation
Stable Radical Source
Controlled Polymerization
View Details
HTempo Structure
Product
CAS: 2226-96-2

4-Hydroxy-TEMPO (TEMPOL / H-TEMPO)

A key functionalized derivative of TEMPO featuring both a stable nitroxyl radical and reactive hydroxyl group. Serves as a versatile antioxidant, catalyst, spin label, and crucial intermediate for synthesizing specialty chemicals.

Key Properties

Functionalized Stable Radical
Key Inhibitor Intermediate
Versatile Research Tool
View Details

Aqueous Redox Flow Batteries

Challenge:

Improving the energy density, efficiency, and cost-effectiveness of aqueous redox flow batteries for grid-scale energy storage.

VUP Solutions:

Research indicates significant potential for TEMPO-based catholytes to enhance the performance of aqueous redox flow batteries. VUP's expertise in TEMPO chemistry positions us to collaborate on developing and supplying tailored TEMPO derivatives optimized for stability and electrochemical potential in flow battery systems.

Redox Flow Batteries Challenge

Relevant Products

View all products

TEMPO (2,2,6,6-Tetramethylpiperidin-1-oxyl)

CAS:2564-83-2

A highly versatile and stable nitroxyl radical, renowned for its utility as a catalyst in selective organic oxidations and as a mediator in controlled radical polymerization (NMP). VUP produces high-purity TEMPO at pilot scale.

Key Properties

Highly Selective Oxidation
Stable Radical Source
Controlled Polymerization
High Purity Grade

Applications

Selective Oxidation CatalystControlled Radical PolymerizationEPR Spectroscopy+2 more
View Details
TEMPO Structure
Product

Material Development & Optimization

Challenge:

Optimizing the performance of TEMPO-based batteries requires understanding structure-property relationships and potentially synthesizing novel derivatives with enhanced stability, solubility, or redox potential. Performance optimization regarding energy density and charge/discharge efficiency is a key focus.

VUP Solutions:

Leveraging our deep expertise in nitroxide radical chemistry and R&D capabilities, we partner with researchers and companies to develop and synthesize custom TEMPO derivatives. Our goal is to address specific performance bottlenecks and contribute to advancements in ORB and flow battery technology through targeted material innovation. VUP has technologies involving TEMPO ready for scaling up.

Material Development Challenge

Featured VUP Products

Explore our core portfolio of chemical intermediates and solutions for this industry

TEMPO Structure
Product
CAS: 2564-83-2

TEMPO (2,2,6,6-Tetramethylpiperidin-1-oxyl)

A highly versatile and stable nitroxyl radical, renowned for its utility as a catalyst in selective organic oxidations and as a mediator in controlled radical polymerization (NMP). VUP produces high-purity TEMPO at pilot scale.

Key Properties

Highly Selective Oxidation
Stable Radical Source
Controlled Polymerization
View Details
HTempo Structure
Product
CAS: 2226-96-2

4-Hydroxy-TEMPO (TEMPOL / H-TEMPO)

A key functionalized derivative of TEMPO featuring both a stable nitroxyl radical and reactive hydroxyl group. Serves as a versatile antioxidant, catalyst, spin label, and crucial intermediate for synthesizing specialty chemicals.

Key Properties

Functionalized Stable Radical
Key Inhibitor Intermediate
Versatile Research Tool
View Details