High Purity 4-Nitrophenyl Isothiocyanate Manufacturer & Supplier | Organic Synthesis Intermediate

Discover the applications and advantages of 4-Nitrophenyl Isothiocyanate (CAS 2131-61-5), a critical organic synthesis intermediate. We are a leading manufacturer and supplier in China, offering high purity and reliable supply for your R&D and production needs.

Get a Quote & Sample

Key Advantages of Sourcing from Us

Exceptional Purity and Consistency

Our 4-Nitrophenyl Isothiocyanate is meticulously produced to meet stringent purity standards (≥98.0%), ensuring reliable and reproducible results in your organic synthesis and R&D projects. We are a dedicated manufacturer focused on quality.

Extensive Application Spectrum

This versatile intermediate is fundamental in creating various thiourea derivatives, used extensively in medicinal chemistry, biochemical studies, and the development of novel materials. Explore how our chemical intermediate can advance your research.

Global Supply Chain Reliability

As a prominent supplier based in China, we offer robust logistics and a stable supply of 4-Nitrophenyl Isothiocyanate. Partner with us to ensure uninterrupted production and research, and inquire about our best price for bulk orders.

Core Applications of 4-Nitrophenyl Isothiocyanate

Organic Synthesis

A cornerstone reagent for synthesizing diverse organic compounds, including pharmaceutical intermediates and complex molecules. Buy this essential chemical intermediate to enhance your synthesis capabilities.

Biochemical Labeling

Utilized for labeling proteins and peptides, aiding in interaction studies, localization tracking, and functional analysis in various biological research settings. Discover its utility as a specialized reagent.

Pharmaceutical Development

Serves as a critical building block in the synthesis of potential therapeutic agents and bioactive compounds, driving innovation in drug discovery. Partner with a reliable manufacturer for your API development.

Material Science Research

Investigated for its role in creating advanced materials, such as polythioureas for self-healing applications, showcasing its potential beyond traditional chemical synthesis.