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Silver NNdiethyldithiocarbamate CAS 1470617 China Suppliers Factory

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Buy high-purity Silver N,N-diethyldithiocarbamate CAS 1470-61-7 from leading China suppliers. Our factory provides premium Silver diethyldithiocarbamate for ppb-level arsenic detection.
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Description
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Silver N,N-diethyldithiocarbamate (CAS No. 1470-61-7) is a premium-grade spectrophotometric reagent engineered for the high-precision detection of arsenic. As a critical component in analytical chemistry, this off-white crystalline powder is specifically designed to react with arsine gas to form a distinctive red-colored complex, allowing for the quantification of trace-level contaminants in environmental, biological, and industrial samples.

Utilized extensively in water quality analysis and food safety testing, this reagent offers unparalleled sensitivity and selectivity. By enabling detection at parts-per-billion (ppb) levels, it serves as a gold-standard reference for regulatory compliance and toxicological studies, ensuring that heavy metal concentrations—including arsenic, antimony, and tellurium—are monitored with absolute accuracy.

Detailed Parameters

Chemical NameSilver N,N-diethyldithiocarbamate CAS No.1470-61-7
Molecular FormulaC5H10AgNS2 Molecular Weight256.14
EINECS No.216-003-7 AppearanceOff-white powder
Assay98.0% min. Free Acid0.05% max.
Insoluble Matter0.3% max. (in water) Loss on Drying0.5% max.

Key Advantages

Extreme Sensitivity

Detects arsenic at parts-per-billion levels, surpassing most alternative colorimetric methods.

High Selectivity

Selective complexation with arsine minimizes interference from other heavy metals for accurate results.

Stable Colorimetric Output

Produces a stable red complex allowing both visual comparison and precise spectrophotometry.

Broad Applicability

Effective for water, soil, and biological specimens across various matrices.

Cost-Effective Analysis

Requires simpler instrumentation than advanced spectroscopy, reducing overhead costs.

Regulatory Compliance

A reference-grade reagent used for standardized environmental and industrial hygiene monitoring.

Product Gallery

Management Platforms

Quality Assurance

Strict batch testing ensuring minimum 98% assay for consistent analytical performance.

Pure Synthesis

Advanced chemical manufacturing processes to keep free acid levels below 0.05%.

Stability Control

Optimized drying processes to maintain loss on drying under 0.5% for long-term shelf life.

Trace Analysis

Specialized in low-level contaminant detection for environmental monitoring.

Logistics Excellence

Secure packaging designed to protect sensitive chemical reagents during transit.

Technical Support

Expert guidance on spectrophotometric methods and sample digestion protocols.

Investment Return Comparison

FeatureStandard ReagentsSilver N,N-diethyldithiocarbamateBusiness Impact
Detection LimitModerateUltra-Low (ppb)Higher Precision
InterferenceHigh Metals Cross-talkMinimal/SelectiveReduced Re-testing
Equipment CostVery High (ICP-MS)Moderate (Spectrophotometer)Lower CAPEX
Speed of ResultSlow (Prep intensive)Rapid Color ChangeFaster Throughput
Regulatory FitVariableStandardized ReferenceGuaranteed Compliance

Frequently Asked Questions

Q: What is the primary use of Silver N,N-diethyldithiocarbamate?

It is primarily used as a highly sensitive spectrophotometric reagent for the detection and quantification of arsenic in environmental, biological, and industrial samples.

Q: How does the arsenic detection method work?

Arsenic compounds are reduced to arsine gas, which then reacts with the reagent to form a red-colored complex measurable at 510-540 nm.

Q: Can this reagent be used for other heavy metals?

Yes, its selective reactivity also extends to the determination of antimony and tellurium concentrations in various matrices.

Q: What are the purity specifications for this product?

The product maintains a minimum assay of 98.0%, with free acid limited to 0.05% max and loss on drying kept under 0.5% max.

Q: Why choose this over advanced spectroscopic techniques?

It offers a cost-effective solution requiring simpler instrumentation while maintaining exceptional sensitivity and reliability for routine monitoring.

Q: In which industries is this reagent most commonly applied?

It is widely used in water quality analysis, food safety testing, industrial hygiene monitoring, and toxicological research.

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