PXPD

98%,Pd>19.0%

Reagent Code: #68453
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CAS Number 725745-08-4

science Other reagents with same CAS 725745-08-4

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scatter_plot Molecular Information
Weight 538.63 g/mol
Formula C₁₆H₃₆Cl₄P₂Pd
inventory_2 Storage & Handling
Storage room temperature, dry

description Product Description

PXPD is a palladium-based specialty chemical, typically used as a catalyst in advanced organic synthesis. With a high palladium content (>19.0%) and purity of 98%, it is employed in cross-coupling reactions, such as Heck, Suzuki, and Sonogashira couplings, which are crucial for producing high-performance polymers like polyimides. These polymers are vital for heat-resistant materials in flexible printed circuit boards, insulating films, aerospace coatings, advanced adhesives, sealants, and microelectronic devices including semiconductors. Its niche role as a catalyst enables precise control over molecular structures, enhancing thermal stability, chemical resistance, and durability in demanding applications across electronics, aerospace, and automotive industries.

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inventory 1g
10-20 days ฿28,870.00

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PXPD
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PXPD is a palladium-based specialty chemical, typically used as a catalyst in advanced organic synthesis. With a high palladium content (>19.0%) and purity of 98%, it is employed in cross-coupling reactions, such as Heck, Suzuki, and Sonogashira couplings, which are crucial for producing high-performance polymers like polyimides. These polymers are vital for heat-resistant materials in flexible printed circuit boards, insulating films, aerospace coatings, advanced adhesives, sealants, and microelectro

PXPD is a palladium-based specialty chemical, typically used as a catalyst in advanced organic synthesis. With a high palladium content (>19.0%) and purity of 98%, it is employed in cross-coupling reactions, such as Heck, Suzuki, and Sonogashira couplings, which are crucial for producing high-performance polymers like polyimides. These polymers are vital for heat-resistant materials in flexible printed circuit boards, insulating films, aerospace coatings, advanced adhesives, sealants, and microelectronic devices including semiconductors. Its niche role as a catalyst enables precise control over molecular structures, enhancing thermal stability, chemical resistance, and durability in demanding applications across electronics, aerospace, and automotive industries.

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