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GOYENCHEM-DOPO is an new designed phosphorus halogen-free flame retardant which is mainly applied on epoxy resin for PCB, and various of thermosetting resin. Besides, GOYENCHEM- DOPO can be widely used in PCB circuit plates, electrical

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DOPO flame retardant 35948-25-5 used in linear polyester, polyamide, epoxy resin, polyurethane, also widely used in electronic equipment with plastic, copper layer circuit boards, etc. Specification Item Unit Index DOPO % ≥99.5 Cl mg/KG

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GY-FR-DOP CAS No.35948-25-5 - GO YEN CHEMICAL INDUSTRIAL CO LTD

Categories: High-Performance Phosphate Flame Retardant, CCL、FCCL、PCB、EMC Grade Flame Retardant Tags: Flame Retardant, 35948-25-5, GY-FR-DOP Description Description Intro GO YEN CHEMICAL INDUSTRIAL CO., LTD. is the largest We have...

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Halogen-free flame retardant: HCA reactive - Knowledge - Zhejiang Xusen Non-halogen Smoke Suppressing Fire Retardants Co.,Ltd

HCA reactive halogen-free antioxidant flame retardant DOPO 1. Overview Chemical name: 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide; Abbreviation: DOPO (DOP); Other names: Japan Sanguang Company's trade name HCA; CAS: 35948-25 quality

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CAS NO. 35948-25-5 GOYENCHEM-DOPO Reactive Type Phosphorus Flame Retardant More 1 Go Yen Chemical Industrial Co., Ltd For more than 40 years, GYC has played an active role in fine chemical field in Asia.

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Flame retardant, mechanical properties and curing kinetics of DOPO-based epoxy resins | Request PDF

The isothermal curing kinetics of a flame-retardant epoxy resin containing DOPO (1.5 wt% of phosphorus) with hardener DICY was investigated using differential scanning calorimetry and oscillatory

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Flame Retardants in Printed Circuit Boards - EPA

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In this study, to develop an organic/inorganic synergistic flame retardant and to reduce the dosage and cost of flame retardants, organic/inorganic synergistic flame retardants, hexakis(4-boronic acid-phenoxy)-cyclophosphazene (CP-6B), and

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Molecular Firefighting—How Modern Phosphorus Chemistry Can Help Solve the Challenge of Flame Retardancy - Velencoso - 2018 - Angewandte Chemie

5.1 Synergistic Multicomponent Systems Flame‐retardant structures containing heteroatoms such as nitrogen, silicon, sulfur, and boron in combination with phosphorus provide a huge range of specific interactions, compared to the decomposition

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Flame Retardancy and Thermal Degradation of Intumescent Flame Retardant Poly(lactic acid)/Starch Biocomposites | Request PDF

Flame-retardant and superhydrophobic coatings over cotton fabric are fabricated by solution immersion method using green-based flame retardants, i.e. DNA, silver nitrate and

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Grade: Industrial Grade Superiority it is very good thermal stability and high bromine content making it a prime candidate for high temperature applications. it exhibits good uv resistance and hence is suitable for use in many applications

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Polyurethane types, synthesis and applications – a review - RSC Advances (RSC Publishing) DOI:10.1039/C6RA14525F

Polyurethane types, synthesis and applications – a review John O. Akindoyo * a, M. D. H. Beg * a, Suriati Ghazali * a, M. R. Islam * b, Nitthiyah Jeyaratnam a and A. R. Yuvaraj c a Faculty of Chemical and Natural Resources Engineering,

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Zinc Borate[ZB35] CAS NO.1332-07-6 - LookChem

cas no.: 1332-07-6 zinc borate is one environmental-friendly halogen -free f lame retardant.there are some formulations of x zno. yb2o3.zh2o,in which zinc borate with 3 hydrate is called zb-223. it is an good flame retardant synergist and smoke

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high quality rubber accelerator tmtm 97-74-5-factory directly supply | GO Biotech Chemicals

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Water Treatment Chemicals: August 2011

11/8/2011 · flame retardant in for electronics, circuit board, linear polyester, polyamide, epoxy resin, polyurethane. DOPO. DOP 9, 10-dihydro-9-oxa-10-phosphahenanthrene-10-oxide(DOPO) Abbreviation: DOPO CAS NO: 35948-25-5 Chemical Formula: C12H9O2P Item

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polymer add (thailand) co., ltd

Polymer Add (Thailand) Co., Ltd

35948-25-5 Phosphorus Flame Retardants Ammonium polyphosphate 668333-79-9 Phosphorus Flame Retardants Diethyl ethyl phosphonate 78-38-6 Phosphorus Flame Retardants Diethyl N,N bis (2-hydroxyethyl) amino methylphosphonate 2781-11-5

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RoHS Exemptions - Review of Annex to RoHS Directive: News

35948-25-5 252-813-7 6H-Dibenz[c,e][1,2]oxaphosphorin, 6-oxide (DOPO) Flame retardant in printed circuit boards 63747-58-0 613-366-7 Poly-(m-phenylene methylphosphonate)(Fyrol PMP) 68664-06-2 Phosphonate oligomer, polyphosphonate Copper clad...

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US7449577B2 - High purity piperazine pyrophosphate and process of producing same - Google Patents

The present invention provides piperazine pyrophosphate represented by chemical formula (I) which has a sodium content of 10 ppm or lower and a process of producing the same. The piperazine pyrophosphate has high purity and provides a flame reta

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Metallic phytates as efficient bio-based phosphorous flame retardant additives for poly(lactic acid) | Request PDF

The different approaches used in producing biobased flame retardant polyesters and epoxy resins aredemonstrated by higher char yields (25.5 from 14.0 % in air), decreased burn time from

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FLAME-RETARDANT POLYAMIDE COMPOSITION - INVISTA NORTH AMERICA S.A.R.L.

The test compositions contained 42.7 parts of 25 RV N66 polyamide, 40.0 parts of glass fiber, 12.0 parts of Exolit® OP 1314 flame-retardant additive, 5.0 parts of Prenifor EPFR-MPP300 flame-retardant additive, and 0.3 parts of Irganox® B1171

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Flame Retardancy and Thermal Degradation of Intumescent Flame Retardant Poly(lactic acid)/Starch Biocomposites | Request PDF

Flame-retardant and superhydrophobic coatings over cotton fabric are fabricated by solution immersion method using green-based flame retardants, i.e. DNA, silver nitrate and

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Industrial & Engineering Chemistry Research | Vol 52, No 22

Industrial & Engineering Chemistry Research 2013, 52, 22, 7045-7046 (Editorial) Publication Date (Web): June 5, 2013 First Page Full text PDF Process Design and Control

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High‐performance biobased epoxy derived from rosin | Request PDF

The higher epoxy value of 1.02, lower viscosity (0.96 Pa s at 25 C), higher mechanical, and higher curing reactivity toward methylhexahydropthalic anhydride of TEIA as compared with epoxidized

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polyurethane types, synthesis and applications – a review - rsc advances (rsc publishing) doi:10.1039/c6ra14525f

Polyurethane types, synthesis and applications – a review - RSC Advances (RSC Publishing) DOI:10.1039/C6RA14525F

Polyurethane types, synthesis and applications – a review John O. Akindoyo * a, M. D. H. Beg * a, Suriati Ghazali * a, M. R. Islam * b, Nitthiyah Jeyaratnam a and A. R. Yuvaraj c a Faculty of Chemical and Natural Resources Engineering,

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Water Treatment Chemicals: August 2011

11/8/2011 · flame retardant in for electronics, circuit board, linear polyester, polyamide, epoxy resin, polyurethane. DOPO. DOP 9, 10-dihydro-9-oxa-10-phosphahenanthrene-10-oxide(DOPO) Abbreviation: DOPO CAS NO: 35948-25-5 Chemical Formula: C12H9O2P Item

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Polymer Add (Thailand) Co., Ltd

35948-25-5 Phosphorus Flame Retardants Ammonium polyphosphate 668333-79-9 Phosphorus Flame Retardants Diethyl ethyl phosphonate 78-38-6 Phosphorus Flame Retardants Diethyl N,N bis (2-hydroxyethyl) amino methylphosphonate 2781-11-5

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RoHS Exemptions - Review of Annex to RoHS Directive: News

35948-25-5 252-813-7 6H-Dibenz[c,e][1,2]oxaphosphorin, 6-oxide (DOPO) Flame retardant in printed circuit boards 63747-58-0 613-366-7 Poly-(m-phenylene methylphosphonate)(Fyrol PMP) 68664-06-2 Phosphonate oligomer, polyphosphonate Copper clad...

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us7449577b2 - high purity piperazine pyrophosphate and process of producing same - google patents

US7449577B2 - High purity piperazine pyrophosphate and process of producing same - Google Patents

The present invention provides piperazine pyrophosphate represented by chemical formula (I) which has a sodium content of 10 ppm or lower and a process of producing the same. The piperazine pyrophosphate has high purity and provides a flame reta

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metallic phytates as efficient bio-based phosphorous flame retardant additives for poly(lactic acid) | request pdf

Metallic phytates as efficient bio-based phosphorous flame retardant additives for poly(lactic acid) | Request PDF

The different approaches used in producing biobased flame retardant polyesters and epoxy resins aredemonstrated by higher char yields (25.5 from 14.0 % in air), decreased burn time from

Get Inquiry
flame-retardant polyamide composition - invista north america s.a.r.l.

FLAME-RETARDANT POLYAMIDE COMPOSITION - INVISTA NORTH AMERICA S.A.R.L.

The test compositions contained 42.7 parts of 25 RV N66 polyamide, 40.0 parts of glass fiber, 12.0 parts of Exolit® OP 1314 flame-retardant additive, 5.0 parts of Prenifor EPFR-MPP300 flame-retardant additive, and 0.3 parts of Irganox® B1171

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flame retardancy and thermal degradation of intumescent flame retardant poly(lactic acid)/starch biocomposites | request pdf

Flame Retardancy and Thermal Degradation of Intumescent Flame Retardant Poly(lactic acid)/Starch Biocomposites | Request PDF

Flame-retardant and superhydrophobic coatings over cotton fabric are fabricated by solution immersion method using green-based flame retardants, i.e. DNA, silver nitrate and

Get Inquiry
industrial & engineering chemistry research | vol 52, no 22

Industrial & Engineering Chemistry Research | Vol 52, No 22

Industrial & Engineering Chemistry Research 2013, 52, 22, 7045-7046 (Editorial) Publication Date (Web): June 5, 2013 First Page Full text PDF Process Design and Control

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high‐performance biobased epoxy derived from rosin | request pdf

High‐performance biobased epoxy derived from rosin | Request PDF

The higher epoxy value of 1.02, lower viscosity (0.96 Pa s at 25 C), higher mechanical, and higher curing reactivity toward methylhexahydropthalic anhydride of TEIA as compared with epoxidized

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polyurethane types, synthesis and applications – a review - rsc advances (rsc publishing) doi:10.1039/c6ra14525f

Polyurethane types, synthesis and applications – a review - RSC Advances (RSC Publishing) DOI:10.1039/C6RA14525F

Polyurethane types, synthesis and applications – a review John O. Akindoyo * a, M. D. H. Beg * a, Suriati Ghazali * a, M. R. Islam * b, Nitthiyah Jeyaratnam a and A. R. Yuvaraj c a Faculty of Chemical and Natural Resources Engineering,

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