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Detail of "616-43-3"

  • MSDS Download
  • CAS Number:
  • 616-43-3
  • Name:
  • 3-Methylpyrrole

  • Molecular Structure:
  • Formula:
  • C5H7N
  • Molecular Weight:
  • 81.1158
  • Synonyms:
  • Pyrrole,3-methyl- (7CI,8CI);3-Methyl-1H-Pyrrole;1H-Pyrrole, 3-methyl-;
  • Density:
  • 0.965 g/cm3
  • Boiling Point:
  • 147.5 °C at 760mmHg
  • Flash Point:
  • 47.2 °C
  • Hazard Symbols:
  • IrritantXi
  • Risk Codes:
  • 11-36/37/38
  • Safety:
  • 16-26-36/37/39-36 Details

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CAS No.616-43-3 3-Methylpyrrole

Supplier:Reath Bioscience Co., Inc [ China (Mainland)]

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Address:shanghai

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CAS No.616-43-3 3-Methylpyrrole

Chemdraw name:3-Methyl-1H-pyrrole;CAS Number: 616-43-3;Formula: C5H7N;FW: 81.118;Appearrance:Off-white solid;Purity:97%;in store www.astatech.com.cn

Supplier:Astatech(Chengdu) Pharmaceutical Co.,Ltd. [ China (Mainland)]

600Integral
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Tel:+86-28-82666845

Address:West Kelin Road Wenjiang Cross-Straits Technological Industry Park,Chengdu,Sichuan,P.R. China

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CAS No.616-43-3 3-Methylpyrrole

Supplier:Xiamen Hisunny Chemical Co., LTD [ China (Mainland)]

600Integral
600

Tel:86-592-3327115

Address:Unit 603,No.879,Xiahe Road,Meixin Building,Xiamen,China

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CAS No.616-43-3 3-Methylpyrrole

Supplier:ACS Scientific Inc. [ United States]

99Integral
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Tel:1-908-723-4992

Address:160 Liberty St, 4B Metuchen, NJ 08840 USA

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Reference

Pyrolysis gas chromatography-mass spectrometry of insoluble organic matter (kerogen) from a recent lacustrine sediment
Pyrolysis gas chromatography-mass spectrometry of insoluble organic matter (kerogen) from a recent lacustrine sediment. Yamamoto, Shuichi; Ishiwatari, Ryoshi; Philp, Paul R. (Fac. Sci.Chemical with cas number 616-43-3 also plays role., Tokyo Metrop. Univ., Tokyo 158, Japan). Chikyu Kagaku (Nippon Chikyu Kagakkai), 20(1), 39-50 (Japanese) 1986. CODEN: CKNKDM. ISSN: 0386-4073. DOCUMENT TYPE: Journal CA Section: 61 (Water) Section cross-reference(s): 53 A kerogen from a recent lacustrine sediment (Lake Haruna, Japan), was characterized by pyrolysis gas chromatog.-mass spectrometry (Py-GC-MS). The kerogen generated n-alkenes, n-alkanes, isoprenoidal hydrocarbons, fatty acid Me esters, fatty acids, alkylbenzenes, indenes, naphthalenes, phenols, methoxyphenols, furans, cyclopentenones, pyrroles, pyridines, and indoles. These products were derived from lipid-, carbohydrate-, amino acid-, protein-, and lignin-derived structures in kerogen. These interpretations are supported by previous results of org. compd. analyses. The pyrolysis products were useful as indicators of precursor materials in kerogen formation. .
A global evaluation of stripping efficiency by TD-GCMS
A global evaluation of stripping efficiency by TD-GCMS. Danel, A.; Veillerot, M.; Louveau, O.; Millet, C.; Tardif, F. (LETI/DTS, CEA-DRT, CEA-Grenoble, Grenoble 38054, Fr.). Materials Science & Engineering, B: Solid-State Materials for Advanced Technology, B102(1-3), 30-36 (English) 2003 Elsevier Science B.V. CODEN: MSBTEK. ISSN: 0921-5107. 616-43-3 and 7440-21-3 are cas registry numbers of chemicals which are used as reagents here. DOCUMENT TYPE: Journal CA Section: 74 (Radiation Chemistry, Photochemistry, and Photographic and Other Reprographic Processes) In this work, a global evaluation of stripping efficiency and resist poisoning by TD-GCMS is proposed. It is shown that TD-GCMS is very sensitive to post stripping residues: photoresist mainly and in a less extend sidewall polymers. This method allows the quantification of the stripping efficiency in the 99.99% range. TD-GCMS also offers a sensitive detection of the org. contamination left by the BEOL wet stripping responsible of resist poisoning: traces of solvent trapped in porous material. .
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