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Detail of "7351-61-3"

  • MSDS Download
  • CAS Number:
  • 7351-61-3
  • Name:
  • 3-(Trichlorosilyl)propyl methacrylate

  • Molecular Structure:
  • Formula:
  • C7H11Cl3O2Si
  • Molecular Weight:
  • 261.61
  • Synonyms:
  • 3-trichlorosilylpropyl 2-methylprop-2-enoate;2-Propenoic acid, 2-methyl-, 3-(trichlorosilyl)propyl ester;Methacrylic acid, 3-(trichlorosilyl)propyl ester;3-Methacryloxypropyltrichlorosilane;
  • Density:
  • 1.231g/cm3
  • Boiling Point:
  • 271.9 °C at 760 mmHg
  • Flash Point:
  • 118.3 °C
  • Appearance:
  • UN 2987
  • Hazard Symbols:
  • CorrosiveC
  • Risk Codes:
  • 14-34
  • Safety:
  • 26-36/37/39-45 Details

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CAS No.7351-61-3 3-(Trichlorosilyl)propyl methacrylate

METHACRYLOXYPROPYLTRICHLOROSILANE

Supplier:Shandong Wanda Organosilicon New Material Co., Ltd [ China (Mainland)]

Platinum
Supplier
ISOManufacturer 2690Integral
2690

Tel:+86-21-54177116-805/ 54302881

Address:R1318 Greenland No. 3 Lane 58 Xinjian East Rd., Minhang

Contact Suppliers

CAS No.7351-61-3 3-(Trichlorosilyl)propyl methacrylate

Purity: >97%

Supplier:Silar Laboratories [ United States]

610Integral
610

Tel:+1 910-762-5800

Address:102 Orange Street

Contact Suppliers

CAS No.7351-61-3 3-(Trichlorosilyl)propyl methacrylate

Supplier:Beijing zhongke expanding chemical technology Co., LTD. [ China (Mainland)]

600Integral
600

Tel:010-51600645 58608265;57131961

Address:Beijing changping area connects center north pearl tower 2 buildings

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Reference

Anaerobically curing silicone compositions
Anaerobically curing silicone compositions. Baney, Ronald H.; Marko, Ollie W. (Dow Corning Corp., USA). U.S. US 4035355 12 Jul 1977, 8 pp. (English). (United States of America). CODEN: USXXAM. CLASS: IC: C08G077-04. NCL: 260046500Y. APPLICATION: US 75-639545 10 Dec 1975. DOCUMENT TYPE: Patent CA Section: 42 (Coatings, Inks, and Related Products) Hydrolytic polymn. of (methacryloyloxy) propylsilane derivs. gave the title products. Thus, a 60% soln. of 66 M parts Me3SiCl and 34 M parts trichloro[3-(methacryloyloxy)propyl]silane [7351-61-3] in PhMe was admixed with H2O at .apprx.45.degree. to give a siloxane having functionality 2.92. A few drops of a mixt. of siloxane 94.45, cumene hydroperoxide 2.50, inhibitors 1.55, and Me2SO 0.50 parts were placed on the threads of an Fe bolt, threaded with a nut, and kept for 24 h at room temp. to give an assembly having a prevailing torque of 13 N-m.
Methods of creating patterns on substrates and articles of manufacture resulting there from
Methods of creating patterns on substrates and articles of manufacture resulting there from. Bao, Lirong; Tan, Li; Huang, Xudong; Kong, Yen Peng; Guo, Lingjie Jay; Pang, Stella W.; Yee, Albert (Agency for Science, Technology and Research; The Regents of the University of Michigan, Singapore). U.S. Pat. Appl. Publ. US 2004231781 A1 25 Nov 2004, 18 pp. (English). (United States of America). CODEN: USXXCO. CLASS: ICM: B44C001-165. APPLICATION: US 2003-444505 23 May 2003. DOCUMENT TYPE: Patent CA Section: 76 (Electric Phenomena) Section cross-reference(s): 38, 48 Methods of creating patterns on substrates are presented, and articles of manuf. resulting therefrom. One method comprises applying a 1st surface energy modifier to an applicator to form a coating on the applicator; contacting the coating with a receiving member, the receiving member having a topog., the coating only contacting and remaining on at least some protrusions; exposing the 1st modified receiving member to a 2nd surface energy modifier, thereby forming a 2nd modified receiving member having surface modified recesses; applying a compn. comprising a polymeric material to the 2nd modified receiving member, the compn. substantially conforming to the topog. of the surface modified protrusions and the surface modified recesses; and contacting the compn. 7351-61-3 and 940-41-0 which are cas registry numbers of substances are two of reagents here.-coated, surface modified protrusions with a substrate for a time and under conditions sufficient to transfer the polymeric material on protrusions to the substrate. Because the surface energy of the sidewalls is lower than that on the protrusions, polymer dewetting from the sidewalls is promoted, which makes the polymer film discontinuous along the edges of patterns. Therefore, inked polymer patterns from the protrusions of the mold show very smooth edges and smaller dimensions compared to that of the mold. .
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