Chemically Bonded Thermally Expandable Microsphere-silica Composite Aerogel with Thermal Insulation Property for Industrial Use

논문상세정보
' Chemically Bonded Thermally Expandable Microsphere-silica Composite Aerogel with Thermal Insulation Property for Industrial Use' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Thermally expandable microsphere
  • aerogel
  • composites
  • insulator
  • organic-inorganic
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
81 0

0.0%

' Chemically Bonded Thermally Expandable Microsphere-silica Composite Aerogel with Thermal Insulation Property for Industrial Use' 의 참고문헌

  • 아세토니트릴 첨가가 물유리 기반 실리카 에어로겔의 기공구조에 미치는 영향
    김영훈 [2018]
  • 산 촉매가 물유리 기반 실리카 에어로겔의 기공구조에 미치는 영향
    나하윤 [2017]
  • Three routes to superinsulating silica aerogel powder
  • Thermally expandable microspheres with excellent expansion characteristics at high temperature
    M. Jonsson [2010]
  • Synthesis and properties of poly(3-n-dodecylthiophene) modified thermally expandable microspheres
  • Synthesis and evaluation of polypyrrole-coated thermally-expandable microspheres: an improved approach to reversible adhesion
    A. Schmid [2009]
  • Synthesis and characterization Ru–C/SiO2 aerogel catalysts for sugar hydrogenation reactions
  • Surface modification of thermally expandable microspheres for enhanced performance of disbondable adhesive
    Y. Lu [2016]
  • Surface modification of thermally expandable microspheres by grafting poly(glycidyl methacrylate)using ARGET ATRP
    M. Jonsson [2009]
  • Surface modification and characterization of thermoplastic polyurethane
    P. Alves [2009]
  • Super-insulating, flameretardant, and flexible poly(dimethylsiloxane) composites based on silica aerogel
    H. Lee [2019]
  • Strength and toughness improvement of cement binders using expandable thermoplastic microspheres
    H. Aglan [2009]
  • Silica aerogel/polyvinyl alcohol (PVA) insulation composites with preserved aerogel pores using interfaces between the superhydrophobic aerogel and hydrophilic PVA solution
    H. M. Kim [2015]
  • Silica aerogel/epoxy composites with preserved aerogel pores and low thermal conductivity
    H. M. Kim [2015]
  • Producing surfactant-synthesized nanomaterials in situ on a building substrate, without volatile organic compounds
  • Preparation of ambient pressure dried MTMS/TEOS co-precursor silica aerogel by adjusting NH4OH concentration
    Z. Li [2014]
  • Preparation and characterization of conducting polymercoated thermally expandable microspheres
    S. -Y. Chen [2017]
  • Photo-formation of gold nanoparticles : photoacoustic studies on solid monoliths of Au(III)–chitosan–silica aerogels
  • Monodisperse macroporous poly(glycidyl methacrylate)microspheres coated with silica: design, preparation and characterization
    S. Grama [2014]
  • Methyltrimethoxysilane silica aerogel composite with carboxyl-functionalised multi-wall carbon nanotubes
    K.-Y. Lee [2018]
  • Latent heat storage by silica-coated polymer beads containing organic phase change materials
    T. Feczkó [2016]
  • Large Optical Nonlinearity of Highly Porous Silica Nanoaerogels in the Nanosecond Time Domain
    JaeTae Seo [2006]
  • Influence of structure-directing additives on the properties of poly(methylsilsesquioxane)aerogel-like materials
    M. Ochoa [2019]
  • Improvement of thermal insulation performance of silica aerogels by Al2O3powders doping
    Y. Lei [2017]
  • Hydrophobic and thermal insulation properties of silica aerogel/epoxy composite
    D. Ge [2009]
  • Foam injection molding of thermoplastic elastomers: Blowing agents, foaming process and characterization of structural foams
    S. Ries [2014]
  • Fire-retardant and thermally insulating phenolic-silica aerogels
    Z. -L. Yu [2018]
  • Elastic and Superhydrophobic Monolithic Methyltrimethoxysilane-based Silica Aerogels by Two-step Sol-gel Process
  • Effects of hollow microspheres on the thermal insulation of polysiloxane foam
    C. Zhang [2017]
  • Cross-linking 3D assemblies of nanoparticles into mechanically strong aerogels by surface-initiated free-radical polymerization
    S. Mulik [2008]
  • Conducting polymer-coated thermally expandable microspheres
  • Characterization of silica-polymer aerogel composites by small-angle neutron scattering and transmission electron microscopy
    X. Hu [2001]
  • Characterization of Mechanical Property Change in Polymer Aerogels Depending on the Ligand Structure of Acrylate Monomer
    이규연 [2016]
  • Aerogels – airy materials:chemistry, structure, and properties
    N. Hüsing [1998]