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    • 1. 发明申请
    • Thermally controlled particulate core migration within polymer matrix
    • 聚合物基体内的热控粒子芯迁移
    • US20080226995A1
    • 2008-09-18
    • US11717069
    • 2007-03-13
    • Philip J. CostanzoFrederick L. Beyer
    • Philip J. CostanzoFrederick L. Beyer
    • C08L87/00A61K47/48G03C5/00
    • G03F7/0388
    • A composition is provided that includes a polymer matrix. A core having a core surface is embedded within the polymer matrix. A polymeric ligand passivates the core surface and has a moiety Y, where Y is a Diels-Alder group of a diene or dienophile. A polymeric linker has a complementary Diels-Alder group diene or dienophile to moiety Y and forms a Diels-Alder bond with the moiety Y. A composition is also provided that includes polymer matrix having a matrix surface. A core having a core surface is present on the matrix surface. A polymeric ligand passivates the core surface and has a moiety Y, where Y is Diels-Alder group of a diene or dienophile. The polymer matrix and polymeric ligand together define a matrix-ligand Flory-Huggins binary interaction function greater than 0.
    • 提供了包含聚合物基质的组合物。 具有芯表面的芯嵌入聚合物基质内。 聚合物配体钝化核心表面并具有部分Y,其中Y是二烯或亲二烯体的Diels-Alder基团。 聚合物接头与Y部分具有互补的Diels-Alder族二烯或亲双烯体,并与部分Y形成Diels-Alder键。还提供了包含具有基质表面的聚合物基质的组合物。 具有芯表面的芯存在于基体表面上。 聚合物配体钝化核心表面并具有部分Y,其中Y是二烯或亲二烯体的Diels-Alder基团。 聚合物基质和聚合物配体一起定义了大于0的矩阵 - 配体Flory-Huggins二元相互作用函数。
    • 2. 发明授权
    • Thermally controlled particulate core migration within polymer matrix
    • 聚合物基体内的热控粒子芯迁移
    • US07863376B2
    • 2011-01-04
    • US11717069
    • 2007-03-13
    • Philip J. CostanzoFrederick L. Beyer
    • Philip J. CostanzoFrederick L. Beyer
    • C08F290/14C04B24/38
    • G03F7/0388
    • A composition is provided that includes a polymer matrix. A core having a core surface is embedded within the polymer matrix. A polymeric ligand passivates the core surface and has a moiety Y, where Y is a Diels-Alder group of a diene or dienophile. A polymeric linker has a complementary Diels-Alder group diene or dienophile to moiety Y and forms a Diels-Alder bond with the moiety Y. A composition is also provided that includes polymer matrix having a matrix surface. A core having a core surface is present on the matrix surface. A polymeric ligand passivates the core surface and has a moiety Y, where Y is Diels-Alder group of a diene or dienophile. The polymer matrix and polymeric ligand together define a matrix-ligand Flory-Huggins binary interaction function greater than 0.
    • 提供了包含聚合物基质的组合物。 具有芯表面的芯嵌入聚合物基质内。 聚合物配体钝化核心表面并具有部分Y,其中Y是二烯或亲二烯体的Diels-Alder基团。 聚合物接头与Y部分具有互补的Diels-Alder族二烯或亲双烯体,并与部分Y形成Diels-Alder键。还提供了包含具有基质表面的聚合物基质的组合物。 具有芯表面的芯存在于基体表面上。 聚合物配体钝化核心表面并具有部分Y,其中Y是二烯或亲二烯体的Diels-Alder基团。 聚合物基质和聚合物配体一起定义了大于0的矩阵 - 配体Flory-Huggins二元相互作用函数。
    • 3. 发明授权
    • Reversible viscosity reducing polymer
    • 可逆降粘聚合物
    • US07812069B2
    • 2010-10-12
    • US12254214
    • 2008-10-20
    • Philip J. CostanzoFrederick L. Beyer, IIIRobert E. Jensen
    • Philip J. CostanzoFrederick L. Beyer, IIIRobert E. Jensen
    • C06B23/00
    • C08F222/40C06B23/009C06B45/10
    • A reversible viscosity reducing polymer is provided that has a crosslinkage between subunits inclusive of a single Diels-Alder Such a reversible viscosity reducing polymer is particularly well suited as a matrix material for a heterogeneous propellant. A process for forming a reversible viscosity reducing polymer inclusive of a single Diels-Alder linkage includes reacting a native crosslinkable moiety with a crosslinker moiety having a Diels-Alder reactive moiety of a diene or dienophile to form a Diels-Alder reactive moiety capped polymer subunit. The Diels-Alder reactive moiety capped polymer subunit is then exposed to a Diels-Alder reactant inclusive of a complementary Diels-Alder reactive moiety where the reactant also includes at least one conventional crosslinkable moiety to form a crosslinkable moiety capped polymer subunit. Reaction of the crosslinkable moiety capped polymer subunit is then reacted with a conventional multifunctional crosslinking agent.
    • 提供了可逆的降粘聚合物,其具有包含单个Diels-Alder的亚基之间的交联。这种可逆粘度降低的聚合物特别适合作为非均相推进剂的基质材料。 用于形成包含单个Diels-Alder连接的可逆降粘聚合物的方法包括使天然可交联部分与具有二烯或亲二烯体的Diels-Alder反应性部分的交联剂部分反应以形成Diels-Alder反应性部分封端的聚合物亚基 。 然后将Diels-Alder反应性部分封端的聚合物亚单位暴露于Diels-Alder反应物,包括互补的Diels-Alder反应性部分,其中反应物还包括至少一个常规的可交联部分以形成可交联部分封端的聚合物亚基。 然后使可交联部分封端的聚合物亚单元的反应与常规的多功能交联剂反应。
    • 4. 发明申请
    • REVERSIBLE VISCOSITY REDUCING POLYMER
    • 可逆粘度降低聚合物
    • US20100099798A1
    • 2010-04-22
    • US12254214
    • 2008-10-20
    • Philip J. CostanzoFrederick L. Beyer, IIIRobert E. Jensen
    • Philip J. CostanzoFrederick L. Beyer, IIIRobert E. Jensen
    • C06B23/00C08F222/40
    • C08F222/40C06B23/009C06B45/10
    • A reversible viscosity reducing polymer is provided that has a crosslinkage between subunits inclusive of a single Diels-Alder Such a reversible viscosity reducing polymer is particularly well suited as a matrix material for a heterogeneous propellant. A process for forming a reversible viscosity reducing polymer inclusive of a single Diels-Alder linkage includes reacting a native crosslinkable moiety with a crosslinker moiety having a Diels-Alder reactive moiety of a diene or dienophile to form a Diels-Alder reactive moiety capped polymer subunit. The Diels-Alder reactive moiety capped polymer subunit is then exposed to a Diels-Alder reactant inclusive of a complementary Diels-Alder reactive moiety where the reactant also includes at least one conventional crosslinkable moiety to form a crosslinkable moiety capped polymer subunit. Reaction of the crosslinkable moiety capped polymer subunit is then reacted with a conventional multifunctional crosslinking agent.
    • 提供了可逆的降粘聚合物,其具有包含单个Diels-Alder的亚基之间的交联。这种可逆粘度降低的聚合物特别适合作为非均相推进剂的基质材料。 用于形成包含单个Diels-Alder连接的可逆降粘聚合物的方法包括使天然可交联部分与具有二烯或亲二烯体的Diels-Alder反应性部分的交联剂部分反应以形成Diels-Alder反应性部分封端的聚合物亚基 。 然后将Diels-Alder反应性部分封端的聚合物亚单位暴露于Diels-Alder反应物,包括互补的Diels-Alder反应性部分,其中反应物还包括至少一个常规的可交联部分以形成可交联部分封端的聚合物亚基。 然后使可交联部分封端的聚合物亚单元的反应与常规的多功能交联剂反应。