Abstract: Certain exemplary embodiments can provide a system, which comprises a device. The device comprises a solid electrolyte. The solid electrolyte comprises a reactive nano silicate precursor. The reactive nano silicate precursor is activated by a functional disturber. The functional disturber has a first end that is reactive with a silica/acid composite gel and a second end capable of transporting an ion.
Abstract: Certain exemplary embodiments can provide a reactive nano silicate, which can comprise a silica/acid composite comprising reactive functional groups activated by an intramolecular disturber. The reactive functional groups can comprise at least one of —SiH, —SiOH, silazane, durazane, polysilazane, and spiro silazane. The intramolecular disturber can comprise at least one of Fe2O3, Xe2O, SnO2, Al2O3, SiO2, TiO2, or a rare earth element oxide.
Abstract: Certain exemplary embodiments can provide a device comprising chemically functionalized graphene. The chemically functionalized graphene comprises a graphene core molecularly doped with functional elements and a subordinate graphene shell. The graphene core has a monolayer structure. The graphene core comprises powdery graphene. The powdery graphene comprises at least one of a graphene hybrid composite, a graphene nano platelet, graphene oxide, and reduced graphene oxide, and a molecular dopant.
Abstract: Certain exemplary embodiments can provide a system, which can comprise ink or a rubber object comprising reactive graphene. The reactive graphene comprises a graphene core that is chemically bonded with a reactive shell. The graphene core is a graphene hybrid composite comprising graphene and one or more of nanocarbon, graphene nanoplatelets, graphene oxide, reduced graphene oxide and/or pristine graphene, etc.