SNM: Scalable Manufacturing of Unique Hexaboride Nanomaterials for Advanced Energy Generation and Gas Storage Applications

Information

  • NSF Award
  • 1246792
Owner
  • Award Id
    1246792
  • Award Effective Date
    10/1/2012 - 11 years ago
  • Award Expiration Date
    10/31/2013 - 10 years ago
  • Award Amount
    $ 900,000.00
  • Award Instrument
    Continuing grant

SNM: Scalable Manufacturing of Unique Hexaboride Nanomaterials for Advanced Energy Generation and Gas Storage Applications

NON-TECHNICAL DESCRIPTION: The goal of this project is to explore the scalable manufacturing and fundamental behavior of unique nanoscale boride materials for applications in several industrially-relevant and critical technologies, with a special emphasis on energy generation and gas storage applications. This project focuses on two novel and complementary processing techniques for the continuous and scaled manufacturing of boride materials (solution combustion synthesis for production of the boride powders and spark plasma sintering for consolidation of the powders), as well as on fundamental studies that can eliminate critical roadblocks during scale-up for the eventual manufacturability of these advanced materials. The project involves the participation of community college students, as well as collaborations with industrial partners.<br/><br/>TECHNICAL DETAILS: The purpose of this project is the creation, rational design, optimization, and scaled manufacturing of boride nanomaterials at a variety of length scales, from atomic level grain boundary engineering to macroscopic physical behavior of these materials. It is an integrated effort that will fuse theoretical and modeling approaches to recent experimental developments in materials processing, including solution combustion synthesis and spark plasma sintering. This project is the first study to (i) scale the combustion synthesis process for the production of boride nanomaterials, (ii) design and implement a process for the continuous manufacturing of bulk specimens by spark plasma sintering, (iii) optimize the diffusion behavior and gas storage capacity of a variety of hexaboride compounds in electric fields, and (iv) combine experimental work with molecular modeling techniques to study the diffusion of ions and gases in hexaborides.<br/><br/>This project on Scalable Nanomanufacturing (SNM) is co-funded by the Mathematical and Physical Sciences (MPS) and Engineering (ENG) Directorates.

  • Program Officer
    Lynnette D. Madsen
  • Min Amd Letter Date
    8/27/2012 - 12 years ago
  • Max Amd Letter Date
    8/27/2012 - 12 years ago
  • ARRA Amount

Institutions

  • Name
    Alfred University
  • City
    Alfred
  • State
    NY
  • Country
    United States
  • Address
    1 Saxon Drive
  • Postal Code
    148021205
  • Phone Number
    6078712026

Investigators

  • First Name
    Scott
  • Last Name
    Misture
  • Email Address
    misture@alfred.edu
  • Start Date
    8/27/2012 12:00:00 AM
  • First Name
    Victor
  • Last Name
    Vasquez
  • Email Address
    vvasquez@unr.edu
  • Start Date
    8/27/2012 12:00:00 AM
  • First Name
    Olivia
  • Last Name
    Graeve
  • Email Address
    ograeve@ucsd.edu
  • Start Date
    8/27/2012 12:00:00 AM
  • First Name
    Doreen
  • Last Name
    Edwards
  • Email Address
    dedwards@alfred.edu
  • Start Date
    8/27/2012 12:00:00 AM
  • First Name
    Yiquan
  • Last Name
    Wu
  • Email Address
    wuy@alfred.edu
  • Start Date
    8/27/2012 12:00:00 AM

Program Element

  • Text
    NANOSCALE: INTRDISCPL RESRCH T
  • Code
    1674
  • Text
    DMR SHORT TERM SUPPORT
  • Code
    1712

Program Reference

  • Text
    NANOMANUFACTURING
  • Text
    NANOSCALE: INTRDISCPL RESRCH T
  • Code
    1674
  • Text
    Nanomanufacturing
  • Code
    1788
  • Text
    WOMEN, MINORITY, DISABLED, NEC
  • Code
    9102
  • Text
    NANO NON-SOLIC SCI & ENG AWD
  • Code
    7237
  • Text
    MANUFACTURING BASE RESEARCH
  • Code
    9146
  • Text
    MULTI DIVISION/UNIVERSITY
  • Code
    9162
  • Text
    ADVANCED MATERIALS & PROCESSING PROGRAM
  • Text
    SINGLE DIVISION/UNIVERSITY
  • Code
    9161