April 18, 2024 UMD Home FabLab AIMLab
Lyle Isaacs Professor
Chemistry and Biochemistry
Contact Info
Email: LIsaacs@umd.edu
Phone: 301-405-1884
Office: 3341 Chemistry Building
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Lyle Isaacs
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Search results for: Isaacs

Covetics: Novel Carbon Nanostructure Embedded Class of Metals
MSE researchers explore full scale characterization in new hybrid material.  More »

MSE Research Team Wins Seed Grant Funding for Novel Sensor Technology
Drs. Oded Rabin, Robert Briber and Xin Zhang will utilize funding to develop fiber-optic sensor.  More »

Clark School Engineers Recently Awarded Grants
Clark School-affiliated professors receive research funding  More »

NanoCenter Members Organize Chemistry Meeting
Macrocyclic and supramolecular chemistry discussed July 7-11 in DC  More »

UMD and UMass Chemists Design Cloaked, Anti-Cancer Toxin to Kill Tumors from Within
Collaboration yields promising results  More »

NSF Renews Support for MRSEC
The Maryland MRSEC, led by founding director . Ellen Williams, has been renewed by the National Science Foundation following a ten-year record of success in research, education, and outreach. The MRSEC will purse two research thrusts, in low-dimensional interfaces (IRG 1) and in multifuncitonal magnetic oxides (IRG 2), as well as a selection of seed projects.  More »

 

6 article(s) found.

 

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Publication List
  • 1. Cucurbit[6]uril–cucurbit[7]uril heterodimer promotes controlled self-assembly of supramolecular networks and supramolecular micelles by self-sorting of amphiphilic guests
    Mingming Zhang, Liping Cao, Lyle Isaacs
    Chem. Commun., 2014-10, (), pp.
    doi: 10.1039/C4CC07268E
  • 2. Hydrophobic monofunctionalized cucurbit[7]uril undergoes self-inclusion complexation and forms vesicle-type assemblies
    Yang Yu, Jie Li, Mingming Zhang, Liping Cao, Lyle Isaacs
    Chem. Commun., 2015-01, (), pp.
    doi: 10.1039/C5CC00236B
  • 3. Differentially functionalized acyclic cucurbiturils: synthesis, self-assembly and CB[6]-induced allosteric guest binding
    Mingming Zhang, David Sigwalt, Lyle Isaacs
    Chem. Commun., 2015-08, (), pp.
    doi: 10.1039/C5CC05803A
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