Search

Melissa Schillo Phones & Addresses

  • 12563 62Nd St N, Stillwater, MN 55082
  • Broadview Hts, OH
  • Saint Paul, MN
  • 1297 Emerald Creek Dr, Cleveland, OH 44147 (440) 546-0816
  • Broadview Heights, OH
  • 3105 Countryside Ave UNIT D, Saint Paul, MN 55129 (440) 546-0816

Work

Position: Homemaker

Education

Degree: High school graduate or higher

Publications

Us Patents

Water Soluble Quantum Dots

View page
US Patent:
7597870, Oct 6, 2009
Filed:
Jan 2, 2008
Appl. No.:
11/968228
Inventors:
Wei-Heng Shih - Bryn Mawr PA, US
Wan Y. Shih - Bryn Mawr PA, US
Hui Li - Philadelphia PA, US
Melissa Colleen Schillo - Broadview Heights OH, US
Assignee:
Drexel University - Philadelphia PA
International Classification:
C01B 17/20
C01G 21/21
C01G 11/02
C01G 9/08
C01G 45/00
US Classification:
4235611, 4235661, 977774, 2523014 R, 2523016 R, 2523016 S, 2523014 S, 2523014 F
Abstract:
An economic, direct synthetic method for producing water soluble QDs that are ready for bioconjugation is provided. The method can produce aqueous QDs with emission wavelengths varying from 400 nm to 700 nm. Highly luminescent metal sulfide (MS) QDs are produced via an aqueous synthesis route. MS QDs are capped with thiol-containing charged molecules in a single step. The resultant MS QDs exhibit the distinctive excitonic photoluminescence desired of QDs and can be fabricated to avoid undesirable broadband emissions at higher wavelengths. This provides a significant improvement over the present complex and expensive commercial processes for the production of QDs. The aqueous QDs are stable in biological fluids over a long period of time. In addition, nontoxic ZnS QDs have been produced with good photoluminescence properties by refluxing the ZnS QD suspensions over a period of time.

Water Soluble Quantum Dots

View page
US Patent:
7824653, Nov 2, 2010
Filed:
Sep 2, 2009
Appl. No.:
12/552970
Inventors:
Wei-Heng Shih - Bryn Mawr PA, US
Wan Y. Shih - Bryn Mawr PA, US
Hui Li - Philadelphia PA, US
Melissa Colleen Schillo - Broadview Heights OH, US
Assignee:
Drexel University - Philadelphia PA
International Classification:
C01B 17/20
C01G 21/21
C01G 11/02
C01G 9/08
C01G 45/00
US Classification:
4235611, 4235661, 977774, 2523014 R, 2523016 R, 2523016 S, 2523014 S, 2523014 F
Abstract:
An economic, direct synthetic method for producing water soluble QDs that are ready for bioconjugation is provided. The method can produce aqueous QDs with emission wavelengths varying from 400 nm to 700 nm. Highly luminescent metal sulfide (MS) QDs are produced via an aqueous synthesis route. MS QDs are capped with thiol-containing charged molecules in a single step. The resultant MS QDs exhibit the distinctive excitonic photoluminescence desired of QDs and can be fabricated to avoid undesirable broadband emissions at higher wavelengths. This provides a significant improvement over the present complex and expensive commercial processes for the production of QDs. The aqueous QDs are stable in biological fluids over a long period of time. In addition, nontoxic ZnS QDs have been produced with good photoluminescence properties by refluxing the ZnS QD suspensions over a period of time.

Water Soluble Nanocrystalline Quantum Dots

View page
US Patent:
7976819, Jul 12, 2011
Filed:
Sep 21, 2010
Appl. No.:
12/887224
Inventors:
Wei-Heng Shih - Bryn Mawr PA, US
Wan Y. Shih - Bryn Mawr PA, US
Hui Li - Philadelphia PA, US
Melissa Colleen Schillo - Broadview Heights OH, US
Assignee:
Drexel University - Philadelphia PA
International Classification:
C01B 17/20
C01G 21/21
C01G 11/02
C01G 9/08
C01G 45/00
US Classification:
4235611, 4235661, 977774, 2523016 R, 2523016 S, 2523014 S, 2523014 F
Abstract:
An economic, direct synthetic method for producing water soluble QDs that are ready for bioconjugation is provided. The method can produce aqueous QDs with emission wavelengths varying from 400 nm to 700 nm. Highly luminescent metal sulfide (MS) QDs are produced via an aqueous synthesis route. MS QDs are capped with thiol-containing charged molecules in a single step. The resultant MS QDs exhibit the distinctive excitonic photoluminescence desired of QDs and can be fabricated to avoid undesirable broadband emissions at higher wavelengths. This provides a significant improvement over the present complex and expensive commercial processes for the production of QDs. The aqueous QDs are stable in biological fluids over a long period of time. In addition, nontoxic ZnS QDs have been produced with good photoluminescence properties by refluxing the ZnS QD suspensions over a period of time.

Water Soluble Nanocrystalline Quantum Dots

View page
US Patent:
8080229, Dec 20, 2011
Filed:
Jun 7, 2011
Appl. No.:
13/155141
Inventors:
Wei-Heng Shih - Bryn Mawr PA, US
Wan Y. Shih - Bryn Mawr PA, US
Hui Li - Philadelphia PA, US
Melissa Colleen Schillo - Broadview Heights OH, US
Assignee:
Drexel University - Philadelphia PA
International Classification:
C01B 17/20
C01G 21/21
C01G 11/02
C01G 9/08
C01G 45/00
US Classification:
4235611, 4235661, 977774, 2523014 R, 2523016 R, 2523016 S, 2523014 S, 2523014 F
Abstract:
An economic, direct synthetic method for producing water soluble QDs that are ready for bioconjugation is provided. The method can produce aqueous QDs with emission wavelengths varying from 400 nm to 700 nm. Highly luminescent metal sulfide (MS) QDs are produced via an aqueous synthesis route. MS QDs are capped with thiol-containing charged molecules in a single step. The resultant MS QDs exhibit the distinctive excitonic photoluminescence desired of QDs and can be fabricated to avoid undesirable broadband emissions at higher wavelengths. This provides a significant improvement over the present complex and expensive commercial processes for the production of QDs. The aqueous QDs are stable in biological fluids over a long period of time. In addition, nontoxic ZnS QDs have been produced with good photoluminescence properties by refluxing the ZnS QD suspensions over a period of time.

Synthesis Of Water Soluble Nanocrystalline Quantum Dots And Uses Thereof

View page
US Patent:
20060078490, Apr 13, 2006
Filed:
May 24, 2005
Appl. No.:
11/136653
Inventors:
Wei-Heng Shih - Bryn Mawr PA, US
Wan Shih - Bryn Mawr PA, US
Hui Li - Philadelphia PA, US
Melissa Schillo - Broadview Heights OH, US
International Classification:
A61K 39/395
C01G 11/02
C07K 16/46
US Classification:
423566100, 424178100, 530391100, 977705000
Abstract:
An economic, direct synthetic method for producing water soluble QDs that are ready for bioconjugation is provided. The method can produce aqueous QDs with emission wavelengths varying from 400 nm to 700 nm. Highly luminescent metal sulfide (MS) QDs are produced via an aqueous synthesis route. MS QDs are capped with thiol-containing charged molecules in a single step. The resultant MS QDs exhibit the distinctive excitonic photoluminescence desired of QDs and can be fabricated to avoid undesirable broadband emissions at higher wavelengths. This provides a significant improvement over the present complex and expensive commercial processes for the production of QDs. The aqueous QDs are stable in biological fluids over a long period of time. In addition, nontoxic ZnS QDs have been produced with good photoluminescence properties by refluxing the ZnS QD suspensions over a period of time.
Melissa C Schillo from Stillwater, MN Get Report