Richard E Riman, Age 66East Millstone, NJ

Richard Riman Phones & Addresses

Somerset, NJ

Highland Park, NJ

10 Monroe Ave, Belle Mead, NJ 08502 (908) 359-3250 (908) 359-4410

East Brunswick, NJ

Parker, CO

Marlton, NJ

10 Monroe Ave, Belle Mead, NJ 08502 (908) 359-3250

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Richard E Riman

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Work

Company: Rrtc Feb 2010 Position: Founder, chief scientist, board member

Education

School / High School: Teaneck High School

Skills

Materials Synthesis • Ceramic Processing • Low Temperature Green Ceramic Manufacturing Processes • Dispersion and Particulate Mixedness • Solution Crystallization of Ceramics • Structural Ceramics • Electroceramics • Optics • Biomaterials • Materials Science • Nanoparticles • Powder X Ray Diffraction • Nanomaterials • Nanotechnology • Mechanical Testing • Tga • Optical Microscopy • Sustainability • Biomedical Engineering • Higher Education • Surface Chemistry • Chemistry • Electron Microscopy • Characterization • Composites • Spectroscopy • Design of Experiments • Ftir • Nanocomposites • Rheology • Uv/Vis • Differential Scanning Calorimetry • Tissue Engineering • Microscopy • Tem • Teaching • R&D • Materials

Languages

English

Interests

See 8+See Less • Solvothermal Synthesis • Nano Particles • Rare Earths • Health • Ceramic Engineering • Environment • Education • Materials Characterization • Science and Technology • Colloidal Processing • Powder Processing • Green Cement/Concrete • Research Interests Include • Solutions Synthesis • Disaster and Humanitarian Relief • Reaction Kinetics • Solution Crystallization • Thermochemistry • Powder Characterization • Economic Empowerment • Phase Equilibria • Nano Materials • Hydrothermal Synthesis • Colloidal Science • Materials Science and Engineering

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Richard Riman resumes & CV records

Resumes

Richard Riman Photo 13

Founder And Advisory Board Member

Location:
10 Monroe Ave, Belle Mead, NJ 08502
Industry:
Research
Work:
Rrtc
Founder, Chief Scientist, Board Member
Solidia Technologies
Founder and Advisory Board Member
Rutgers University
Distinguished Professor
Education:
Teaneck High School
Rutgers University
Bachelors, Bachelor of Science, Engineering
Massachusetts Institute of Technology
Doctorates, Doctor of Philosophy, Materials Science, Engineering
Skills:
Materials Synthesis, Ceramic Processing, Low Temperature Green Ceramic Manufacturing Processes, Dispersion and Particulate Mixedness, Solution Crystallization of Ceramics, Structural Ceramics, Electroceramics, Optics, Biomaterials, Materials Science, Nanoparticles, Powder X Ray Diffraction, Nanomaterials, Nanotechnology, Mechanical Testing, Tga, Optical Microscopy, Sustainability, Biomedical Engineering, Higher Education, Surface Chemistry, Chemistry, Electron Microscopy, Characterization, Composites, Spectroscopy, Design of Experiments, Ftir, Nanocomposites, Rheology, Uv/Vis, Differential Scanning Calorimetry, Tissue Engineering, Microscopy, Tem, Teaching, R&D, Materials
Interests:
See 8+See Less
Solvothermal Synthesis
Nano Particles
Rare Earths
Health
Ceramic Engineering
Environment
Education
Materials Characterization
Science and Technology
Colloidal Processing
Powder Processing
Green Cement/Concrete
Research Interests Include
Solutions Synthesis
Disaster and Humanitarian Relief
Reaction Kinetics
Solution Crystallization
Thermochemistry
Powder Characterization
Economic Empowerment
Phase Equilibria
Nano Materials
Hydrothermal Synthesis
Colloidal Science
Materials Science and Engineering
Languages:
English

Publications & IP owners

Us Patents

Rare Earth Doped Host Materials

US Patent:
6699406, Mar 2, 2004
Filed:
Mar 19, 1999
Appl. No.:
09/272912
Inventors:
Richard E. Riman - Belle Mead NJ
John Ballato - Central SC
Assignee:
Rutgers, The State University - New Brunswick NJ
International Classification:
C09K 1102
US Classification:
25230136, 2523014 H, 2523014 S, 2523014 R, 313467, 313483, 313485, 313502
Abstract:
A rare earth element doped composition having a dopant concentration of up to about 60 mole percent of one or more rare earth elements selected from Tb, Dy, Ho, Er, Tm, Yb and Lu, wherein the composition is optically transparent to wavelengths at which excitation, fluorescence or luminescence of the rare earth elements occur. Method for making the compositions, composite materials having dispersed therein the compositions and luminescent devices containing optical or acoustical elements formed from the composite materials are also disclosed.

Magnesium-Substituted Hydroxyapatites

US Patent:
6921544, Jul 26, 2005
Filed:
Mar 6, 2001
Appl. No.:
09/800127
Inventors:
Richard E. Riman - Belle Mead NJ, US
Wojciech Suchanek - Cleveland OH, US
Pavel Shuk - Copley OH, US
Kevor S. TenHuisen - Clinton NJ, US
Assignee:
Rutgers, The State University - New Brunswick NJ
International Classification:
A61K033/42
US Classification:
424602, 424604
Abstract:
A stable, phase-pure magnesium-substituted crystalline hydroxyapatite containing from about 2. 0 to about 29 wt % magnesium, wherein at least 75 wt % of the magnesium content is substituted for calcium ions in the hydroxyapatite lattice structure.

Single-Crystal-Like Materials

US Patent:
7022303, Apr 4, 2006
Filed:
May 13, 2002
Appl. No.:
10/145372
Inventors:
Richard E. Riman - Belle Mead NJ, US
Larry E. McCandlish - Highland Park NJ, US
Assignee:
Rutgers, The State University - New Brunswick NJ
International Classification:
C01G 49/00
US Classification:
4235949, 423598, 4235941, 423625, 423263, 423622, 423409, 4235661, 423610, 423490, 428323, 428702, 420 83, 420435
Abstract:
Polycrystalline materials of macroscopic size exhibiting Single-Crystal-Like properties are formed from a plurality of Single-Crystal Particles, having Self-Aligning morphologies and optionally ling morphology, bonded together and aligned along at least one, and up to three, crystallographic directions.

Optically Transparent Nanocomposite Materials

US Patent:
7094361, Aug 22, 2006
Filed:
Mar 2, 2004
Appl. No.:
10/791953
Inventors:
Richard E. Riman - Belle Mead NJ, US
John Ballato - Clemson SC, US
Assignee:
Rutgers, The State University - New Brunswick NJ
International Classification:
C09K 11/02
US Classification:
25230136, 501 32, 2523014 R, 2523014 F, 2523014 S, 2523016 S, 2523014 H, 313467, 313483, 313485, 313502
Abstract:
Optically transparent composite materials in which solid solution inorganic nanoparticles are dispersed in a host matrix inert thereto, wherein the nanoparticles are doped with one or more active ions at a level up to about 60 mole % and consist of particles having a dispersed particle size between about 1 and about 100 nm, and the composite material with the nanoparticles dispersed therein is optically transparent to wavelengths at which excitation, fluorescence or luminescence of the active ions occur. Luminescent devices incorporating the composite materials are also disclosed.

Polycrystalline Material Having A Plurality Of Single Crystal Particles

US Patent:
7704321, Apr 27, 2010
Filed:
Feb 18, 2005
Appl. No.:
11/062273
Inventors:
Richard Riman - Belle Mead NJ, US
Larry McCandlish - Highland Park NJ, US
Xiangyuan Liu - Highland Park NJ, US
Assignee:
Rutgers, the State University - New Brunswick NJ
International Classification:
C30B 7/14
US Classification:
117 68, 117 69, 117 70
Abstract:
Polycrystalline materials of macroscopic size exhibiting Single-Crystal-Like properties are formed from a plurality of Single-Crystal Particles, having Self-Aligning morphologies and optionally bonded together and aligned along at least one, and up to three, crystallographic directions.

Magnesium-Substituted Hydroxyapatites

US Patent:
7704529, Apr 27, 2010
Filed:
Mar 25, 2005
Appl. No.:
11/089745
Inventors:
Richard E Riman - Belle Mead NJ, US
Wojciech Suchanek - Cleveland OH, US
Pavel Shuk - Copley OH, US
Kevor S. TenHuisen - Clinton NJ, US
Chun-Wei Chen - East Brunswick NJ, US
International Classification:
A61K 33/42
US Classification:
424602, 4232011, 4232021, 424422, 424423, 424604, 424682, 523113, 523114, 523115, 523116, 623 1611, 623 2346, 623 2351, 623 2361, 623 2362, 623 2375
Abstract:
A stable, phase-pure magnesium-substituted crystalline hydroxyapatite containing from about 2. 0 to about 29 wt % magnesium, wherein at least 75 wt % of the magnesium content is substituted for calcium ions in the hydroxyapatite lattice structure.

Optically Transparent Nanocomposite Materials

US Patent:
7771619, Aug 10, 2010
Filed:
Jun 21, 2006
Appl. No.:
11/425460
Inventors:
Richard E. Riman - Belle Mead NJ, US
John Ballato - Clemson SC, US
Assignee:
Rutgers, The State University - New Brunswick NJ
International Classification:
C09K 11/61
C09K 11/55
C09K 11/85
C09K 11/86
US Classification:
2523014H, 977775, 977776, 423263
Abstract:
Optically transparent composite materials in which solid solution inorganic nanoparticles are dispersed in a host matrix inert thereto, wherein the nanoparticles are doped with one or more active ions at a level up to about 60 mole % and consist of particles having a dispersed particle size between about 1 and about 100 nm, and the composite material with the nanoparticles dispersed therein is optically transparent to wavelengths at which excitation, fluorescence or luminescence of the active ions occur. Luminescent devices incorporating the composite materials are also disclosed.

Hydroxyapatite With Controllable Size And Morphology

US Patent:
7998219, Aug 16, 2011
Filed:
Dec 21, 2005
Appl. No.:
11/813368
Inventors:
Richard E. Riman - Belle Mead NJ, US
Alexander Burukhin - Moscow, RU
Eugene Zlotnikov - Highland Park NJ, US
Dan Haders - Somerset NJ, US
Assignee:
Rutgers, The State University of New Jersey - New Brunswick NJ
International Classification:
B05D 3/00
C01B 25/32
A61F 2/28
B01J 27/18
US Classification:
623 2356, 73 106, 106 35, 106462, 210656, 423308, 427 227, 4274301, 427435, 4274432
Abstract:
A ceramic powder of non-agglomerated non-aggregated phase-pure hydroxyapatite having a controllable morphology. Also presented is a film of phasepure crystalline hydroxyapatite grains having a controllable morphology. Methods for preparing the same are also provided.

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