Inventor

Alexandru S. Biris

Inventor
Little Rock, AR, US

Overview

39→
Patents
2008–2021
Patent span
Human necessities
Primary field (CPC A)

Patents· 39 as inventor

Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.

B82Yprimary
B82YSpecific uses or applications of nanostructures9%
A61LMethods or apparatus for sterilising materials or objects in general8%
Y10TTechnical subjects covered by former us classification8%
A61KPreparations for medical, dental or toiletry purposes7%
A61PSpecific therapeutic activity of chemical compounds or medicinal preparations6%
Y10STechnical subjects covered by former uspc cross-reference art collections [xracs] and digests5%
A61FFilters implantable into blood vessels4%
C08LCompositions of macromolecular compounds4%
G01NInvestigating or analysing materials by determining their chemical or physical properties4%
C23CCoating metallic material4%
PatentTitleYear
11,119,099Nanocomposites and methods of making same202111,016,089Nanocomposites and nanoagents for detection and treatment of a target of interest and methods of making and using same202110,830,767Nanocomposites, methods of making same, and applications of same for multicolor surface enhanced raman spectroscopy (SERS) detections202010,645,933Method of using carbon nanotubes to affect seed germination and plant growth202010,390,927Graft scaffold with plasmonic activity, and methods of making and using same201910,244,761Method of using carbon nanotubes to affect seed germination and plant growth201910,238,496Bone regeneration using biodegradable polymeric nanocomposite materials and applications of the same201910,195,228Multicomponent and biocompatible nanocomposite materials, methods of synthesizing same and applications of same20199,968,711Bone regeneration using biodegradable polymeric nanocomposite materials and applications of the same20189,810,687'Nanocomposites and methods of making same'20179,784,737'Nanocomposites, methods of making same, and applications of same for multicolor surface enhanced Raman spectroscopy (SERS) detections'20179,763,788'Bone regeneration using biodegradable polymeric nanocomposite materials and applications of the same'20179,700,573'Compositions comprising nanoparticles and apoptotic agents and methods of use'20179,675,078'Method of delivery of bio-active agents to plant cells by using nano-sized materials as carriers'20179,637,385'Carbon nanotubes and methods of forming same at low temperature'20179,427,497'Bone regeneration using biodegradable polymeric nanocomposite materials and applications of the same'20169,399,055'Anti-cancer nanoparticle compositions and methods of use'20169,364,004'Method of using carbon nanotubes to affect seed germination and plant growth'20169,364,587'Bone regeneration using biodegradable polymeric nanocomposite materials and applications of the same'20169,198,934'Compositions comprising nanoparticles and apoptotic agents and methods of use'20159,114,134'Multicomponent and biocompatible nanocomposite materials, methods of synthesizing same and applications of same'20159,074,187'Nanostructural materials that increase mineralization in bone cells and affect gene expression through miRNA regulation and applications of same'20159,068,283'Strain sensors, methods of making same, and applications of same'20158,936,805'Bone regeneration using biodegradable polymeric nanocomposite materials and applications of the same'20158,883,218'Anti-cancer nanoparticle compositions and methods of use'20148,741,318'Multicomponent and biocompatible nanocomposite materials, methods of synthesizing same and applications of same'20148,697,181'Multifunctional Fe3O4 cored magnetic-quantum dot fluorescent nanocomposites for RF nano-hyperthermia of cancer cells'20148,692,716'Nano and micro based antennas and sensors and methods of making same'20148,576,394'Methods of fabricating surface enhanced raman scattering substrates'20138,518,123'System and method for tissue generation and bone regeneration'20138,518,420'Enhanced bone cells growth and proliferation on TiO2 nanotubular substrates treated by radio-frequency plasma discharge'20138,513,531'Electrodynamic arrays having nanomaterial electrodes'20138,337,951'Superhydrophobic surface and method of forming same using high-aspect ratio nano-texture'20128,304,302'Photovoltaic device using single wall carbon nanotubes and method of fabricating the same'20128,153,942'Methods of making horizontally oriented long carbon nanotubes and applications of same'20128,017,892'Apparatus and methods for synthesis of large size batches of carbon nanostructures'20118,013,992'Methods of fabricating surface enhanced raman scattering substrates'20117,473,873'Apparatus and methods for synthesis of large size batches of carbon nanostructures'20097,365,289'Production of nanostructures by curie point induction heating'2008

Career & activity timeline

Assembled from patent assignee/location history and declaration credentials.

2008–2021Patents assigned to UNIV ARKANSAS (38)· patent assignee history
2008–2021Based in Little Rock, AR, US· patent location history
2012–2020Patents assigned to BIRIS ALEXANDRU S (16)· patent assignee history
2012Patents assigned to LI ZHONGRUI (2)· patent assignee history
2012–2014Patents assigned to XU YANG (2)· patent assignee history
2016–2020Patents assigned to KHODAKOVSKAYA MARIYA V (3)· patent assignee history

Inventor activity

Assignee and location history derived from the patent record.

Assignees
AssigneePatentsSpan
UNIV ARKANSAS382008–2021
BIRIS ALEXANDRU Sself162012–2020
KHODAKOVSKAYA MARIYA V32016–2020
LI ZHONGRUI22012
XU YANG22012–2014
Locations
LocationPatentsSpan
Little Rock, AR, US392008–2021