Inventor
Joanna Aizenberg
Inventor
Boston, MA, US
Overview
Patents· 56 as inventor
Public. Assignee & technology derived from the patent record. Each patent links to its LexDana page.
Y10Tprimary
Y10TTechnical subjects covered by former us classification7%
G02BOptical elements, systems or apparatus6%
B01LChemical or physical laboratory apparatus for general use6%
B05DProcesses for applying fluent materials to surfaces, in general5%
C09DCoating compositions, e.g. paints, varnishes or lacquers5%
B82YSpecific uses or applications of nanostructures5%
A61LMethods or apparatus for sterilising materials or objects in general4%
C08LCompositions of macromolecular compounds4%
C10MLubricating compositions3%
F15DFluid dynamics, i.e. methods or means for influencing the flow of gases or liquids3%
PatentTitleYear
11,118,067Sanitation systems and components thereof having a slippery surface202110,982,100Slippery liquid-infused porous surfaces and biological applications thereof202110,550,272Slippery liquid-infused porous surfaces and biological applications thereof202010,539,727Modifying optical properties of thin film structures using an absorbing element202010,450,467Sanitation systems and components thereof having a slippery surface201910,422,947Band-gap tunable elastic optical multilayer fibers201910,385,181Solidifiable composition for preparaton of liquid-infused slippery surfaces and methods of applying201910,330,218Fluid-based gating mechanism with tunable multiphase selectivity and antifouling behavior201910,265,694High-surface area functional material coated structures201910,233,334Containers, bottles, drums, vats, and tanks having a slippery surface201910,146,007Band-gap tunable elastic optical multilayer fibers201810,011,800Slips surface based on metal-containing compound20189,963,597Slippery self-lubricating polymer surfaces20189,937,743Anti-counterfeiting methods20189,932,484Slippery liquid-infused porous surfaces and biological applications thereof20189,932,482Slippery surfaces with high pressure stability, optical transparency, and self-healing characteristics20189,851,310Manipulation of fluids in three-dimensional porous photonic structures with patterned surface properties20179,839,908'Micro-chemical mixing'20179,683,197'Dynamic and switchable slippery surfaces'20179,681,552'Fluid oscillations on structured surfaces'20179,651,548'Self-regulating chemo-mechano-chemical systems'20179,630,224'Slippery liquid-infused porous surfaces having improved stability'20179,492,578'Reconfigurable surfaces for information security and protection of physical biometrics'20169,353,646'Slippery surfaces with high pressure stability, optical transparency, and self-healing characteristics'20169,279,771'Manipulation of fluids in three-dimensional porous photonic structures with patterned surface properties'20169,229,218'Environmentally responsive optical microstructured hybrid actuator assemblies and applications thereof'20169,122,055'Adaptive shading, display and color control'20159,121,307'Slippery surfaces with high pressure stability, optical transparency, and self-healing characteristics'20159,121,306'Slippery surfaces with high pressure stability, optical transparency, and self-healing characteristics'20158,993,063'Low-temperature synthesis of silica'20158,927,464'Assembly and deposition of materials using a superhydrophobic surface structure'20158,833,430'Versatile high aspect ratio actuatable nanostructured materials through replication'20148,734,003'Micro-chemical mixing'20148,721,161'Fluid oscillations on structured surfaces'20148,691,362'Surfaces physically transformable by environmental changes'20148,684,289'Continuous flow micro-crusher'20148,425,828'Surfaces physically transformable by environmental changes'20138,356,764'Continuous flow micro-crusher'20138,097,464'Chemical and biological detection arrays'20128,084,116'Surfaces physically transformable by environmental changes'20117,998,431'Environmentally sensitive nanostructured surfaces'20117,960,167'Nanostructured surface for microparticle analysis and manipulation'20117,927,783'Tunable lithography with a refractive mask'20117,884,530'Reversible actuation in arrays of nanostructures'20117,883,665'Chemical and biological detection arrays'20117,764,004'Large area induced assembly of nanostructures'20107,666,665'Low adsorption surface'20107,608,446'Nanostructured surface for microparticle analysis and manipulation'20097,459,197'Reversibly adaptive rough micro- and nano-structures'20087,297,474'Tunable micro-lens arrays'20077,253,958'Tunable micro-lens arrays'20077,115,900'Devices having patterned regions of polycrystalline organic semiconductors, and methods of making the same'20067,106,519'Tunable micro-lens arrays'20066,960,255'Framework assisted crystal growth'20056,891,682'Lenses with tunable liquid optical elements'20056,778,328'Tunable field of view liquid microlens'2004Career & activity timeline
Assembled from patent assignee/location history and declaration credentials.
2004–2014Patents assigned to LUCENT TECHNOLOGIES INC (9)· patent assignee history
2004–2017Based in New Providence, NJ, US· patent location history
2009–2014Patents assigned to ALCATEL LUCENT USA INC (8)· patent assignee history
2011–2018Patents assigned to AIZENBERG JOANNA (14)· patent assignee history
2011–2017Patents assigned to ALCATEL LUCENT (11)· patent assignee history
2011Based in Union, NJ, US· patent location history
2014–2021Patents assigned to HARVARD COLLEGE (29)· patent assignee history
2014–2021Based in Boston, MA, US· patent location history
Inventor activity
Assignee and location history derived from the patent record.
Assignees
| Assignee | Patents | Span |
|---|---|---|
| HARVARD COLLEGE | 29 | 2014–2021 |
| AIZENBERG JOANNAself | 14 | 2011–2018 |
| ALCATEL LUCENT | 11 | 2011–2017 |
| LUCENT TECHNOLOGIES INC | 9 | 2004–2014 |
| ALCATEL LUCENT USA INC | 8 | 2009–2014 |
Locations
| Location | Patents | Span |
|---|---|---|
| Boston, Massachusetts, US | 30 | 2014–2021 |
| New Providence, New Jersey, US | 25 | 2004–2017 |
| Union, New Jersey, US | 1 | 2011 |