2016 – Founder of Stanford Wearable Electronics Initiative in 2016 (eWEAR_X)

Materials Science
Status: yes
Patent: US-10545058 -B2; US-9502152- B2; US-9625330- B2; US-10037098 -B2; US-9848775- B2; US-9490045- B2; US-9453774- B2; US-10601049 -B2; EP-1464953- B1; US-7189663- B2; US-7910736- B2; US-7704784- B2; US-8785763- B2; US-9087995- B2; US-7338835- B2; US-7795145- B2; US-10722174 -B2; US-10431757 -B2; US-9133130- B2; US-10395804 -B2; US-7045814- B2; US-8866265- B2; ES-2370857- T3; US-10160835 -B2; US-11053390- B2; US-10899908 -B2; US-9085458- B2; US-10978735 -B2; US-7160754- B2; US-8513804- B2; US-10177326 -B2;US-11001695- B2; US-9725557- B2; US-10869392 -B2; US-9147845- B2; US-10672987 -B2; US-9040400- B2; US-9263524- B2; US-10858522 -B2; US-10388881 -B2; US-10741766 -B2; US-9608221- B2; US-9212960- B2; US-8679984- B2; US-11048990- B2; US-9863057- B2; US-9155996- B2; US-9070881- B2; US-9520563- B2; US-8119445- B2; EP-3380541- B1; US-7569416- B2; US-9130171- B2; US-9442087- B2; US-10635868 -B1; US-7855121- B2; US-8957406- B2; US-10155876 -B2; US-6107117- A; US-6150668- A; US-6033202- A; US-5969376- A; US-6665127- B2; US-6596569- B1; US-6579564- B2; US-6452207- B1; US-7439096- B2; US-6372532- B2; US-6736985- B1; US-6555411- B1; EP-1235070- B1; US-6589629- B1; US-6743988- B2; US-6969634- B2; US-6383665- B1; US-7115900- B2; US-6429040- B1; US-11281874- B2; US-11075348- B2; US-7045470- B2; US-6885024- B2; US-6770549- B2

About This Innovation

* Bao is founder of Stanford Wearable Electronics Initiative in 2016 (eWEAR); 1 of the founders of C3 Nano Company & PyrAmes Health * development of electronic skin, elastic skin-like integrated circuits that can be used for on-skin sensors, body-scale networks & implantable bioelectronics & may give people who use prosthetics the ability to regain their sense of touch * developed the first all-plastic transistor, or organic field-effect transistor, which allows for use in electronic paper.

The Invention

Pressure sensing apparatuses and methods; Method of selective separation of semiconducting carbon nanotubes, dispersion of semiconducting carbon nanotubes, and electronic device including carbon nanotubes separated by using the method; Methods and apparatus concerning multi-tactile sensitive (E-skin) pressure sensors; Methods and apparatus concerning sensitive force sensors; Passive and wireless pressure sensor; Self-healing composites and applications thereof; Surface area-based pressure sensing; High performance battery anodes with polymeric coatings including molecules cross-linked through dynamic bonds; Biosensor comprising an organic field effect transistor and method for the fabrication of the sensor; Organic semiconductor device having an active dielectric layer comprising silsesquioxanes; Method for producing organic field-effect transistors; Semiconductor devices having regions of induced high and low conductivity, and methods of making the same; Joined nanostructures and methods therefor; Fullerene-doped nanostructures and methods therefor; OFETs with active channels formed of densified layers; Patterning crystalline compounds on surfaces; Skin-conformal sensors; Polar elastomers for high performance electronic and optoelectronic devices; n-Type doped organic materials and methods therefor; Isolating semiconducting single-walled nanotubes or metallic single-walled nanotubes and approaches therefor; OFET structures with both n- and p-type channels; Carbon-based semiconductors; METHOD FOR PRODUCING ORGANIC FIELD EFFECT TRANSISTORS; Self-healing polymers and applications thereof; Stretchable, tough, and self-healing elastomer and applications thereof; Self-healing composite and device including self-healing film; Selective nanotube formation and related devices; Stretchable polymer electrolyte, stretchable electrode, stretchable polymer, electrocheical device, and method of preparing stretchable polymer; P-type OFET with fluorinated channels; Nanotube-based electrodes; Polymeric dielectrics, methods of manufacturing the same, and electronic devices and thin film transistors including the same; Fast and reversible thermoresponsive polymer switching materials; Conjugated polymer-based apparatuses, articles and compounds; Flexible and self-healing elastomer-based modular electronics and applications thereof; Single walled carbon nanotube-based planar photodector; Polymer and electronic device and organic thin film transistor including the same; Air-stable n-channel organic electronic devices; Semiconductor materials, apparatuses and methods; Electrically conductive hydrogels with tunable properties; Sorting of carbon nanotubes; Organic semiconductor thin film and method of manufacturing the same and thin film transistor and electronic device; Solar cell having organic nanowires; Nanostructures with strain-induced resistance; Method of manufacturing electric device, array of electric devices, and manufacturing method therefor; Resonance-based inductive communication via frequency sweeping; Coated substrate apparatus and method; Sorbents for carbon dioxide capture; Method of manufacturing an organic semiconductor thin film; Patterning of organic semiconductor materials; Organic semiconductors and growth approaches therefor; Degradable conjugated polymers; Forming closely spaced electrodes; High-mobility structures, apparatuses and methods therefor; Organic thin-film transistor sensor arrangements; Sensor system using stretchable antenna; Method of forming organic thin film and method of manufacturing semiconductor device using the same; Organic material-based graphitic material; Methods and apparatus concerning solution shearing a transparent and conductive polymer film; A Method of making an organic thin film transistor; Thin-film transistor monolithically integrated with an organic light-emitting diode; Mold for non - photolithographic fabrication of microstructures; Organic thin film transistor having a phthalocyanine semiconductor layer; Method and apparatus for aligning a photo-tunable microlens; Thin film transistors; Process for fabricating polarized organic photonics devices; Organic semiconductor devices; Semiconductor device encapsulation; Method of manufacturing a patterned light emitting diode devices; High-resolution method for patterning a substrate with micro-printing; Thin film transistors; Electronic odor sensor; Process for fabricating patterned, functionalized particles and article formed from particles; Optically controlled switches; Semiconductor layers with roughness patterning; Polarizable photoactive and electroactive polymers and light emitting devices; Devices having patterned regions of polycrystalline organic semiconductors, and methods of making the same; Device comprising a bipolar semi-conducting film; Flexible tag device and flexible sensing system comprising the same; Thin film transistor and thin film transistor array and electronic device; Methods of making thin dielectric layers on substrates; Devices with organic crystallite active channels; Forming patterned thin film metal layers

Key Information

Category:
Materials Science

Completion Status:
yes

Patent Number:
US-10545058 -B2; US-9502152- B2; US-9625330- B2; US-10037098 -B2; US-9848775- B2; US-9490045- B2; US-9453774- B2; US-10601049 -B2; EP-1464953- B1; US-7189663- B2; US-7910736- B2; US-7704784- B2; US-8785763- B2; US-9087995- B2; US-7338835- B2; US-7795145- B2; US-10722174 -B2; US-10431757 -B2; US-9133130- B2; US-10395804 -B2; US-7045814- B2; US-8866265- B2; ES-2370857- T3; US-10160835 -B2; US-11053390- B2; US-10899908 -B2; US-9085458- B2; US-10978735 -B2; US-7160754- B2; US-8513804- B2; US-10177326 -B2;US-11001695- B2; US-9725557- B2; US-10869392 -B2; US-9147845- B2; US-10672987 -B2; US-9040400- B2; US-9263524- B2; US-10858522 -B2; US-10388881 -B2; US-10741766 -B2; US-9608221- B2; US-9212960- B2; US-8679984- B2; US-11048990- B2; US-9863057- B2; US-9155996- B2; US-9070881- B2; US-9520563- B2; US-8119445- B2; EP-3380541- B1; US-7569416- B2; US-9130171- B2; US-9442087- B2; US-10635868 -B1; US-7855121- B2; US-8957406- B2; US-10155876 -B2; US-6107117- A; US-6150668- A; US-6033202- A; US-5969376- A; US-6665127- B2; US-6596569- B1; US-6579564- B2; US-6452207- B1; US-7439096- B2; US-6372532- B2; US-6736985- B1; US-6555411- B1; EP-1235070- B1; US-6589629- B1; US-6743988- B2; US-6969634- B2; US-6383665- B1; US-7115900- B2; US-6429040- B1; US-11281874- B2; US-11075348- B2; US-7045470- B2; US-6885024- B2; US-6770549- B2

Co-Inventor:
Stefan Christian Bernhardt Mannsfeld, Jason Locklin, Chee-Keong Tee, Young-Jun Park, Jong-min Kim, Hang-woo Lee, Steve J. Park, Alex L. Chortos, Ho-Hsiu Chou, Lisa Yun Chen, Darren Lipomi, Michael V. McConnell, H. S. Philip Wong, Chao Wang, Hui Wu, Yi Cui, Lijia Pan, Yi Cui, Guangyuan Zheng, Jeffrey Lopez, Allen Pei, Bernard Yurke, Valerie Jeanne Kuck, Mark Anthony Paczkowski, Martin Koenemann, Peter Erk, Mang-Mang Ling, Howard Edan Katz, Jeffrey Scott Meth, Melburne C. Lemieux, Ajay Virkar, Marcos Gomez, Frauke Richter, Shuhong Liu, Changhyun Pang, Wen Ya Lee, Guillaume Schweicher, Desheng Kong, Peng Wei, Igor Pochorovski, Evert-Jan Borkent, Dawen Li, Marc RAMUZ, Michael Vosgueritchian, Cheng-Hui Li, Jiheong Kang, Donghee SON, Youngjun YUN, Donghee SON, Jiheong Kang,Orestis Vardoulis, Justin P. Opatkiewicz, Soumendra N. Barman, Minsang SONG, Yongming Sun, Jeffrey Lopez, Yi Cui, Evert-Jan Borkent , Sondra Hellstrom, Jong Won Chung, Sangyoon Lee, Ying-Li RAO, Yi Cui, Zheng Chen, Lei Fang, Jianguo Mei, Yan Zhou, Jiheong Kang, Donghee SON, Orestis Vardoulis, Young-Jun Park, Jong Won Chung, Sangyoon Lee, Simon RONDEAU-GAGNE, Bob C. SCHROEDER, Jinyoung Oh, Yu-Cheng CHIU, Franziska LISSEL, Peng Wei, Joon Hak Oh, Benjamin D. Naab, Vivian R. Feig, Helen Tran, Ting Lei, Ying-Chih LAI, Huiliang Wang, Pascal Hayoz, Thomas Weitz, Won Chung, Sangyoon Lee, Jie Xu, Young-Jun Park,Michael Vosgueritchian, Chee-Keong Tee, Sondra Hellstrom, Jong Won Chung, Christopher J. Bettinger, Do Hwan, Kim, Bang Lin Lee, Jeong Il Park, Yong Wan JIN, Sang Yoon Lee, Siavash Kananian, Ada Poon, Simiao NIU, Naoji MATSUHISA, George Alexopoulos, Ying Diao, Hector A. Becerril-Garcia, Yan Zhou, Jennifer Wilcox, T. Daniel P. Stack, Brannon Gary, Jiajun He, John To, Gaurav GIRI, Sang-yoon Lee, Armon Sharei, Ting LEI, Jie Zheng, James C. Sturm, Troy Graves-Abe, Jianguo Mei, Mark E. Roberts, Youngjun YUN, Naoji MATSUHISA, Simiao NIU, William Burnett, Do Hwan Kim, Sangyoon Lee, Hector Alejandro Becerril Garcia, Zihong Liu, Anatoliy N. Sokolov, Fung Ling Yap, Nan Liu, Sean C. Andrews, Brian J. Worfolk, Ananth Dodabalapur, Yi Feng, Venkataram Reddy Raju, Howard Edan Katz, Venkataram Reddy Raju, John A. Rogers, Timofei Nikita Kroupenkine, Alan Michael Lyons, Mary Louise Mandich, Louis Thomas Manzione, Elsa Reichmanis, Shu Yang, Peter Kian-Hoon Ho, Yueh-Lin Loo, Takao Someya, Xiaochun Linda Chen, Kirk W. Baldwin,Peter Mach, Anita Makhjita, Edwin Arthur Chandross, Brian Keith Crone, Alan Gelperin, Marcus Weldon, David John Bishop, Robert Albert Boie, Dustin W. Carr, Peter Kian-Hoon Ho, Karl R. Amundson, Joanna Aizenberg, Alejandro L. Briseno, Yong-Jin Han, Hyunsik Moon, Simiao NIU, Weichen Wang, Naoji MATSUHISA, Gae Hwang LEE, Youngjun YUN, Xuzhou YAN, Jinyoung Oh, Hung-Chin Wu, Christian Kloc, Peter Kian-Hoon Ho, Takao Someya

Patent Information

Patent Number: US-10545058 -B2; US-9502152- B2; US-9625330- B2; US-10037098 -B2; US-9848775- B2; US-9490045- B2; US-9453774- B2; US-10601049 -B2; EP-1464953- B1; US-7189663- B2; US-7910736- B2; US-7704784- B2; US-8785763- B2; US-9087995- B2; US-7338835- B2; US-7795145- B2; US-10722174 -B2; US-10431757 -B2; US-9133130- B2; US-10395804 -B2; US-7045814- B2; US-8866265- B2; ES-2370857- T3; US-10160835 -B2; US-11053390- B2; US-10899908 -B2; US-9085458- B2; US-10978735 -B2; US-7160754- B2; US-8513804- B2; US-10177326 -B2;US-11001695- B2; US-9725557- B2; US-10869392 -B2; US-9147845- B2; US-10672987 -B2; US-9040400- B2; US-9263524- B2; US-10858522 -B2; US-10388881 -B2; US-10741766 -B2; US-9608221- B2; US-9212960- B2; US-8679984- B2; US-11048990- B2; US-9863057- B2; US-9155996- B2; US-9070881- B2; US-9520563- B2; US-8119445- B2; EP-3380541- B1; US-7569416- B2; US-9130171- B2; US-9442087- B2; US-10635868 -B1; US-7855121- B2; US-8957406- B2; US-10155876 -B2; US-6107117- A; US-6150668- A; US-6033202- A; US-5969376- A; US-6665127- B2; US-6596569- B1; US-6579564- B2; US-6452207- B1; US-7439096- B2; US-6372532- B2; US-6736985- B1; US-6555411- B1; EP-1235070- B1; US-6589629- B1; US-6743988- B2; US-6969634- B2; US-6383665- B1; US-7115900- B2; US-6429040- B1; US-11281874- B2; US-11075348- B2; US-7045470- B2; US-6885024- B2; US-6770549- B2

Technical Specifications

Pressure sensing apparatuses and methods; Method of selective separation of semiconducting carbon nanotubes, dispersion of semiconducting carbon nanotubes, and electronic device including carbon nanotubes separated by using the method; Methods and apparatus concerning multi-tactile sensitive (E-skin) pressure sensors; Methods and apparatus concerning sensitive force sensors; Passive and wireless pressure sensor; Self-healing composites and applications thereof; Surface area-based pressure sensing; High performance battery anodes with polymeric coatings including molecules cross-linked through dynamic bonds; Biosensor comprising an organic field effect transistor and method for the fabrication of the sensor; Organic semiconductor device having an active dielectric layer comprising silsesquioxanes; Method for producing organic field-effect transistors; Semiconductor devices having regions of induced high and low conductivity, and methods of making the same; Joined nanostructures and methods therefor; Fullerene-doped nanostructures and methods therefor; OFETs with active channels formed of densified layers; Patterning crystalline compounds on surfaces; Skin-conformal sensors; Polar elastomers for high performance electronic and optoelectronic devices; n-Type doped organic materials and methods therefor; Isolating semiconducting single-walled nanotubes or metallic single-walled nanotubes and approaches therefor; OFET structures with both n- and p-type channels; Carbon-based semiconductors; METHOD FOR PRODUCING ORGANIC FIELD EFFECT TRANSISTORS; Self-healing polymers and applications thereof; Stretchable, tough, and self-healing elastomer and applications thereof; Self-healing composite and device including self-healing film; Selective nanotube formation and related devices; Stretchable polymer electrolyte, stretchable electrode, stretchable polymer, electrocheical device, and method of preparing stretchable polymer; P-type OFET with fluorinated channels; Nanotube-based electrodes; Polymeric dielectrics, methods of manufacturing the same, and electronic devices and thin film transistors including the same; Fast and reversible thermoresponsive polymer switching materials; Conjugated polymer-based apparatuses, articles and compounds; Flexible and self-healing elastomer-based modular electronics and applications thereof; Single walled carbon nanotube-based planar photodector; Polymer and electronic device and organic thin film transistor including the same; Air-stable n-channel organic electronic devices; Semiconductor materials, apparatuses and methods; Electrically conductive hydrogels with tunable properties; Sorting of carbon nanotubes; Organic semiconductor thin film and method of manufacturing the same and thin film transistor and electronic device; Solar cell having organic nanowires; Nanostructures with strain-induced resistance; Method of manufacturing electric device, array of electric devices, and manufacturing method therefor; Resonance-based inductive communication via frequency sweeping; Coated substrate apparatus and method; Sorbents for carbon dioxide capture; Method of manufacturing an organic semiconductor thin film; Patterning of organic semiconductor materials; Organic semiconductors and growth approaches therefor; Degradable conjugated polymers; Forming closely spaced electrodes; High-mobility structures, apparatuses and methods therefor; Organic thin-film transistor sensor arrangements; Sensor system using stretchable antenna; Method of forming organic thin film and method of manufacturing semiconductor device using the same; Organic material-based graphitic material; Methods and apparatus concerning solution shearing a transparent and conductive polymer film; A Method of making an organic thin film transistor; Thin-film transistor monolithically integrated with an organic light-emitting diode; Mold for non - photolithographic fabrication of microstructures; Organic thin film transistor having a phthalocyanine semiconductor layer; Method and apparatus for aligning a photo-tunable microlens; Thin film transistors; Process for fabricating polarized organic photonics devices; Organic semiconductor devices; Semiconductor device encapsulation; Method of manufacturing a patterned light emitting diode devices; High-resolution method for patterning a substrate with micro-printing; Thin film transistors; Electronic odor sensor; Process for fabricating patterned, functionalized particles and article formed from particles; Optically controlled switches; Semiconductor layers with roughness patterning; Polarizable photoactive and electroactive polymers and light emitting devices; Devices having patterned regions of polycrystalline organic semiconductors, and methods of making the same; Device comprising a bipolar semi-conducting film; Flexible tag device and flexible sensing system comprising the same; Thin film transistor and thin film transistor array and electronic device; Methods of making thin dielectric layers on substrates; Devices with organic crystallite active channels; Forming patterned thin film metal layers

Collaboration

Co-Inventor: Stefan Christian Bernhardt Mannsfeld, Jason Locklin, Chee-Keong Tee, Young-Jun Park, Jong-min Kim, Hang-woo Lee, Steve J. Park, Alex L. Chortos, Ho-Hsiu Chou, Lisa Yun Chen, Darren Lipomi, Michael V. McConnell, H. S. Philip Wong, Chao Wang, Hui Wu, Yi Cui, Lijia Pan, Yi Cui, Guangyuan Zheng, Jeffrey Lopez, Allen Pei, Bernard Yurke, Valerie Jeanne Kuck, Mark Anthony Paczkowski, Martin Koenemann, Peter Erk, Mang-Mang Ling, Howard Edan Katz, Jeffrey Scott Meth, Melburne C. Lemieux, Ajay Virkar, Marcos Gomez, Frauke Richter, Shuhong Liu, Changhyun Pang, Wen Ya Lee, Guillaume Schweicher, Desheng Kong, Peng Wei, Igor Pochorovski, Evert-Jan Borkent, Dawen Li, Marc RAMUZ, Michael Vosgueritchian, Cheng-Hui Li, Jiheong Kang, Donghee SON, Youngjun YUN, Donghee SON, Jiheong Kang,Orestis Vardoulis, Justin P. Opatkiewicz, Soumendra N. Barman, Minsang SONG, Yongming Sun, Jeffrey Lopez, Yi Cui, Evert-Jan Borkent , Sondra Hellstrom, Jong Won Chung, Sangyoon Lee, Ying-Li RAO, Yi Cui, Zheng Chen, Lei Fang, Jianguo Mei, Yan Zhou, Jiheong Kang, Donghee SON, Orestis Vardoulis, Young-Jun Park, Jong Won Chung, Sangyoon Lee, Simon RONDEAU-GAGNE, Bob C. SCHROEDER, Jinyoung Oh, Yu-Cheng CHIU, Franziska LISSEL, Peng Wei, Joon Hak Oh, Benjamin D. Naab, Vivian R. Feig, Helen Tran, Ting Lei, Ying-Chih LAI, Huiliang Wang, Pascal Hayoz, Thomas Weitz, Won Chung, Sangyoon Lee, Jie Xu, Young-Jun Park,Michael Vosgueritchian, Chee-Keong Tee, Sondra Hellstrom, Jong Won Chung, Christopher J. Bettinger, Do Hwan, Kim, Bang Lin Lee, Jeong Il Park, Yong Wan JIN, Sang Yoon Lee, Siavash Kananian, Ada Poon, Simiao NIU, Naoji MATSUHISA, George Alexopoulos, Ying Diao, Hector A. Becerril-Garcia, Yan Zhou, Jennifer Wilcox, T. Daniel P. Stack, Brannon Gary, Jiajun He, John To, Gaurav GIRI, Sang-yoon Lee, Armon Sharei, Ting LEI, Jie Zheng, James C. Sturm, Troy Graves-Abe, Jianguo Mei, Mark E. Roberts, Youngjun YUN, Naoji MATSUHISA, Simiao NIU, William Burnett, Do Hwan Kim, Sangyoon Lee, Hector Alejandro Becerril Garcia, Zihong Liu, Anatoliy N. Sokolov, Fung Ling Yap, Nan Liu, Sean C. Andrews, Brian J. Worfolk, Ananth Dodabalapur, Yi Feng, Venkataram Reddy Raju, Howard Edan Katz, Venkataram Reddy Raju, John A. Rogers, Timofei Nikita Kroupenkine, Alan Michael Lyons, Mary Louise Mandich, Louis Thomas Manzione, Elsa Reichmanis, Shu Yang, Peter Kian-Hoon Ho, Yueh-Lin Loo, Takao Someya, Xiaochun Linda Chen, Kirk W. Baldwin,Peter Mach, Anita Makhjita, Edwin Arthur Chandross, Brian Keith Crone, Alan Gelperin, Marcus Weldon, David John Bishop, Robert Albert Boie, Dustin W. Carr, Peter Kian-Hoon Ho, Karl R. Amundson, Joanna Aizenberg, Alejandro L. Briseno, Yong-Jin Han, Hyunsik Moon, Simiao NIU, Weichen Wang, Naoji MATSUHISA, Gae Hwang LEE, Youngjun YUN, Xuzhou YAN, Jinyoung Oh, Hung-Chin Wu, Christian Kloc, Peter Kian-Hoon Ho, Takao Someya

Women Behind This Innovation