Ion conducting oxides are commonly used as electrolytes in electrochemical devices including solid oxide fuel cells and oxygen sensors. View details for Web of Science ID 000248758800014, View details for Web of Science ID 000207593906493, View details for Web of Science ID 000207593903638, View details for Web of Science ID 000248073300044, View details for DOI 10.1016/j.jpowsour.2007.01.073, View details for Web of Science ID 000246256300019. Prinz, F., B., Zhou, Y., Holme, T., Berry, J., Ohno, T., Ginley, D. First principles study of doped carbon supports for enhanced platinum catalysts. The company is on a mission to revolutionize energy storage to enable a sustainable future. Kim, Y.
MATH CONSULTORIA MED TRABALHO - Occupational Therapy - R. Doutor Fritz We have built a combined scanning tunneling microscope-atomic layer deposition (STM-ALD) tool that performs in situ imaging of deposition. s) are accessible superseding the use of extrinsic doping, which generally produces orders of magnitude smaller values. Defective HOPG supports are modeled by density functional theory (DFT) calculations that confirm and explain the above experimental results.
QuantumScape: Revolutionizing the EV Landscape. - Medium Reduction and oxidation of oxide ion conductors with conductive atomic force microscopy, Surface Modification of Yttria-Stabilized Zirconia Electrolyte by Atomic Layer Deposition, Atomic Layer Deposition of Lead Sulfide Thin Films for Quantum Confinement, Intermediate-Temperature Ceramic Fuel Cells with Thin Film Yttrium-Doped Barium Zirconate Electrolytes. Ultra-sharp nano-probes and customized atomic force microscopy (AFM) have previously been developed in our laboratory for in situ sub-cellular probing of electrochemical phenomena in living plant cells during their photosynthesis. Previous studies of osteogenic potential in ASCs have focused on chemicals, growth factors, and mechanical stimuli. It is increasingly important to control cell growth into and within artificial scaffolds. Frank Blome Independent Director. QuantumScape was founded in 2010 by Jagdeep Singh, Fritz Prinz, and Tim Holme from Stanford University. View details for DOI 10.1089/ten.tea.2009.0267, View details for Web of Science ID 000275041500016, View details for PubMedCentralID PMC2862617, View details for DOI 10.1016/j.elecom.2009.11.031, View details for Web of Science ID 000274878400013, View details for Web of Science ID 000274321900021, View details for Web of Science ID 000285543200004, View details for Web of Science ID 000313248000032. Jiang, X., Guer, T. N., Prinz, F. B., Bent, S. F. Passive water management at the cathode of a planar air-breathing proton exchange membrane fuel cell, Area-Selective Atomic Layer Deposition of Lead Sulfide: Nanoscale Patterning and DFT Simulations. Holme, T. P., Pornprasertsuk, R., Prinz, F. B. Tafel plots and the fitted impedance data suggest that the charge transfer coefficient of interlayered SOFCs was 1.25 times higher, and the electrode/interfacial activation energy was reduced from 0.85 to 0.76 eV. Dasgupta, N. P., Lee, W., Holme, T. P., Prinz, F. B. Characteristics of Oxygen Reduction on Nanocrystalline YSZ. Interlayering 17.5 nm of Yttria-doped ceria (YDC) thin films between bulk yttria-stabilized-zirconia electrolyte and a porous Pt cathode enhanced the performance of low-temperature solid oxide fuel cells. Jiang, X., Guer, T. M., Prinz, F. B., Bent, S. F. Silicon-based Thin Film Solid Oxide Fuel Cell Array, Proton Conductivity Studies of Y-Doped Barium Zirconate: Theoretical and Experimental Approaches. Kim, Y. Mr. McCarthy currently serves as a member of the boards of several privately-held companies. The photocathodic hydrogen evolution reaction (HER) from p-type Si nanowire (NW) arrays was evaluated using platinum deposited by atomic layer deposition (ALD) as a HER cocatalyst. Amon, C., H., Merz, R., Prinz, F., B., Schmaltz, K., S. Merz, R., Prinz, F., B., Ramaswami, K., Terk, M., Weiss, L. Two types of electrochemical thin-film pCO2-sensors for in vitro and in vivo applications. View details for DOI 10.1088/0957-4484/19/03/035710, View details for DOI 10.1016/j.jpowsour.2007.09.066, View details for Web of Science ID 000252513100009, View details for Web of Science ID 000272018400004, View details for Web of Science ID 000258976500020, View details for Web of Science ID 000262710700009, View details for Web of Science ID 000272018400002, View details for Web of Science ID 000272018400018, View details for Web of Science ID 000271859300058. We used atomic force microscopy-based force spectroscopy to record an increase in the cytoskeletal tension after treatment with electric fields. Tim Holme, and Fritz B. Prinz in May 2010 and is . Headquartered in San Jose, California, the company is currently worth $ 50 billion and is funded by Bill Gates and Volkswagen. Surface modification of platinum thin film electrodes towards a defined rouhgness and microporosity. This years Innovation Summit featured finalists selected by the Earthshot council in addition to panelist speakers from heads of state, grassroots organizations and tech leaders. Active water management at the cathode of a planar air-breathing polymer electrolyte membrane fuel cell using an electroosmotic pump. In 2018, Volkswagen invested $100 million in the company, becoming the largest shareholder. An, J., Kim, Y. Endogenous electric fields play an important role in embryogenesis, regeneration, and wound repair and previous studies have shown that many populations of cells, leukocytes, fibroblasts, epithelial cells, and endothelial cells, exhibit directed migration in response to electric fields. Lee, W., Dasgupta, N. P., Trejo, O., Lee, J., Hwang, J., Usui, T., Prinz, F. B. We found that 180 cycles or approximately 10 nm of ALD Pt, with a Pt loading of only 0.02 mg cm(-2), were sufficient for the purpose of a catalytic cathode. We constructed biodegradable micro-osmotic pumps based on MEMS technology for long-term controlled release of bFGF. Most recently, Fritz Prinz sold 270,301 shares of the business's stock in a transaction on Monday, August 15th. QuantumScape is headquartered in San Francisco, California and was founded in 2010 by Fritz Prinz, Jagdeep Singh, and Tim Holme. Nam, S. W., Stampfl, J., Liu, H. C., Kang, S., Prinz, F. B. Xu, S., Dadlani, A. L., Acharya, S., Schindler, P., Prinz, F. B. Plasma-enhanced atomic layer deposition of BaTiO3. Thus, we have developed an open micro-fluidic channel system (OMFC) in which individual cells can be immobilized in micro-traps by capillary flow. Mr. Hettrich has served as QuantumScapes Chief Financial Officer and head of Business Operations since September 2018. We were also able to establish that commonly reported artifacts of electric field stimulation are not the primary mediators of the observed effects. View details for DOI 10.1016/j.biomaterials.2006.11.002, View details for Web of Science ID 000243219000028, View details for DOI 10.1016/j.ssi.2006.12.016, View details for Web of Science ID 000245616100005, View details for Web of Science ID 000242538600013, View details for Web of Science ID 000250953500015, View details for Web of Science ID 000248984600013, View details for Web of Science ID 000254563600177, View details for Web of Science ID 000246435400008, View details for DOI 10.1109/JMEMS.2006.883566, View details for Web of Science ID 000242983300005, View details for DOI 10.1016/j.jpowsour.2006.03.021, View details for Web of Science ID 000241412000026, View details for DOI 10.1016/j.jpowsour.2006.04.123, View details for Web of Science ID 000241412000021, View details for DOI 10.1016/j.jpowsour.2006.03.054, View details for Web of Science ID 000241412000024, View details for Web of Science ID 000241056900097, View details for DOI 10.1088/0957-4484/17/15/019, View details for Web of Science ID 000239693600019, View details for DOI 10.1016/j.mee.2006.01.262, View details for Web of Science ID 000237581900246, View details for Web of Science ID 000235136600017, View details for Web of Science ID 000239520400013, View details for Web of Science ID 000249884000138, View details for Web of Science ID 000237146500002, View details for Web of Science ID 000234543400034, View details for Web of Science ID 000236994500235, View details for Web of Science ID 000234113600006, View details for Web of Science ID 000233602600023, View details for DOI 10.1016/j.snb.2004.10.058, View details for Web of Science ID 000230330300158, View details for DOI 10.1243/095440505X32463, View details for Web of Science ID 000231697100004, View details for DOI 10.1109/TIM.2005.847233, View details for Web of Science ID 000229250800023, View details for DOI 10.1016/j.tsf.2004.09.059, View details for Web of Science ID 000227509100025, View details for Web of Science ID 000228243600027, View details for DOI 10.1016/j.nimb.2004.10.009, View details for Web of Science ID 000226213800014, View details for Web of Science ID 000227142400026, View details for Web of Science ID 000243098600027, View details for Web of Science ID 000228764100015, View details for DOI 10.1016/j.ssi.2004.09.061, View details for Web of Science ID 000225990500161, View details for Web of Science ID 000224658100071, View details for Web of Science ID 000223720000082, View details for Web of Science ID 000223778000003, View details for DOI 10.1016/j.jpowsour.2004.03.036, View details for Web of Science ID 000222559300008, View details for DOI 10.1109/JLT.2004.829231, View details for Web of Science ID 000222708600010, View details for Web of Science ID 000221843400125, View details for DOI 10.1108/13552540410551360, View details for Web of Science ID 000223628300004, View details for Web of Science ID 000189447200008, View details for Web of Science ID 000224927900015, View details for Web of Science ID 000221436900015, View details for Web of Science ID 000189496100028, View details for DOI 10.1016/S0378-7753(03)00802-4, View details for Web of Science ID 000187023700011, View details for DOI 10.1080/0020754021000032040, View details for Web of Science ID 000184005800004, View details for Web of Science ID 000184637800021, View details for Web of Science ID 000181515100005, View details for Web of Science ID 000222969800016, View details for Web of Science ID 000184053200016, View details for Web of Science ID 000186761000021, View details for Web of Science ID 000222632800017, View details for Web of Science ID 000184053200061, View details for Web of Science ID 000179344600008, View details for Web of Science ID 000178129700025, View details for Web of Science ID 000177236000027, View details for Web of Science ID 000176753400033, View details for Web of Science ID 000178011900174, View details for Web of Science ID 000171269400011, View details for Web of Science ID 000171079400001, View details for Web of Science ID 000186891500007, View details for Web of Science ID 000174008900023, View details for Web of Science ID 000172441200008, View details for Web of Science ID 000170149900007, View details for Web of Science ID 000169955500002, View details for Web of Science ID 000173444800003, View details for Web of Science ID 000089960600018, View details for Web of Science ID 000085966600012, View details for Web of Science ID 000087206400001, View details for Web of Science ID 000168248000025, View details for Web of Science ID 000168423900006, View details for Web of Science ID 000168584000238, View details for Web of Science ID 000088899600019, View details for Web of Science ID 000080437300004, View details for Web of Science ID 000088256800049, View details for Web of Science ID 000088256800013, View details for Web of Science ID 000088256800014, View details for Web of Science ID 000088256800027, View details for Web of Science ID 000088256800084, View details for Web of Science ID 000079197700023, View details for Web of Science ID 000088256800080, View details for Web of Science ID 000075513300022, View details for Web of Science ID 000082420400064, View details for Web of Science ID 000076920300017, View details for Web of Science ID 000082420400026, View details for Web of Science ID 000082420400083, View details for Web of Science ID 000073491100007, View details for Web of Science ID 000082420200061, View details for Web of Science ID A1997XZ13000002, View details for Web of Science ID 000082420200015, View details for Web of Science ID A1996UN96800008, View details for Web of Science ID A1996UG37600008, View details for Web of Science ID A1996TT53600021, View details for Web of Science ID A1996TZ96300022, View details for Web of Science ID 000082420300015, View details for Web of Science ID 000082420300005, View details for Web of Science ID A1996BF68P00172, View details for Web of Science ID A1994BA72M00428, View details for Web of Science ID A1994BC13M00055, View details for Web of Science ID A1993KZ54500002, View details for Web of Science ID A1992JQ08300002, View details for Web of Science ID A1992HQ43700011, View details for Web of Science ID A1991BT14J00183, View details for Web of Science ID A1988N430000001, View details for Web of Science ID A1987H820300025, View details for Web of Science ID A1987L656000004, Sir Christopher Hinton Lecture, Royal Academy of Engineering (1991), Engineer of the Year, American Society of Mechanical Engineers, Pittsburgh, PA Section (1991 - 1992), Corresponding member, Austrian Academy of Science, Vienna, Austria (1996), Award for Excellence, Literati Club (2002), Most Outstanding Paper in the 2001 volume, Rapid Prototyping Journal (2002), The AM Strickland Prize for Best Paper in 2005, The Institution of Mechanical Engineers, London, UK (2005), Tedori-Callinan Lecture, University of Pennsylvania (2006), Fellow, American Association for the Advancement of Science (AAAS) (2007), Woodruff Colloquium in the Theme of Energy, Georgia Institute of Technology, Atlanta, GA (2008), Munushian Lecture, University of Southern California (2009), PhD, University of Vienna, Physics (1975), Department: Materials Science and Engineering, NPL Affiliate Program Manager, NPL Administrator, Plasma-enhanced atomic layer deposition of tungsten nitride. Insider Purchases QS / Quantumscape Corp - Short Term Profit Analysis. B., Holme, T. P., Guer, T. M., Prinz, F. B. On September 3, 2020, QuantumScape announced an agreement to merge with the blank check special purpose acquisition company (SPAC) company Kensington Capital Acquisition Corp. Yelp is a fun and easy way to find, recommend and talk about what's great and not so great in So Paulo and beyond. Pt-Ar-HOPG shows slightly enhanced catalytic activity towards oxygen. When Singh founded QuantumScape with Fritz Prinz and Tim Holme in 2010, he didn't know if that material existed. H(2)S is used as a reactant for the ALD of metal sulfides. Huang, H., Nakamura, M., Su, P., Fasching, R., Saito, Y., Prinz, F. B. This is made possible by nanostructuring of the ultrathin (60 nm) electrolyte interposed with a nanogranular catalytic interlayer at the cathode/electrolyte interface. Atomic Scale Verification of Oxide-Ion Vacancy Distribution near a Single Grain Boundary in YSZ. Shim, Joon, H., Cha, S. W., Gr, Turgut, M., Prinz, F., B. Highly oriented pyrolytic graphite (HOPG) implanted with N, Ar and B is studied as a support for platinum nanoparticle catalysts for fuel cells. Chang, Y. C., Pinilla, J. M., Kao, J. H., Dong, J., Ramaswami, K., Prinz, F. B. An approach to overcome this sluggish kinetics is by engineering the oxide surface with a lower oxygen incorporation barrier. Kim, N., Hsieh, C., Huang, H., Prinz, F. B., Stebbins, J. F. Atomic layer deposition and chemical vapor deposition precursor selection method application to strontium and barium precursors, COMP 73-Conversion of a plant chloroplast to a biological fuel cell: 1. For Pt clusters supported on HOPG with vacancy aggregations, this study shows a strong driving force for nucleation and a much enhanced tendency for particle ripening. Langston, M. C., Dasgupta, N. P., Jung, H. J., Logar, M., Huang, Y., Sinclair, R., Prinz, F. B. Thickness effects of yttria-doped ceria interlayers on solid oxide fuel cells, Nickel Silicide Nanowire Arrays for Anti-Reflective Electrodes in Photovoltaics. Live from New York, is focused on bringing you. Considerable attention has been focused on solid oxide fuel cells (SOFCs) due to their potential for providing clean and reliable electric power. Buie, C., R., Posner, J., Fabian, T., Cha, S., W., Kim, D., Prinz, F., B. Micro-structured Biodegradable Polymers Embedded with Cells and Drugs for Tissue Engineering and Drug Delivery. Variation of Energy Density of States in Quantum Dot Arrays due to Interparticle Electronic Coupling. Chang, Y. C., Saha, M., Prinz, F., Latombe, J. C., Pinilla, J.
Fritz B Prinz, Quantumscape Corp: Profile and Biography Electrostatic force microscopy (EFM) is a special design of non-contact atomic force microscopy used for detecting electrostatic interactions between the probe tip and the sample. High Surface Area Density Nano Thin Film Solid Oxide Fuel Cells, Transient behaviour of magnetic micro-bead chains rotating in a fluid by external fields. An, J., Usui, T., Logar, M., Park, J., Thian, D., Kim, S., Kim, K., Prinz, F. B. In addition, AFM lithography was employed to create nanoscale PbS patterns. A new selection method for atomic layer deposition (ALD) or chemical vapor deposition (CVD) precursors is proposed and tested. Buie, C. R., Posner, J. D., Fabian, T., Cha, S., Kim, D., Prinz, F. B., Eaton, J. K., Santiago, J. G. Electrochemical impedance investigation of flooding in micro-flow channels for proton exchange membrane fuel cells. Application of atomic layer deposition of platinum to solid oxide fuel cells. Consequently, PbS thin films were grown selectively only where ODTS was not present, whereas deposition was blocked in regions where ODTS was grown. Replacing this century-old technology wont happen overnight, but with the help of our automotive partners, our dedicated team of world-class scientists and engineers is working around the clock to put our breakthrough, solid-state technology on the road as soon as possible. -H., Pinilla, J., M., Dong, J., Prinz, F., B. Vergleich und Optimierung der Ansteuerverfahren eines kapazitiven Winkel- und Winkelgeschwindigkeitssensors, TRADEWIND: A Prototype Internet Marketplace for Solid Free-form Fabrication ASME DETC/CIE Conference, Atlanta, GA. Prinz, F., B., Tan, S., Pinilla et al., J., M. Mesicopter: A Meso-Scale Flight Vehicle for Atmospheric Sensing, Silicon microtechnology for thermal sensors. In comparing hASC-iPSCs to their origin cell, the hASC, the reprogrammed cell is significantly less stiff, indicating that greater differentiation potentials may correlate with a lower cellular modulus. Damage in yttria-stabilized zirconia by Xe irradiation measured by X-ray diffraction, The triple phase boundary - A mathematical model and experimental investigations for fuel cells. in Business Administration from U.C. Jiang, X., Huang, H., Prinz, F. B., Bent, S. F. Proton conduction in thin film yttrium-doped barium zirconate, Nanoscale probe system for cell-organelle analysis. Prinz, F., B., Fasching, R., Keplinger, F., Kohl, F. Impact of axial and radial rotor offset on the measurtement error of a capacitive angular-position sensor with modofied front-end topology,Instrumentation and Measurement Technology Conference,IMTC/99.
QuantumScape - Wikipedia Our technology creates the lithium anode in situ during the first charge, an innovation that dramatically simplifies battery design and makes it fundamentally cheaper to manufacture. Seo, Y. H., Kim, L. H., Prinz, F. B., Ryu, W. Electrochemical tuning of vertically aligned MoS2 nanofilms and its application in improving hydrogen evolution reaction.
QuantumScape battery technology could revolutionize the EV market Stampfl, J., Liu, H. C., Nam, S. W., Sakamoto, K., Tsuru, H., KANG, S. Y., Cooper, A. G., Nickel, A., Prinz, F. B. Gurumoorthy, B., Kirchner, H. O., Prinz, F. B., Sinclair, G. B. We ascribe such improvements to the crystallization and densification of the film induced by high-energy ion bombardments on the film surface during the plasma treatment.