| Sha Huang |
Microfluidic Deformability Cytometry Measurement of Malaria-infected Red Blood Cells at Body and Fever Temperatures |
MEMS & BioMEMS |
1.01 |
| Sung Jae Kim |
Massively-Parallel Concentration Device for Multiplexed, High-Throughput Applications |
MEMS & BioMEMS |
1.02 |
| Marco Cartas |
Self Sorting of Deformable Particles in a Microfluidic Circuit |
MEMS & BioMEMS |
1.03 |
| Chia-Hua Lee |
Examining Trajectories of Rolling Cells on Asymmetric P-selectin Patterns |
MEMS & BioMEMS |
1.04 |
| Stephen Bathurst |
A Thermal Ink Jet Printed PZT Cantilever |
MEMS & BioMEMS |
1.05 |
| Frank Yaul |
Conductive Polymer Strain Gauge MEMS for Underwater Pressure Sensing |
MEMS & BioMEMS |
1.06 |
| Aalap Dighe |
Thermally actuated MEMS seal for vacuum applications |
MEMS & BioMEMS |
1.07 |
| Kristofor Payer |
Optical Windows for Buried Microfluidic Channels |
MEMS & BioMEMS |
1.08 |
| Eric Lam |
Sintered Nanoparticle Silver Films for Digitally-patterned MEMS Applications |
MEMS & BioMEMS |
1.09 |
| Hui Zhou |
Second Generation Micromachined Vacuum Pump |
MEMS & BioMEMS |
1.10 |
| Ellie Field |
MEMS SiC Langmuir Probe for Diagnostics of Plasma surrounding Spacecraft during Reentry into Earth’s Atmosphere |
MEMS & BioMEMS |
1.11 |
| Eric Heubel |
Making a MEMS RPA for sensing reentry ion energies. |
MEMS & BioMEMS |
1.12 |
| Daniel Jang |
CNT Field Ionization Pump for Portable Vacuum Applications |
MEMS & BioMEMS |
1.13 |
| Vivi Jayanty |
Electron-impact-ionization Pump using Double-gated Isolated Vertically Aligned Carbon Nanotube Arrays |
MEMS & BioMEMS |
1.14 |
| Melanie Hoehl |
Massively parallel microfluidic cell pairing platform for the statistical study of immunological cell-cell interactions |
MEMS & BioMEMS |
1.15 |
| Radhika Marathe |
RF MEMS resonators for Body Area Networks |
MEMS & BioMEMS |
1.16 |
| Albert Chang |
Measurement and Modeling of Variability in Advanced Technology |
Circuits & Systems |
2.01 |
| Georgios Angelopoulos |
Energy-scalabler Network Coding Accelerator for Body Area Networks |
Circuits & Systems |
2.02 |
| Sungjae Ha |
Malaria diagnostic system based on electric impedance spectroscopy |
Circuits & Systems |
2.03 |
| Nathan Ickes |
A low-voltage microprocessor for medical systems |
Circuits & Systems |
2.04 |
| Arun Paidimarri |
Ultra-Low-Power Radios Employing Multiple Parallel FBARs for Channel Selection |
Circuits & Systems |
2.05 |
| Rahul Rithe |
Low Power Transform Engine for Multi-Standard Video Coding |
Circuits & Systems |
2.06 |
| Mariana Markova |
High Resolution Hybrid Pipeline ADC |
Circuits & Systems |
2.07a |
| Haobo (Jack) Dong |
UHF RFID-based µImplant Sensing Platform |
Circuits & Systems |
2.08 |
| Zhen Li |
A Sub-ns Phase Modulator for mm-Wave AMO Transmitters |
Circuits & Systems |
2.09 |
| Sunghyuk Lee |
Acoustic Wave Transmission, Data Acquisition, And Signal Processing Platform For Portable/Wearable Ultrasound Applications |
Circuits & Systems |
2.10 |
| Bhavya Daya |
Reconfigurable Network Interface for Multicore Processors |
Circuits & Systems |
2.11 |
| Kailiang Chen |
Acoustic Wave Transmission, Data Acquisition, And Signal Processing Platform For Portable/Wearable Ultrasound Applications |
Circuits & Systems |
2.12 |
| David He |
A Wearable Vital Signs Monitor at the Ear |
Circuits & Systems |
2.13 |
|
| Wei An |
VLSI Design of Improved LCC RS Decoders |
Circuits & Systems |
2.14 |
|
| Chen Sun |
Re-Architecting DRAM Memory Systems with Monolithically Integrated Silicon Photonics |
Circuits & Systems |
2.15 |
|
| Shawn Kelly |
A 200+-Channel Neurostimulator Chip for the Boston Retinal Implant Project |
Circuits & Systems |
2.16 |
|
| Michael Swanwick |
Near-Ultraviolet Sensor Based on Horizontal Low Temperature Solution Grown Zinc Oxide Nanowires |
Nanotechnology & Energy Applications |
3.01 |
|
| Jiye Lee |
Charge Generation in Organic Solar Cells — A Hot Process or Not? |
Nanotechnology & Energy Applications |
3.02 |
|
| Jae-Byum Chang |
Sub-10-nm fabrication based on templated self-assembly of block copolymer |
Nanotechnology & Energy Applications |
3.03 |
|
| Vitor Manfrinato |
Lithographic templates for depositing single quantum dots |
Nanotechnology & Energy Applications |
3.04 |
|
| Jongho Lee |
Vapor-trapping membrane for desalination of water by reverse osmosis |
Nanotechnology & Energy Applications |
3.05 |
|
| Pedro Valencia |
Enabling ‘Nano’ with ‘Micro’: Microfluidic System for High-Throughput Synthesis and Screening of Nanovehicles for Cancer Therapy” |
Nanotechnology & Energy Applications |
3.06 |
|
| Heon Lee |
Study on the thermal stability of nano-structured selective emitters |
Nanotechnology & Energy Applications |
3.07 |
|
| Ki Kang Kim |
Synthesis of hexagonal boron nitride with chemical vapor deposition |
Nanotechnology & Energy Applications |
3.08 |
|
| Hyesung Park |
Graphene Photovoltaics |
Nanotechnology & Energy Applications |
3.09 |
|
| Lei Gu |
Passive self-tuning energy harvester |
Nanotechnology & Energy Applications |
3.10 |
|
| Frances Hill |
Energy Storage in Carbon Nanotube Springs |
Nanotechnology & Energy Applications |
3.11 |
|
| Kyoo-Chul (Kenneth) Park |
Drop Impact on Polymeric Textured Surfaces |
Nanotechnology & Energy Applications |
3.12 |
|
| Bin Lu |
GaN Power Electronics |
Nanotechnology & Energy Applications |
3.13 |
|
| Alexander Bruccoleri |
The design and fabrication of a 400 nm thick, 200 nm pitch thermal silicon dioxide mask for deep reactive Ion etching |
Nanotechnology & Energy Applications |
3.14 |
|
| Robert Mitchell |
Growth of Carbon Nanostructure Arrays for Electrochemical Systems |
Nanotechnology & Energy Applications |
3.15 |
|
| Stephen Guerrera |
Feature Scaling of Large, Ballasted Field Emission Arrays |
Electronic & Photonic Devices |
4.01 |
|
| Melissa Smith |
Low Power Pentacene Based Thin Film Transistors |
Electronic & Photonic Devices |
4.02 |
|
| Jianqiang Lin |
InGaAs Quantum-Well MOSFETs for Future High-Performance CMOS |
Electronic & Photonic Devices |
4.03 |
|
| Joy Johnson |
Nanoscale CMP Modeling |
Electronic & Photonic Devices |
4.04 |
|
| Donghyun Jin |
High-voltage degradation of GaN HEMTs |
Electronic & Photonic Devices |
4.05 |
|
| Tae-Woo Kim |
Self-Aligned Gate InGaAs HEMT with Record High-Frequency Characteristics |
Electronic & Photonic Devices |
4.06 |
|
| Donal Jamieson |
Etching Capabilities in MTL |
Electronic & Photonic Devices |
4.07 |
|
| Nan Pacella |
Platform for monolithic integration of III-V and Si CMOS devices |
Electronic & Photonic Devices |
4.08 |
|
| Pouya Hashemi |
Mobility characterization and transport enhancement techniques for top-down fabricated gate-all-around silicon nanowire MOSFETs |
Electronic & Photonic Devices |
4.09 |
|
| James Teherani |
Band-to-band Tunneling in Silicon Diodes |
Electronic & Photonic Devices |
4.10 |
|
| Rodolfo Camacho-Aguilera |
Germanium Laser |
Electronic & Photonic Devices |
4.11 |
|
| David Jenicek |
Carbon Nanotube Enhanced Ultracapacitor |
Electronic & Photonic Devices |
4.12a |
|
| Allen Hsu |
Graphene Technology and Device Applications |
Electronic & Photonic Devices |
4.13 |
| Dong Seup Lee |
High frequency GaN HEMTs |
Electronic & Photonic Devices |
4.14 |
| HyungSeok Lee |
Wafer-size GaN-Si integration |
Electronic & Photonic Devices |
4.15 |
| Benjamin Mailly |
Graphene Glucose Sensor: First valuations |
Electronic & Photonic Devices |
4.16 |
| Mariko Medlock |
Theoretical Predictions for Nitride Solar Cells |
Electronic & Photonic Devices |
4.17 |
| Dodd Gray |
Thermodynamics of Recombination in LEDs |
Electronic & Photonic Devices |
4.18 |
| Joseph Summers |
Compact Optical Polarizers using Critically Coupled Plasmons |
Electronic & Photonic Devices |
4.19 |
| Oguzhan Uyar |
45nm, highly linear, low voltage reveiver front-ends for a very high speed, high resolution optical ADC |
Electronic & Photonic Devices |
4.20 |