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    TECHNICAL SESSIONSPoster session details for each symposium can be found on page 26 and Tutorial details on page 106.

    LOCATION MONDAY TUESDAY WEDNESDAY THURSDAY FRIDAY

    AM PM AM PM Poster AM PM Poster AM PM Poster AM PM

    A Emerging Silicon Science and Technology

    Moscone West Level 3 Room 3002

    Tutorial A: Silicon and Related Materials for Energy Conversion and Storage

    Tutorial A: Silicon and Related Materials for Energy Conversion and Storage

    A1: Amorphous and Nanocrystalline Films and Devices

    A2: Fundamental Concepts

    A3: Advanced Characterization and Simulation I

    A4: Advanced Characterization and Simulation II

    A A5: Silicon Heterojunction and Passivated Contacts

    A6: Tandem Cells

    A7: Cell Materials Engineering

    A8: Epitaxy on Silicon

    A9: Novel Devices

    A10: Novel Phenomena, Processes and Applications

    A11: Printed, Exfoliated and Synthesized Silicon

    A12: Laser Processing and Crystallization

    A13, A14, A15, A16, A17, A18, A19, A20,

    A21

    A22: Silicon and Alloy Nanostructures

    A23: Recent Advances

    B Thin-Film Compound Semiconductor Photovoltaics

    Moscone West Level 3 Room 3003

    Tutorial B: Young Scientist Tutorial on Characterization Techniques for Thin-Film Solar Cells

    Tutorial B: Young Scientist Tutorial on Characterization Techniques for Thin-Film Solar Cells

    B1: CIGS/CZTS B2: CdTe/Characterization B3 B B4: CIGS/CdTe B5: CZTS/Theory B6 B7: Panel Discussion/CZTS B8: CdTe/CIGS/Others B9 B10: CIGS/CZTS/Others

    C Perovskite Solar Cells Moscone West Level 3 Room 3004

    C1: Device and Processing I C2: Physics Mechanism, Property and Theory I

    C3 C C4: Device and Processing II C5:PhysicsMechanism, Property and Theory II

    C6: Device and Processing III

    C7: Perovskite Crystallization

    C8: Lead-Free Perovskite Cells

    C9: PhysicsMechanism, Property and Theory III

    C10 C11: Device and Processing IV

    C12: Device and Processing V

    D Organic-Based Photovoltaics

    Moscone West Level 3 Room 3005

    D1: Towards High Open-Circuit Voltage

    D2: High Performance OPV

    D3: Charge Generation

    D4: Charge Transfer and Transport

    D5 D D6: Singlet FissionD7: New Concepts

    D8: Advanced Characterization

    D9: Morphology

    D10 D11: Eco-Friendly Routes

    D12: Large Area Processing

    D13: Recombination

    D14: Degradation

    D15 D16: New Materials

    D17: Fullerene Free OPV

    D18: Transparent Electrodes

    D19: Interlayers

    E Advanced Solar Cells Components to Systems

    Moscone West Level 3 Room 3006

    E1: Silicon Solar Cells E2: Cross-Cutting Issues I E3 E E4: Cross-Cutting Issues IIE5: Tandem Cells

    E6: Futuristic Solar Cells

    F Biohybrid Solar Cells Photosynthesis-Based Photovoltaics and Photocatalytic Solar Cells

    Moscone West Level 3 Room 3007

    F F1: Light Triggered Electron Transfers between Proteins and (Semi)Conducting Substrates

    F2: Biosolar CellsPhotovoltaics and Photocatalytic Solar Cells

    F3: Optimizing InterfacesProteins, Polymers, Cofactors and Substrates

    F4: Interfacing Biological Complexes with Advanced MaterialsPlasmonic, Carbon and Nanostructured Surfaces

    F5: BiopolymersEngineered Matrices for Solar Energy Harvesting

    G Next-Generation Electrochemical Energy Storage and Conversion SystemsSynthesis, Processing, Characterization and Manufacturing

    Moscone West Level 3 Room 3010/3012

    G1: Lithium-Ion Battery Cathodes

    G2: Lithium Solid Electrolytes

    G3: Li/S Batteries G4: In Situ/Operando Characterization G5: New Device Architectures G6 G G7: Sodium Ion Batteries G8: Beyond Li-Ion Energy Storage Systems (Na-Ion, Mg-Ion)

    G9 G10: CO2 Reduction/ Electrochemical Water Splitting

    G11: Metal Air Batteries/Fuel Cells

    G12 G13: Carbon Supercapacitors

    G14: Pseudocapacitors

    G15: Flexible Supercapacitors

    H Mechanics of Energy Storage and Conversion Batteries, Thermoelectrics and Fuel Cells

    Moscone West Level 3 Room 3008

    H1: Lithium-Ion Battery - Mechanics H2: Characterization of Battery Materials and Devices

    H H3: Modeling of Battery Materials and Mechanics

    H4: Novel Materials for Batteries

    H5 H6: Solid Oxide Fuel Cells and Others

    H7: Novel Materials for Energy Applications

    H8: Thermoelectric Materials I

    H9: Thermoelectric Materials II

    I High Capacity Anode Materials for Lithium Ion Batteries

    Moscone West Level 3 Room 3009

    I1: Si Based Anode I2: Metal Oxide Anode I3 I I4: Nanostructural Design I5: Carbon Based Materials I6 I7: Structure Property Correlation

    I8: Surface Coating, SEI Layer and Conversion

    J Latest Advances in Solar Water Splitting

    Moscone West Level 3 Room 3011

    J1 J2 J3 J4 J5 J J6 J7 J8 J9 J10 J11 J12 J13

    K The Development of Oxygen Reduction Reaction (ORR) and Oxygen Evolution Reaction (OER) Materials in Energy Storage and Conversion Systems

    Moscone West Level 3 Room 3001

    K1: Opening and General Aspects K2: Metal Oxide Catalysts K K3: Energy Storage and Conversion

    K4: Nanostructured Catalysts

    K5 K6: Non-Platinum-Group Metal Catalysts

    K7: Carbon Supports K8: Electronic Structure Effects

    L Bioinspired Micro- and Nano-Machines Challenges and Perspectives

    Moscone West Level 2 Room 2006

    Tutorial L: Bioinspired Micro- and Nanomachines and Devices (Moscone West, Level 3, Room 3008)

    Tutorial L: Bioinspired Micro- and Nanomachines and Devices (Moscone West, Level 3, Room 3008)

    L1: Artificial Nano/ Micromachines in Fluids I

    L2: Artificial Nano/ Micromachines in Fluids II

    L L3: Bio- and Molecular Machines I

    L4: Bio- and Molecular Machines II

    L5

    M Nanoscale Heat Transport From Fundamentals to Devices

    Moscone West Level 2 Room 2007

    Tutorial M: Phonons in Thermal Transport and Biological Diagnostics (Moscone West, Level 3, Room 3001)

    M1: Thermal Switches

    M2: Interfacial Thermal Transport I

    M3: Interfacial Thermal Transport II

    M4: Thermal Energy Storage and Phase Change

    M5 M M6: Phononics and Membranes

    M7: Thermal Transport in Nanotubes and Nanowires

    M8: Thermal Transport in 2D Materials I

    M9: Thermal Transport in Organic and Hybrid Materials

    M10: Simulation Techniques

    M11: Thermoelectric Materials I

    M12: Thermoelectric Materials II

    M13: Thermal Transport in 2D Materials II

    M14 M15: Thermal Transport Measurement Techniques I

    M16: Thermal Radiation I

    M17: Thermal Radiation II

    M18: Thermal Transport Measurement Techniques II

    N From Molecules to Colloidal Compound Semiconductor Nanocrystals Advances in Mechanism-Enabled Design and Syntheses

    Moscone West Level 2 Room 2008

    N1 N2 N3 N N4/U4: Joint Session I (Moscone West, Level 2, Room 2000)

    N5/U5: Joint Session II (Moscone West, Level 2, Room 2000)

    N6 N7

    EN

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    19

    LOCATION MONDAY TUESDAY WEDNESDAY THURSDAY FRIDAY

    AM PM AM PM Poster AM PM Poster AM PM Poster AM PM

    A Emerging Silicon Science and Technology

    Moscone West Level 3 Room 3002

    Tutorial A: Silicon and Related Materials for Energy Conversion and Storage

    Tutorial A: Silicon and Related Materials for Energy Conversion and Storage

    A1: Amorphous and Nanocrystalline Films and Devices

    A2: Fundamental Concepts

    A3: Advanced Characterization and Simulation I

    A4: Advanced Characterization and Simulation II

    A A5: Silicon Heterojunction and Passivated Contacts

    A6: Tandem Cells

    A7: Cell Materials Engineering

    A8: Epitaxy on Silicon

    A9: Novel Devices

    A10: Novel Phenomena, Processes and Applications

    A11: Printed, Exfoliated and Synthesized Silicon

    A12: Laser Processing and Crystallization

    A13, A14, A15, A16, A17, A18, A19, A20,

    A21

    A22: Silicon and Alloy Nanostructures

    A23: Recent Advances

    B Thin-Film Compound Semiconductor Photovoltaics

    Moscone West Level 3 Room 3003

    Tutorial B: Young Scientist Tutorial on Characterization Techniques for Thin-Film Solar Cells

    Tutorial B: Young Scientist Tutorial on Characterization Techniques for Thin-Film Solar Cells

    B1: CIGS/CZTS B2: CdTe/Characterization B3 B B4: CIGS/CdTe B5: CZTS/Theory B6 B7: Panel Discussion/CZTS B8: CdTe/CIGS/Others B9 B10: CIGS/CZTS/Others

    C Perovskite Solar Cells Moscone West Level 3 Room 3004

    C1: Device and Processing I C2: Physics Mechanism, Property and Theory I

    C3 C C4: Device and Processing II C5:PhysicsMechanism, Property and Theory II

    C6: Device and Processing III

    C7: Perovskite Crystallization

    C8: Lead-Free Perovskite Cells

    C9: PhysicsMechanism, Property and Theory III

    C10 C11: Device and Processing IV

    C12: Device and Processing V

    D Organic-Based Photovoltaics

    Moscone West Level 3 Room 3005

    D1: Towards High Open-Circuit Voltage

    D2: High Performance OPV

    D3: Charge Generation

    D4: Charge Transfer and Transport

    D5 D D6: Singlet FissionD7: New Concepts

    D8: Advanced Characterization

    D9: Morphology

    D10 D11: Eco-Friendly Routes

    D12: Large Area Processing

    D13: Recombination

    D14: Degradation

    D15 D16: New Materials

    D17: Fullerene Free OPV

    D18: Transparent Electrodes

    D19: Interlayers

    E